CN104273125B - The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease - Google Patents

The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease Download PDF

Info

Publication number
CN104273125B
CN104273125B CN201410410088.4A CN201410410088A CN104273125B CN 104273125 B CN104273125 B CN 104273125B CN 201410410088 A CN201410410088 A CN 201410410088A CN 104273125 B CN104273125 B CN 104273125B
Authority
CN
China
Prior art keywords
mould
trichoderma
pentyl
strain
pyran
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201410410088.4A
Other languages
Chinese (zh)
Other versions
CN104273125A (en
Inventor
张敬泽
张量
蒋恒
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhejiang University ZJU
Original Assignee
Zhejiang University ZJU
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhejiang University ZJU filed Critical Zhejiang University ZJU
Publication of CN104273125A publication Critical patent/CN104273125A/en
Application granted granted Critical
Publication of CN104273125B publication Critical patent/CN104273125B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Agricultural Chemicals And Associated Chemicals (AREA)

Abstract

The invention discloses the application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease, the present invention screens trichoderma strain phytophthora blight of pepper to antagonism from a large amount of trichoderma strain, and separation and purification obtains secondary metabolism compound " 6-pentyl-2H-pyran-2-one " from the secondary metabolites of trichoderma strain TS0404, this compound has strong inhibit activities to oomycetes phytopathogen Phytophthora capsici.

Description

The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease
The application is the applying date is " on 06 27th, 2013 ", the divisional application that application number is " 201310264340.0 ", invention and created name is the application for a patent for invention of " for preventing and treating trichoderma strain and the compound of capsicum epidemic disease ".
Technical field
The present invention relates to technical field of biological control, particularly relate to the application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease.
Background technology
Capsicum epidemic disease is commonly called as " dead seedling is sick ", is a kind of soil-borne disease caused by Phytophthora capsici (Phytophthoracapsici).Capsicum epidemic disease is a kind of destructive disease on China capsicum, can cause serious production loss.Conventional Control Technology has been difficult to effective control, and easily causes ecology, environmental problem.
How effectively to prevent and treat capsicum epidemic disease is the problem of producing and research being paid close attention to always.In breeding for disease resistance, do not realize real breakthrough technically so far, on producing, there is no anti-capsicum epidemic disease kind truly.At present, main agricultural cultivation measure control and the chemical pesticide control of adopting is prevented and treated capsicum epidemic disease.Agricultural cultivation measure comprises the culture technique of prevention pathogen propagation as drip irrigation, high ridge and overlay film etc., but these culture techniques reduce pathogen for target, disease is once occur, agricultural cultivation measure can not effectively control the popular of disease rapidly, therefore, chemical pesticide remains the prophylactico-therapeutic measures of main flow.
Along with people are to the growing interest of the problems such as agricultural sustainable development, living environment, food security and pathogen pesticide resistance, the importance of biological control is more outstanding, utilize the biocontrol microorganisms with disease control effect, be made into biologic product for the production of upper controlling disease.In recent years, the biocontrol microorganisms prevented and treated around capsicum epidemic disease mainly concentrates on Trichoderma (Trichodermaspp.) and some bacteriums.
Publication number is that the Chinese patent literature of 102719364A discloses a strain trichoderma harzianum strain and the application in prevention and control capsicum epidemic disease thereof.Trichoderma harzianum (Trichodermaharzianum) HNA-12 that this patent provides, preserving number is CGMCCNo.5989, although this Trichoderma harzianum HNA-12 can suppress pathogen to a certain extent, promote pepper plant growth, prevention and control pepper plant generation capsicum epidemic disease, poor to the inhibitory action of Phytophthora capsici.
The Biocontrol Mechanism of Trichoderma generally has four kinds, the bacteriolysis of Competition, hyperparasitism, enzyme and the generation of Antibiotics.Wood is mould can produce the multiple secondary metabolites with antibacterial effect, and the antibiotics of the mould generation of most kind wood is also more than a kind of.Wooden mould distribution is extremely wide, and under different environmental stimuluses, wood is mould by different metabolic processes, can produce various secondary metabolites.These secondary metabolites, for environment facies to gentleness, therefore, the metabolite having bacteriostatic activity from the mould middle extraction of wood is a kind of important means of biological control, is also the basis of chemical bactericide synthesis.
At present, many reports about being prevented and treated pathogen by the mould secondary metabolites of wood have been had: the inhibiting rate of simple pyranone (Simplepyrones) the material 6-amyl group-pyrones Rhizoctonia solani (Rhizoctoniasolani) of purifying from the mould metabolite of wood reaches 69.6%.Glue green trichoderma toxin is the one in diketopiperazine class material, and research finds that glue green trichoderma toxin is to Pythiumultimum, has reasonable inhibitory action.But, the research of current metabolite great majority for be the higher fungies such as sac fungi, basidiomycetes, fewer to relate to low researchs waiting oomycetes such as epidemic disease are mould.
Summary of the invention
The invention provides a strain wood mould, to capsicum epidemic disease, there is good Biocontrol Potential.
One strain wood is mould, Classification And Nomenclature is gradually green trichoderma (Trichodermaviridescens), complete called after is green trichoderma (Trichodermaviridescens) TS0404 gradually, this bacterial strain is kept at the China Committee for Culture Collection of Microorganisms's common micro-organisms center (CGMCC) being positioned at No. 3, Yard 1, BeiChen xi Road, Chaoyang District, Beijing City on June 27th, 2013, preserving number is: CGMCCNO.7821.
Bacterial strain of the present invention 25 DEG C of cultivations, 5 days bacterium colonies on CMD medium can cover whole flat board, bacterium colony is thin, white mycelium, the radial loose growth of mycelia, colony edge position aerial hyphae is thickening gradually, and the edge of wide strip becomes fine hair shape, conidiophore main shaft is high-visible, approximate 90 ° of side shoot crotch angle, conidium Asia is spherical, and bottle stalk has prolification.
Present invention also offers the mould application in control capsicum epidemic disease of described wood.
The mould metabolite secreted in its metabolic process of wood is one of main mechanism of control plant fungal pathogen, experiment shows, trichoderma strain of the present invention can produce has inhibiting secondary metabolites to Phytophthora capsici bacteria growing, and inhibition is strong, having shown trichoderma strain of the present invention is microbial resources with better Biocontrol Potential.
Described application specifically comprises:
(1) biological prevention and control agent is made by mould for described wood;
(2) after capsicum field planting, described biological prevention and control agent is imposed on Hot Pepper Seedling root.
The preparation method of described biological prevention and control agent comprises: prepare wooden mould seed liquor; Mould for described wood seed liquor is inoculated in the wheat boiled, cultivates 15 ~ 20 days, obtained described biological prevention and control agent.
The viable bacteria concentration of the mould seed liquor of described wood is 10 7~ 10 8individual/ml, is preferably 10 8individual/ml.
In every kilogram of wheat, the inoculum concentration of wooden mould seed liquor is 2 ~ 4ml, is preferably 3ml.
For making the mould full and uniform growth on wheat of wood produce spore, in incubation, stir wheat in time.
The temperature of described cultivation is 22 ~ 27 DEG C, is preferably 25 DEG C.
The time of described cultivation is preferably 18 ~ 20 days, is more preferably 18 days.
When using, the consumption of described biological prevention and control agent is 1.5 ~ 2g/ strain.
Present invention also offers a kind of compound, there is following structural formula:
Present invention also offers the application of described compound in control plant Oomycete disease.
Described plant Oomycete disease is specially capsicum epidemic disease.
The pathogen of capsicum epidemic disease is Phytophthora capsici (P.capsici), phytophthora blight of pepper is that a kind of soil passes oomycetes, survive the winter in soil invalid body with egg spore or chlamydospore, experiment proves, described compound has bacteriostasis, strong to the inhibitory action of Phytophthora capsici, therefore, using this compound as active component, biological bactericide can be prepared, for the control of capsicum epidemic disease.
Compared with prior art, beneficial effect of the present invention is:
(1) the gradually green trichoderma that obtains of separation screening of the present invention, strong to the inhibitory action of Phytophthora capsici, there is good capsicum epidemic disease Biocontrol Potential.
(2) the present invention screens trichoderma strain phytophthora blight of pepper to antagonism from a large amount of trichoderma strain, and separation and purification obtains compound " 6-pentyl-2H-pyran-2-one " from the secondary metabolites of trichoderma strain TS0404, this compound has strong inhibit activities to oomycetes phytopathogen Phytophthora capsici.
Accompanying drawing explanation
Fig. 1 is cultivation after 7 days, slightly puies forward the inhibition of metabolite to Phytophthora capsici;
Fig. 2 is cultivation after 7 days, slightly puies forward the inhibition of metabolite to persimmon anthrax-bacilus;
Fig. 3 is the result figure of component 3 after thin-layer chromatography;
Fig. 4 is the inhibition of component 3 pairs of phytophthora blight of pepper;
Fig. 5 be in component 3 the 2nd spot to the inhibition of phytophthora blight of pepper;
Fig. 6 is the infrared spectrogram of the spot 2 in component 3;
Fig. 7 is the hydrogen spectrogram of the spot 2 in component 3;
Fig. 8 is the carbon spectrogram of the spot 2 in component 3;
Fig. 9 is Dept135 ° and 90 ° of collection of illustrative plates of the spot 2 in component 3;
Figure 10 is the spot 2 compound structure figure in component 3.
Embodiment
Below in conjunction with specific embodiment, the present invention is further explained.
The separation andpreconcentration of embodiment 1 trichoderma strain
1, the separation of trichoderma strain
From Zhangjiajie, Mount Taibai and Mount Taishan gathers soil sample.Soil sample sampling depth is for fallen leaves are lower or earth's surface about 5cm, and load in aseptic plastic bag after gathering and seal, take back laboratory and be separated, soil sample to be separated is stored in 4 DEG C of refrigerators.After soil sample fully being mixed, the grogs that takes a morsel is put on the PDA containing chloramphenicol, every ware 4 parts of grogs, repeats 3 times.Be placed in 25 DEG C of incubator dark culturing, after wooden mould product spore, timely picking spore proceeds in new PDA flat board, and dark culturing at 25 DEG C also obtains pure culture.
2, the qualification of trichoderma strain
1) Morphological Identification
(1) colony characteristics is observed: colony characteristics is observed and carried out on CMD medium, its method cuts bacterium cake 1 piece with card punch (diameter 5mm) from the colony edge of CMD active growth, be inoculated into culture dish (diameter 9cm) the 1cm place, edge containing 20mlCMD, 20 DEG C of alternation of light and darkness are cultivated after 7-14 days and are visually observed colony characteristics.
(2) observation of conidiophore: the microexamination that conidium, conidiophore and bottle obstruct, that cultivation wood is mould on CMD medium, its method cuts bacterium cake 1 piece with card punch (diameter 5mm) from the colony edge of CMD active growth, be inoculated into culture dish (diameter 9cm) the 1cm place, edge containing 20mlCMD, 20 DEG C of alternation of light and darkness are cultivated, when on bacterium colony, just formation conidiophore and bottle obstruct time (3-4 days), the form of microscopy observation conidiophore and bottle stalk and size.Cultivate after 7-14 days, under 100 times of oily mirrors, observe conidial shape and size.
The upper 25 DEG C of cultivations of interpretation of result: CMD 5 days bacterium colonies can cover whole flat board, and bacterium colony is thin, white mycelium, the radial loose growth of mycelia, and colony edge position aerial hyphae is thickening gradually, and the edge of wide strip becomes fine hair shape.Conidiophore main shaft is high-visible, approximate 90 ° of side shoot crotch angle.Conidium Asia is spherical, and bottle stalk has prolification.
2) Molecular Identification
(1) CTAB method is adopted to extract the genome of trichoderma strain.
(2) pcr amplification of ITSrDNA, Tef1-α and rpb2
ITS1-5.8S-ITS2 fragment adopts fungi Internal Transcribed Spacer universal primer ITS6 and ITS4 amplification ITS and 5.8SrDNA (Cooke & Duncan1997).
Tef1-α gene adopts universal primer Ef728M (CarboneandKohn1999) and tef1R (Kullnig-Gradingeretal.2002).
Set up PCR reaction system (table 1), PCR primer is detected at 1.2% agarose gel electrophoresis, and carry out photographic analysis in gel imaging system.After observing suitable ITS band, be that PCR primer reclaims kits PCR primer with adsorption column, ITS, tef1-α, rpb2 amplified production carries out two-way order-checking with amplimer respectively.
The connection that sequence ClustalX program after order-checking carries out rDNA sequence is joined (alignment) and is compared, edits, and then submits GenBank to.ITS1, ITS2 and 5.8SrDNA sequence mould for wood in sequence and GenBank is carried out tetraploid rice.
Table 1PCR reaction system (50 μ l)
Interpretation of result:
The morphological feature of bacterial strain TS0404:
The upper 25 DEG C of cultivations of CMD 5 days bacterium colonies can cover whole flat board, and bacterium colony is thin, white mycelium, the radial loose growth of mycelia, and colony edge position aerial hyphae is thickening gradually, and the edge of wide strip becomes fine hair shape.Conidiophore main shaft is high-visible, approximate 90 ° of side shoot crotch angle.Conidium Asia is spherical, and bottle stalk has prolification.
The ITS sequence of bacterial strain TS0404 is as shown in SEQIDNO.1, and Tef sequence is as shown in SEQIDNO.2, and Rpb2 sequence is as shown in SEQIDNO.3.
According to morphology and molecular systematics qualification result, bacterial strain TS0404 is gradually green trichoderma (Trichodermaviridescens), called after is green trichoderma (Trichodermaviridescens) TS0404 gradually, this bacterial strain has been kept at the China Committee for Culture Collection of Microorganisms's common micro-organisms center (CGMCC) being positioned at No. 3, Yard 1, BeiChen xi Road, Chaoyang District, Beijing City, deposit number is: CGMCCNO.7821, and preservation date is on June 27th, 2013.
The screening of embodiment 2 antagonistic Trichoderma bacterial strain
With embodiment 1 the trichoderma strain that obtains of separation for strains tested.
(1) glassine paper method
Whether can produce with glassine paper cultivation detection trichoderma strain and have inhibiting secondary metabolites to Phytophthora capsici bacteria growing.Glassine paper is cut into the disk of diameter 9cm, separates glassine paper disk respectively with the scraps of paper, parcel after superposition, high-temperature sterilization.Before use, glassine paper disk is placed in the container containing aqua sterilisa, makes it moistening.PDA is poured in the sterilizing culture dish of diameter 9cm, to be cooled solidify after aseptically sterilizing glassine paper is attached to media surface, volatilize excessive moisture in superclean bench.
Trichoderma strain and the switching of Phytophthora capsici bacterial strain are activated on PDA medium, after grown 48h, uses diameter 5mm: card punch is cut into bacterium cake at colony edge.By pure culture biscuits involvng inoculation to the culture dish central authorities containing glassine paper.Cultivate in incubator under 25 DEG C of dark conditions.Until wood is mould cover with culture dish soon time, throw off glassine paper, and the bacterium cake of the upper phytophthora blight of pepper of inoculation.Each process in triplicate, is cultivated in 25 DEG C of incubators, observes the upgrowth situation that epidemic disease is mould.
(2) crude extract method
The trichoderma strain with metabolite activity that early stage screens is carried out the experiment of metabolite crude extract, determines its metabolite activity further.
Be seeded in by the trichoderma strain of activation in the culture dish of cover glass paper, each bacterium connects 20 culture dishes.After bacterium colony covers with glassine paper, move Trichoderma fall and glassine paper.Draw broken medium with clean scalpel, be extracted with ethyl acetate 3 times, combining extraction liquid is (40 DEG C) concentrated evaporate to dryness on a rotary evaporator, adds 2ml acetone and is again dissolved by extract.In sterilized culture dish, pour the PDA medium 10ml of thawing into, cool in superclean bench and vapor away unnecessary moisture.Draw the middle that 20 microlitre crude extracts are applied to medium, then the bacterium cake (5mm) of Phytophthora capsici is placed on crude extract and (makes mycelia contact crude extract).Cultivate under 25 DEG C of dark conditions, observe every day and record the mould upgrowth situation of epidemic disease.Only to add 20 L acetone for contrast.Each process in triplicate.
Interpretation of result
To Zhangjiajie, all bacterial strains that Mount Taibai is separated with Mount Taishan screen, and obtain the growth that the mould metabolite of 34 strain wood can suppress Phytophthora capsici, the mould growth of epidemic disease is less than bacterial strain 75 strain of contrast epidemic disease mould 1/2.
Can produce for 34 strains that the wood of active metabolite is mould carries out crude extract determination of activity experiment, found that crude extract that gradually green trichoderma bacterial strain (Trichodermaviridescens) is numbered TS0404 (picking up from Mount Taibai) can suppress the growth of Phytophthora capsici completely.
Wood is mould secretes various hydrolase as chitinase (chintinases) in its metabolic process, dextranase (glucnaases) and protease (proteinases), the cell wall of their energy degradative fungis is one of main mechanism of control plant fungal pathogen.Glassine paper can pass through the albumen of at least 90Dka, and these hydrolases enter (Kullniget.al, 2000) in agar medium by glassine paper.Therefore, the metabolite entered in agar medium by glassine paper not only may contain various albumen (hydrolase, antibacterial peptide), also containing antimicrobial compound and other secondary metabolites, thus produces the effect suppressing Phytophthora capsici bacteria growing.
The application of embodiment 3TS0404 trichoderma strain in capsicum epidemic disease control
The preparation of biological prevention and control agent
(1) wooden mould TS0404 spore suspension is prepared
Mould for wood TS0404 is seeded in PDA medium, cultivates 6 days at 25 DEG C; After cultivation completes, scraped by spore in aqua sterilisa, preparation obtains TS0404 spore suspension, and (viable bacteria concentration is 10 8individual/mL).
(2) Trichoderma preparation is prepared
Mould for wood TS0404 spore suspension is inoculated in the wheat (feed wheat) boiling sterilizing, needed for every kilogram of wheat, the consumption of wooden mould TS0404 spore suspension is stir in time between 3mL culture period, at 12 h light and 12 h dark alternate cultures after 18 days, medium produces a large amount of spores, spore is Trichoderma preparation together with wheat.
Biological and ecological methods to prevent plant disease, pests, and erosion is tested
Adopt the main cultivation in Zhejiang area capsicum susceptible variety Hangzhoupro green pepper No. 2, carry out biological and ecological methods to prevent plant disease, pests, and erosion test.
(1) after capsicum field planting (namely transplanting seedlings), around rhizosphere, use Trichoderma preparation, wherein, the amount of application of Trichoderma preparation is the every strain of 2g/.
After (2) one months, with root-pouring method inoculation phytophthora blight of pepper spore suspension, spore concentration is 10 8individual/mL, every strain capsicum inoculation 3ml.Each process 20 strain, designs three repetitions.
(3) inoculate after pathogen after 22 days, record incidence, calculates control efficiency.
Control efficiency (%)=100 × (contrast disease index-process disease index)/(contrast disease index)
Through statistics, Trichoderma preparation of the present invention is 72.5% to the control efficiency of Phytophthora capsici.
The extracting and developing of embodiment 4 metabolite, determination of activity
One, experimental technique
1, the cultivation that wood is mould
(1) solid culture and extracting method
The trichoderma strain TS0404 of activation is seeded in the large culture dish of the diameter 12cm of cover glass paper, Dual culture 500 ware, cultivates 15 days under 25 DEG C of dark conditions, remove glassine paper.Draw broken medium with clean scalpel, be extracted with ethyl acetate 3 times, concentrate with evaporate to dryness concentrated at 40 DEG C, dissolves with a small amount of acetone, pipettes solution for subsequent use to centrifuge tube with glass pipette by combining extraction liquid on a rotary evaporator again.
(2) liquid culture and extracting method
Be inoculated into by the trichoderma strain TS0404 of activation in the 500ml triangular flask containing 200mlPDB (potatodextrosebroth) culture fluid, in shaking table, under 23 DEG C of dark conditions, 140r/min cultivates 15 days.By culture fluid Filter paper filtering, filtrate, with the extraction into ethyl acetate 2 times of 1/2 volume, collects bacterium liquid 40L altogether, and extract is merged the concentrated dry product that slightly got sample.
2, the chromatographic purifying of metabolite and the determination of activity of different component
(1) column chromatography
After being merged by the crude extract collected, carry out column chromatography for separation test.
Silica gel pretreatment: after silica gel (200-300 order) is washed respectively with diluted acid, diluted alkaline, be washed with distilled water to neutrality, again silica gel is suspended in 95% ethanol, hold over night, pour out ethanol, then repeat once, suction filtration, after flinging to ethanol, be put in drier dry 8h at 110 DEG C after and save backup.
Sample adsorption: take a morsel column chromatography silica gel in culture dish, adds the crude extract with acetone solution, fully stirs, crude extract is fully mixed with silica gel, uniform adsorption.Leave standstill a period of time, after acetone volatilization completely, for subsequent use.
Dress post loading: the silica gel (200-300 order, column chromatography is special) taking example weight 100 times, adds appropriate benzinum, agitation as appropriate, makes silica gel and benzinum mix, slowly pours in pillar, in process, rap pillar to remove issuable bubble.The piston opened below pillar flows out by eluent.When eluent liquid level is close to silica gel aspect, silica gel adds a cotton, then must be sprinkling upon even for the silica gel adsorbing crude extract on cotton, finally add an absorbent cotton again in the superiors, in order to avoid destroy Silica Surface when adding eluent.
Cross post to collect: be made into gradient elution agent with benzinum and ethyl acetate, ratio is respectively 10:1,9:1,8:1 ... until 1:1.Normal pressure drip washing, collects eluent with sample cell, and every 5ml collects a pipe.The eluent collected in each bottle is carried out thin-layer chromatography, observes its speckle displacement, eluent identical for speckle displacement is merged.
Activity experiment: after the component collected is merged, by after eluent evaporate to dryness in Rotary Evaporators, add a small amount of acetone solution, transfer in sample cell, carry out activity experiment respectively.In sterilized culture dish, pour the PDA medium 10ml of thawing into, cool in superclean bench and vapor away unnecessary moisture.Draw the middle that 20 microlitre crude extracts are applied to medium, the bacterium cake of Phytophthora capsici is placed on crude extract and (makes mycelia contact crude extract).Cultivate under 25 DEG C of dark conditions, observe every day and record the mould upgrowth situation of epidemic disease.Only to add 20 L acetone for contrast.Each process in triplicate.
(2) thin-layer chromatography
The preparation of thin layer chromatography board: 50g tlc silica gel (GF254) is mixed with suitable ratio with water, abundant stirring, adds a small amount of sodium carboxymethylcellulose as binder, furnishing pasty state, leave standstill after 3 hours, remove bubble with ultrasonic washing instrument, it evenly must to be layered on clean glass plate, thickness is about 0.5mm, at room temperature dry, in the baking oven of 110 DEG C, activate 1 hour, after treating that its temperature is down to room temperature, silica gel plate is transferred in drier for subsequent use.
Point sample: in order to reduce the impact of impurity in silica gel, first with solvent, pre-deployment is carried out to remove the impurity in silica gel to the silica gel plate prepared before point sample, at 105 DEG C, 30min is activated again after being dried by the silica gel plate of pre-deployment, in drier, be cooled to room temperature, take a morsel crude extract sample, uses a small amount of acetic acid ethyl dissolution, silica gel plate carries out thin-layer chromatography (Thin-layerchromatography, TLC) analyze, 1.5cm at the bottom of point of sample distance plate, dries up with hair-dryer.
Launch: the excellent silica gel plate of point is placed in the chromatography cylinder using solvent saturated in advance, launches with upright ascending method, and record expansion situation.Solvent is the mixture of benzinum and ethyl acetate, and its ratio is about benzinum: ethyl acetate=4:1.
Silica gel plate observes spot under 254nm uv analyzer, then fumigates with iodine vapor, determines speckle displacement.Remaining extraction sample is all placed on silica gel plate and carries out chromatography, with Pencil marks spot profile.After sample spot scrapes respectively, silica gel powder adds acetone, is again dissolved by the fungal metabolite be adsorbed on silica white, repeat extraction 3 times, after merging extract, with Filter paper filtering, add a small amount of acetone after concentrated evaporate to dryness on a rotary evaporator extract is dissolved again, move in sample cell for subsequent use.
The sample solution of the different component obtained by thin-layer chromatography carries out activity test respectively.Activity experiment method is with crude extract activity experiment method.Take acetone as contrast, whole experiment in triplicate.
3, the Structural Identification of spot 2 in component three
Infrared spectrum analysis: the spot 2 in component three is carried out infrared spectrum analysis;
Nuclear magnetic resonance spectroscopy: the spot 2 in component three is carried out infrared spectrum analysis.
Two, results and analysis
1, metabolite slightly gets sample the column chromatography for separation result of product
Extract solid culture ware and the liquid fermentation liquid of mass propgation with ethyl acetate, altogether obtain crude extract 5g.
Utilize silica gel by polarity by weak extremely strong order, with different solvent system gradient elutions, to the eluent collected respectively under uv analyzer and observe the position of spot in iodine cylinder, eluent identical for speckle displacement is merged, the eluent that spot intersects is rejected, and altogether obtains the eluent of 5 components.Collect by equivalent, altogether collect 120 bottles of eluents.Wherein, the ratio of first component eluent is benzinum: ethyl acetate=10:1, and this ratio eluent collects 15 bottles altogether.The ratio of second component eluent is benzinum: ethyl acetate=8:1, and this ratio eluent collects 10 bottles altogether.The ratio of the eluent of the 3rd component is benzinum: ethyl acetate=6:1, collects 30 bottles altogether.The eluent ratio of the 4th component is benzinum: ethyl acetate=4:1, collects 30 bottles altogether, and the eluent ratio of the 5th component is benzinum: ethyl acetate=2:1, collects 35 bottles altogether.
As shown in Figure 4, carry out Antibacterial Activity to Phytophthora capsici respectively to being separated 5 components obtained, result shows, and component three has the activity that Phytophthora capsici mycelia can be suppressed to grow.
2, metabolite slightly gets sample the active testing result of product
As shown in Figure 1, the crude extract metabolite of trichoderma strain TS0404 shows the exercising result of Phytophthora capsici mycelia, and after 7 days, Phytophthora capsici bacterium colony cannot grow, and the mould normal growth of the epidemic disease contrasting (acetone is as blank), bacterium colony covers with whole culture dish.This illustrates that wood is mould and slightly carries in metabolite containing the active component suppressing Phytophthora capsici bacteria growing.
3, for the active testing result of anthrax-bacilus
As shown in Figure 2, the crude extract metabolite of trichoderma strain TS0404 shows the exercising result of persimmon anthrax-bacilus, and after 7 days, persimmon anthrax-bacilus bacterium colony cannot grow, and the mould normal growth of the epidemic disease contrasting (acetone is as blank), bacterium colony covers with whole culture dish.This illustrates that wood is mould and slightly carries in metabolite containing the active component suppressing the growth of persimmon anthrax-bacilus.
4, metabolite thin-layer chromatography and active testing result
The 3rd component collected by column chromatography carries out thin-layer chromatography expansion, the ratio of the solvent used is benzinum: ethyl acetate=4:1, after silica gel plate is taken out, after drying up solvent with hair-dryer, be under the uviol lamp of 254nm at wavelength, as Fig. 3, two spots can be observed, and after iodine is stifling, find no newly-increased spot.Rf value=0.62 of spot 2 and, this spot colors is denseer, and area is comparatively large, thinks that the compounds content of this spot is larger.Rf value=0.28 of spot 1.
After 2 spots obtained by component 3 thin-layer chromatography reclaim, use acetic acid ethyl dissolution compound respectively, by ethyl acetate evaporate to dryness in Rotary Evaporators, add a small amount of acetone solution compound, carry out Phytophthora capsici bacteriostatic activity test, as Fig. 5, result shows, spot 2 in component 3 can suppress the growth of Phytophthora capsici, and spot 1 does not have the bacteriostatic activity of Phytophthora capsici.Be separated through thin-layer chromatography, the amount finally obtaining spot 2 in component 3 is 0.5g.
5, spot 2 compound structure testing result:
Infrared spectrum is 1738 -1there is the C=O absorption band that strong, 1634-1 and 1559 -1two C=C elongated strap.Think a-pyrones ring (a-pyronering) (see Fig. 6).Mass spectrum shows a parent ion at m/e166.Molecular formula is C 10h 14o 2, exactmass:166.10, molecularweight:166.22, m/z:166.10 (100%), 167.10 (10.9%), Elementalanalysis:C, 72.26; H, 8.49; O, 19.25, the structural formula of this compound is as shown in Figure 10.Nuclear magnetic resonnance (NMR) 1h signal is presented at 0.94 (3, triplet), and 1.4 (6H, complexmultiplet) 2.48 (2H, triplet) is unanimously to pentyl (see Fig. 7).Nuclear magnetic resonnance (NMR) 13c Signal aspects is at δ 12.95,21.99,26.37,30.84,33.13,102.92,112.16,145.03,163.75 and 166.81 (see Fig. 8).Dept shows the adjacent H element number (see Fig. 9) of C.The analysis of IR and NMR collection of illustrative plates discloses, and this compound is completely the same with " 6-pentyl-2H-pyran-2-one " (the 6-pentyl-α-pyrone) reported.
This compound is found in T.viride culture fluid by CollinsandHalim (1972) first time and identifies this compound.Since then, this compound is obtained in T.harzianum (Claydonetal.1987) andT.koningii (Simonetal.1988) middle period.This metabolite has significant biologically active to basidiomycetes Rhizoctonia solani Kuhn (Rhizoctoniasolani) and sac fungi tomato fusarium oxysporum (Fusariumoxysporumf.sp.Lycopersici).This compound is also for preventing and treating storage period kiwi fruit rot (Pooleetal.1998) that botrytis cinerea (Botrytiscinerea) causes simultaneously.But also this compound does not have the research report of antagonism to oomycetes phytopathogen so far.But because oomycetes monoid belongs to Zao Wu circle, and basidiomycetes and Saccharomyces are in mycota, and this compound of Late Cambrian of the present invention has strong inhibit activities to oomycetes phytopathogen Phytophthora capsici.The main component of oomycetes cell wall is cellulose, and the main component being different from the cell wall of fungi is chitin.The present invention expands the frontier of this compound application, also for biological bactericide Prof. Du Yucang provides important information.
The activity analysis of embodiment 5 compound
With acetone diluted 6-pentyl-2H-pyran-2-one, be made into 100ppm respectively, the solution of 50ppm, 20ppm, 10ppm, 5ppm.Get the solution that 20 μ l dilute respectively, drip in the middle part of PDA flat board, the bacterium sheet (5mm) of placement containing phytophthora blight of pepper is on drop.Put culture dish to cultivate under 25 DEG C of dark conditions, to drip acetone soln for contrast, observe the growing state of Phytophthora capsici mycelia, statistics after 7 days.
6-pentyl-2H-the pyran-2-one of table 2 variable concentrations is to the inhibition of phytophthora blight of pepper
Observed result shows, when this compound concentration is more than 20ppm, can suppress the growth of Phytophthora capsici mycelia completely; During lower than 20ppm, grow the suppression (see table 2) be subject in various degree.

Claims (1)

  1. The application of 1.6-pentyl-2 hydrogen-pyran-2-one in control capsicum epidemic disease, the structural formula of described 6-pentyl-2 hydrogen-pyran-2-one is as follows:
CN201410410088.4A 2013-06-27 2013-06-27 The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease Active CN104273125B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310264340.0A CN103409324B (en) 2013-06-27 2013-06-27 Trichoderma viridescens for preventing and treating pepper phytophthora blight and compound thereof

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
CN201310264340.0A Division CN103409324B (en) 2013-06-27 2013-06-27 Trichoderma viridescens for preventing and treating pepper phytophthora blight and compound thereof

Publications (2)

Publication Number Publication Date
CN104273125A CN104273125A (en) 2015-01-14
CN104273125B true CN104273125B (en) 2016-03-02

Family

ID=49602367

Family Applications (2)

Application Number Title Priority Date Filing Date
CN201310264340.0A Active CN103409324B (en) 2013-06-27 2013-06-27 Trichoderma viridescens for preventing and treating pepper phytophthora blight and compound thereof
CN201410410088.4A Active CN104273125B (en) 2013-06-27 2013-06-27 The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease

Family Applications Before (1)

Application Number Title Priority Date Filing Date
CN201310264340.0A Active CN103409324B (en) 2013-06-27 2013-06-27 Trichoderma viridescens for preventing and treating pepper phytophthora blight and compound thereof

Country Status (1)

Country Link
CN (2) CN103409324B (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101608735B1 (en) * 2014-09-01 2016-04-04 최일현 Microorganism extract using the effective microorganisms and functionality microorganism and the production method thereof
CN107954964B (en) * 2017-10-25 2019-09-03 宁波大学 One kind 3,4,6 3 substitution-α-pyrone derivative and its preparation method and application
CN107954965B (en) * 2017-10-26 2019-09-03 宁波大学 A kind of gamma-pyrone derivative and its preparation method and application
CN110408547B (en) * 2019-07-29 2020-11-10 浙江大学 Trichoderma viride for preventing and treating phytophthora capsici, application and capsicum cultivation method

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102071145A (en) * 2010-09-09 2011-05-25 河南省农业科学院 Trichoderma viride fungi and preparation and application of fungicide thereof
CN103053624A (en) * 2012-12-27 2013-04-24 浙江大学 Method for control of phytophthora blight of pepper by mixed application of trichoderma preparation and fungicides

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102071145A (en) * 2010-09-09 2011-05-25 河南省农业科学院 Trichoderma viride fungi and preparation and application of fungicide thereof
CN103053624A (en) * 2012-12-27 2013-04-24 浙江大学 Method for control of phytophthora blight of pepper by mixed application of trichoderma preparation and fungicides

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
《Characterization of the major aroma constituent of the fungus trichoderma viride》;Collins.R.P.ET AL.;《J.Agric.Food.Chem》;19720331;437-438 *
《Hypocreal thrichoderma viridescens ITV43 with potential for biocontrol of moniliophthora rorcricif and par, phytophtora mcgaspcrma and phytophthora capsici》;cuervo-parra J.A. ET AL;《african journal of microbiology research》;20140430;1704-1711 *
《关于植物卵菌病害的若干问题》;罗浚清;《农药市场信息》;20020630(第12期);24-25 *

Also Published As

Publication number Publication date
CN103409324A (en) 2013-11-27
CN103409324B (en) 2014-12-24
CN104273125A (en) 2015-01-14

Similar Documents

Publication Publication Date Title
CN103131658B (en) Bacillus and application thereof in control of apple ring spot
CN106906172B (en) One plant of Streptomycesalbidoflhaving and its application in terms of apple tree canker prevention and treatment
CN102864081A (en) Trichoderma strain for antagonizing cucumber fusarium wilt disease efficiently and application thereof
CN107083349A (en) The white black streptomycete of one plant of disease prevention growth-promoting and its preparation and application of metabolite
CN105886405B (en) Dendrobium candidum endogenetic fungus and its application
CN104630086B (en) A kind of bacillus amyloliquefaciens RL263 of prevention rice blast
CN103952362A (en) Citrus endophytic actinomycetes with antibacterial activity on various plant pathogens
CN104273125B (en) The application of 6-pentyl-2 hydrogen-pyran-2-one in control plant Oomycete disease
CN107099467A (en) One Pseudomonas aeruginosa strain XCS007 and its application in preventing and treating tobacco black shank
WO2023000612A1 (en) Fungicide for botryodiplodia theobromae and use thereof
CN102925511B (en) Staurosporine preparation method
CN100381432C (en) Pyronone antibiotic its preparation method and application
CN104195064B (en) The Oryza sativa L. endogeny rayungus of the one external efficient antagonism Pyricularia oryzae of strain
CN104342388A (en) Streptomyces strain and combined application thereof in prevention and treatment of tomato blight
CN113005048B (en) Streptomyces nigricans CYS22, metabolite thereof and application thereof
CN104342389A (en) Streptomyces strains and joint application thereof in prevention and treatment of cucumber fusarium wilt
CN117106639A (en) Streptomyces nojirimensis strain and application of fermentation liquor thereof in preventing and controlling pepper anthracnose
CN102204572B (en) Use of metabolites of nigrospora oryzae 46 in prevention of colletotrichum lindemuthianum
CN110447457A (en) A kind of pycnoporus samguineus new strains and its artificial cultivation method and purposes
CN108949607A (en) A kind of Chinese prickly ash endogeny rayungus HJG-5 and its application
CN109182216A (en) One plant of marine streptomyces SCFJ-05 inhibited to succulent stem rot
CN109077068A (en) A kind of application of fungi rod method in prevention and control exotic invasive weed Yellow calla
CN108191663A (en) Antagonism rice leaf spot bacteria active monomer compound and preparation method thereof
CN103222479B (en) Use of Streptomyces sioyaensis metabolite in prevention and control of Colletotrichum lindemuthianum
CN104893986A (en) Dragonfly intestinal bacterium aspergillus terreus QT122 and metabolite and application thereof

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant