CN101743836A - Method for substituting for flaveria bidentis by utilizing grain amaranth - Google Patents

Method for substituting for flaveria bidentis by utilizing grain amaranth Download PDF

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CN101743836A
CN101743836A CN200910265407A CN200910265407A CN101743836A CN 101743836 A CN101743836 A CN 101743836A CN 200910265407 A CN200910265407 A CN 200910265407A CN 200910265407 A CN200910265407 A CN 200910265407A CN 101743836 A CN101743836 A CN 101743836A
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amaranthus
grain production
average
plant
biological substitution
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CN101743836B (en
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张国良
付卫东
韩颖
郭虎将
吴鸿斌
王保廷
皇甫超河
王秋霞
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Institute of Environment and Sustainable Development in Agriculturem of CAAS
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Abstract

The invention provides a method for substituting for flaveria bidentis by utilizing grain amaranth; in the method, the grain amaranth is adopted to carry out biological substitution to the flaveria bidentis; the method can lead the germination rate of the flaveria bidentis to be reduced by 80.43 percent, the average plant height is reduced by 77.30 percent, the average single plant branches are reduced by 98.96 percent, the average single plant leaves are reduced by 99.14 percent, the average single plant biomass liveweight is reduced by 92.54 percent, the average soluble protein content is reduced by 52.99 percent, and the method has remarkable control function to the foreign invasion of the flaveria bidentis; the grain amaranth is a common plant, the seed is easy to obtain, the planting method is simple, and the operation is easy; the grain amaranth is pasture with good quality, while controlling the population quantity of the flaveria bidentis, the grain amaranth has a certain economical value.

Description

Utilize Grain Production of Amaranthus to substitute the method for yellow top chrysanthemum
Technical field
The present invention relates to the Ecological Control technical field, the biological substitution method of especially yellow top chrysanthemum.
Background technology
Biology invades another new environment by former existence ground warp approach nature or artificial, bio-diversity, agriculture, forestry, animal husbandry and fishery production and the human health of invading ground caused economic loss or ecocatastrophe, and (all places is great, Guo Jianying, Wang Dehui. the harm of Chinese exotic invasive biology and management game [J]. bio-diversity, 2002,10 (1): 119-125.), be biotic intrusion.At occurring in nature, biotic intrusion is a kind of ubiquitous phenomenon, and the kind of biotic intrusion has also comprised nearly all biological group, and along with global economic integration, international, domestic trade is come and gone more and more frequent, and the probability that biological success is invaded also increases greatly.The adventive invasion can produce serious disturbance and harm to structure, function and the ecotope of the specific ecosystem; Adventive invasion changes food chain by compacting or the mode of squeezing local species or the food network is formed and structure, particularly Alien Weeds, is often causing the diversity of flora to become very single on invasion ground, and is destroying the arable land; The adventive invasion has influence on each ecosystem and biota, makes hundreds of local species be absorbed in the extinction condition, has quickened the forfeiture of bio-diversity and the extinction of species; Adventive is invaded the bio-safety that can threaten a country, jeopardizes the ecological safety of a country, the economic security of a country of harm, and the people's interests of a country of infringement, even shake the stable foundation of a society.
China is that a real estate is abundant, the various large agricultural country of species, and biotic intrusion is particularly serious to the influence of China.Biological and the local species competition of exotic invasive living space, nutrient jeopardize the particularly existence of rare and endangered species of local species, cause the forfeiture of bio-diversity, to the 26S Proteasome Structure and Function generation harmful effect of China's ecosystem; The adventive invasion can bring direct economy harm to farmland gardening, lawn, forest, herding, aquatic products etc.; Thereby adventive is invaded by the natural ecosystems that change invasion ground, reduction species diversity local society, culture even health of people is produced serious harm.Biotic intrusion is just becoming one of key factor that threatens China's agriculture and forestry production, bio-diversity and ecotope.
At present, the identified exotic invasive biology of placing on record of China has 427 kinds, wherein: 55 kinds of plant pathogenic microorganismss (30 kinds of fungies, 6 kinds on bacterium, 10 kinds in virus, 9 kinds of nematodes); 244 kinds of plants (18 kinds of water plants, 226 kinds of Lu Sheng); 128 kinds of animals (comprising invertebrate, amphibious reptiles, fish, mammality etc.).Huang Dingju (Flaveria bidentis (L.) Kuntze) is to invade China in recent years, and agricultural is endangered very large exotic plant.
Huang Dingju belongs to composite family sneezeweed family yellow top Chrysanthemum, is annual herb, originates from South America, is that a kind of happiness light, happiness are wet, salt tolerant alkali, impoverishment tolerant, growth is rapid, fertility is strong, the great weeds of solid amount, has very strong resistance and environmental suitability.Huang Dingju propagates into states such as South Africa, Egypt, Britain, France, Australia, Japan owing to reason such as introducing a fine variety, and pernicious invasive weed becomes international.Chrysanthemum can be invaded multiple ecotope on yellow top, invasion ground such as comprises before the edge of a field, irrigation canals and ditches limit, limit, rivers and lakes, Rail Highway limit, the room behind the house, in case just can form single advantage group, repel local species, thoroughly change species composition, quantity and the trophic structure of the ecosystem.Behind the Huang Dingju invasion farmland, strive fertilizer with crops, strive water, win honour for, suppress crop growth.Behind the chrysanthemum of the yellow top of wheatland growth, can cause a mu spike number reduction, thousand kernel weight to descend.In the soil of yellow top chrysanthemum of growing, plant soybean, and its germinating capacity reduction (Zhou Xianzhong, Liu Liyun. brief talk harm and the control [J] of the yellow top of new alien species chrysanthemum. agricultural technology service, 2008,25 (1): 52-89.).Yellow top chrysanthemum aggressiveness and resistance are extremely strong, and vitality is very vigorous, by constantly striving unexpectedly, substitute the eciophyte resource, and the ecosystem of invading ground is caused irreversible destruction, cause serious biological pollution.The florescence of Huang Dingju is long, and pollen amount is big, florescence and most of indigenous composite family juxtaposition.If other the indigenous feverfew intergeneric cross in Huang Dingju and the generation area just might cause forming the bigger species of new harmfulness.
From calendar year 2001 since lakeside, Hengshui, China Hebei province is found first, owing to lack effective prevention and control technical measures, Huang Dingju in Hebei province, Tianjin, Shandong Province and Henan Province's diffusion spread, and causes large tracts of land harm, China's grain-production and ecotope are constituted a serious threat.Only 2007, the Huang Ding of Hebei province chrysanthemum epidemic situation expanded 11 districts and cities, 89 counties (district, city) to, and the serious harm area reaches more than 560,000 mu.
Chrysanthemum can become invasive species gradually along with the expansion of range of scatter on yellow top, the root system that one of its reason is exactly yellow top chrysanthemum can be secreted allelochemical (plant or microorganism secretion a kind of to other plant in the environment or the favourable or disadvantageous metabolic secretion thing of microorganism) and suppress other plant growth (Li Xiangju, Zhang Miru, Li Yongjun, Deng. yellow top chrysanthemum aqueous extract is to the STUDY ON ALLELOPATHIC EFFECTS [J] of plant seed germination and radicle elongation. the weeds science, 2007, (4): 15-19.).At present, to the allelochemical among Huang Dingju research with report more flavonoids (Quercetin sulfuric ester) (the Guglielmone H A that is mainly, AgneseA M, Nunez Montoya S C, et al.Anticoagulant effect and action mechanismof sulphated flavonoids from Flaveria bidents[J] .Thrombosis Research, 2002,105 (2): 183-188.) and thiophenes (Agnese A M, Nunez Montoya S C, Espinar L A, et al.Chemotaxonomic features in Argentinian species[J] .Biochemical Systematics and Ecology, 1999,27:739-742.).Domestic there are some researches show, the flower of Huang Dingju, root, stem, leaf extract all have allelopathy to three-coloured amaranth, green foxtail, lamb's-quarters seed germination, and it is relevant with extract concentration, show the extract of Huang Dingju can reduce the length of seed germination rate, radicle (Li Sujing. yellow top chrysanthemum study on allelopathy [J]. the Shaanxi agricultural science, 2007, (6): 80-81.).The different extracts of yellow top chrysanthemum show in various degree inhibitory action to wheat seedling growth, the active concentration along with the each several part extract of this inhibition increases and strengthens, under the same concentrations new cadmium yellow top chrysanthemum plant water extract to the inhibitory action of wheat seedling growth be better than its root system water extract to the inhibitory action of wheat seedling growth (Chen Yan. the yellow top of exotic invasive weed chrysanthemum is analyzed .2008, Master's thesis to the allelopathy of wheat .).Yellow top chrysanthemum cauline leaf water extract all shows in various degree inhibitory action to corn, wheat, cotton, soybean, peanut, lady's-grass and Amaranthus retroflexus, wherein the strongest with change sense effect to cotton, when its concentration is 0.2g/mL, change sense index long to root and that stem is long be respectively-0.85 with-0.88 (Xu Wenchao, Xu Jiao makes pottery and feeds, etc. the stranger invades the allelopathy Primary Study [J] of the yellow top of plant chrysanthemum. Agricultural University Of Hebei's journal, 2007,30 (6): 63-67.).
In addition, yellow top chrysanthemum root system is very flourishing, and water absorbing capacity is extremely strong, and growth potential is strong.Its plant is tall and big, and branches and leaves are very dense, seriously blocked the necessary sunlight of other biological growth, tie up the living space of other plant, have ecological occupancy, and it is single to form vegetation in the course of time, the abominable ecotope of plant resources scarcity.
The main method of administering yellow top chrysanthemum at present has:
Physical control: one of the most effective the method for control at present, be Huang Dingju vegetative growth phase 4~August, also is the best opportunity of rooting out Huang Dingju, fully mobilize the masses, to generation in blocks area, elder generation's manpower cuts off plant, ploughs the solarization root again, chooses most root stubble again, burn then, accomplish to pull the grass up by its roots, with discovery, with pulling out.But physical control consumes lot of manpower and material resources, and efficient is low, and is serious for harm, that area is big is local inapplicable.
Chemical control: utilizing chemical control is one of main method of the yellow top of control chrysanthemum, steriland herbicide glyphosate, paraquat have effect preferably to the anti-top chrysanthemum of harnessing the Yellow River, hormone herbicide has special efficacy (Wang Qiuxia to the anti-top chrysanthemum of harnessing the Yellow River, Zhang Hongjun, Guo Meixia, Deng. the chemical control [J] of the yellow top of exotic invasive weed chrysanthemum. ecotope, 2008,17 (3): 1184-1189.).But chemical control can not be eradicated Huang Dingju to the seed weak effect in the soil, and concerning human health and non-target species too many threat is arranged all.In addition, along with a large amount of uses of chemical agent, the resistance of Huang Dingju will constantly increase, and the price of medicament costliness and the necessity of repetitive administration often make continuous dispenser control become unlikely.
Biological control: utilize natural enemy animal or pathogenic microorganisms prevent harnessing the Yellow River the top chrysanthemum still under test, can't thoroughly root out Huang Dingju effectively.
Summary of the invention
In order to address the above problem, the invention provides the exotic invasive that a kind of biological substitution method is controlled yellow top chrysanthemum, technical scheme of the present invention is as follows:
1, a kind of biological substitution method of controlling yellow top chrysanthemum exotic invasive is characterized in that, described method adopts Grain Production of Amaranthus (Amaranthus hypochondriacus L.) to come Huang Dingju is carried out biological substitution.
2, as technical scheme 1 described biological substitution method, wherein, described Grain Production of Amaranthus adopts the seeding method plantation.
3, as technical scheme 2 described biological substitution methods, wherein, described Grain Production of Amaranthus adopts the mode of drilling to plant.
4, as technical scheme 3 described biological substitution methods, wherein, the plantation line-spacing of described Grain Production of Amaranthus is 30cm~40cm.
5, as technical scheme 2~4 each described biological substitution methods, wherein, the sowing depth of described Grain Production of Amaranthus is 1cm~3cm.
6, as technical scheme 2~5 each described biological substitution methods, wherein, the planting density of described Grain Production of Amaranthus is 0.5g/m 2~0.7g/m 2
7, as technical scheme 2~6 each described biological substitution methods, wherein, the final singling when plant height 20cm~30cm of described Grain Production of Amaranthus.
8, as technical scheme 7 described biological substitution methods, wherein, the final singling spacing in the rows of described Grain Production of Amaranthus is 10cm~15cm.
9, as technical scheme 2~8 each described biological substitution methods, wherein, described Grain Production of Amaranthus was sowed in the self seed phase.
The biological substitution method of the yellow top of control provided by the invention chrysanthemum exotic invasive has the following advantages: this method can make the emergence rate of Huang Dingju reduce by 80.43%, average plant height reduces by 77.30%, average individual plant divides that number reduces 98.96%, average single-strain blade number reduces 99.14%, average biomass of individual tree reduces 92.54%, average soluble protein content reduces 52.99%, and is remarkable to the control action of the exotic invasive of Huang Dingju; Adopt Grain Production of Amaranthus that Huang Dingju is carried out biological substitution, seed obtains easily, and the kind method for planting is simple, easy to operate, can exempt a large amount of manpower and materials that physical control consumes; Grain Production of Amaranthus is a kind of frequently seen plants, can exempt the threat of chemical control to human health and non-target species; Grain Production of Amaranthus still is a kind of herbage of high-quality, can realize that again certain economic is worth in the chrysanthemum population quantity of the yellow top of control.
Embodiment
As mentioned before, the invention provides a kind of biological substitution method of controlling yellow top chrysanthemum exotic invasive, described method adopts Grain Production of Amaranthus to come Huang Dingju is carried out biological substitution.
In the present invention, term " biological substitution method " is meant by planting a plant species, another or growing of various plants in the same growing environment are suppressed, thereby make described " plant species " substitute the method for described " another or various plants " in described same growing environment, this biological substitution is owned by France in a kind of biological control method at replaced plant.In the present invention, replaced plant is Huang Dingju, is Grain Production of Amaranthus in order to the plant that substitutes yellow top chrysanthemum.
The Grain Production of Amaranthus plant is tall and big, plant height is generally 2m~4m, well developed root system, and under field conditions (factors), the growth rate in Grain Production of Amaranthus seedling stage can be pushed up chrysanthemum at Huang and just can form powerful crown density seedling stage than the yellow top chrysanthemum fast growth in seedling stage, ties up the growing space of Huang Dingju, with Huang Dingju contention illumination, moisture, nutrient etc., thereby suppress yellow growth of pushing up chrysanthemum.
The kind method for planting general using type of seeding of Grain Production of Amaranthus is carried out, the inventive method has no particular limits the seeding method of Grain Production of Amaranthus, can adopt for example drilling or broadcast sowing etc., but from the chrysanthemum growth of the yellow top of more abundant inhibition be convenient to gather in the crops aspect such as Grain Production of Amaranthus and take all factors into consideration, preferably adopt bar broadcast mode plantation Grain Production of Amaranthus.
The inventive method was not particularly limited the concrete time of Grain Production of Amaranthus sowing, and the growth as long as the suitable Grain Production of Amaranthus of weather conditions is emerged is promptly sowed in the self seed phase.For example, in the area, Hebei, the suitable sowing time of Grain Production of Amaranthus is mid or late April, the seedling-growing time of Huang Dingju is generally late April, yellow top chrysanthemum seedling growth is slow, and Grain Production of Amaranthus generally can be pushed up chrysanthemum at Huang and be formed powerful crown density seedling stage, ties up the growing space of Huang Dingju, with Huang Dingju contention illumination, moisture, nutrient etc., thereby form the inhibition that Huang top chrysanthemum is grown.
Under the situation of drilling Grain Production of Amaranthus, the inventive method has no particular limits the plantation line-spacing.But, from the chrysanthemum growth of the yellow top of more abundant inhibition, be convenient to gather in the crops Grain Production of Amaranthus and gather in the crops aspect such as more Grain Production of Amaranthus and consider that drill spacing is preferably 30cm~40cm, as being 30cm, 32cm, 34cm, 36cm, 38cm or 40cm.If line-spacing is excessive, then may be unfavorable for inhibitory action to Huang Dingju; If line-spacing is too small, then may be unfavorable for the growth of Grain Production of Amaranthus self.
The sowing depth of Grain Production of Amaranthus is generally 1cm~3cm, as being 1cm, 1.5cm, 2cm, 2.5cm or 3cm.If sowing depth is dark excessively, then may be unfavorable for being unearthed of Grain Production of Amaranthus; If sowing depth is shallow excessively, then may be unfavorable for the fixing of Grain Production of Amaranthus root system, thereby influences the late growing stage of Grain Production of Amaranthus.
The planting density of Grain Production of Amaranthus is generally 0.5g/m 2~0.7g/m 2, for example can be 0.5g/m 2, 0.55g/m 2, 0.6g/m 2, 0.65g/m 2, 0.7g/m 2If planting density is too small, then may be unfavorable for Huang Dingju is suppressed; If planting density is excessive, then may be unfavorable for the growth of Grain Production of Amaranthus self.
In addition, when Grain Production of Amaranthus plant height 20cm~30cm, unifiedly Grain Production of Amaranthus is carried out final singling handle, so that the Grain Production of Amaranthus later stage can better grow, the final singling spacing in the rows of Grain Production of Amaranthus is generally 10cm~15cm.
For the maintenance in later stage, the present invention is not particularly limited, and adopts conventional field method that Grain Production of Amaranthus is carried out maintenance management and gets final product.
Incidentally, except as otherwise noted, otherwise the number range that reaches described herein comprises the arbitrary value between end value and the endpoints thereof (being upper and lower bound).
Hereinafter will come the present invention is further detailed, but these embodiment should not be construed as limitation of the scope of the invention only for the purpose of illustration by embodiment.
Embodiment
Embodiment 1
April 26, the mode that adopts drilling was in Huang top chrysanthemum spot plantation Grain Production of Amaranthus, and the plantation line-spacing is 30cm, and sowing depth is 1cm, and planting density is 0.5g/m 2, adopt conventional field method that Grain Production of Amaranthus is carried out maintenance management, carry out the final singling of Grain Production of Amaranthus during Grain Production of Amaranthus plant height 20cm~30cm by the time, the final singling spacing in the rows is 15cm.Following data are measured when Huang Dingju is bloomed, the emergence rate that draws Huang Dingju is 20%, average plant height is 45cm, and it is that 8, average single-strain blade number are that 20, average biomass of individual tree are that 25g, average soluble protein content are 0.5mgg that average individual plant divides number -1FW, average protective enzyme content is 18.9 Δ A470min -1G -1FW.
Embodiment 2~12
Except that listed content in the table 1, embodiment 2~12 adopts the mode identical with embodiment 1 to implement.
Comparative example
Do not sow Grain Production of Amaranthus in chrysanthemum spot, Huang top, following data are measured when Huang Dingju is bloomed, the emergence rate that draws Huang Dingju is 92%, average plant height is 185cm, and it is that 575, average single-strain blade number are that 1850, average biomass of individual tree are that 335g, average soluble protein content are 1.17mgg that average individual plant divides number -1FW, average protective enzyme content is 11.5 Δ A470min -1G -1FW.
Every physical signs of the Huang Dingju that each embodiment and comparative example are measured is as shown in table 2.
The planting patterns that each embodiment of table 1 is adopted
Numbering Implantation time Line-spacing (cm) Sowing depth (cm) Planting density (g/m 2)
Embodiment 1 April 26 ??30 ??1 ??0.5
Embodiment 2 April 27 ??32 ??1.5 ??0.55
Embodiment 3 April 28 ??34 ??2 ??0.6
Embodiment 4 April 28 ??36 ??2.5 ??0.65
Embodiment 5 April 28 ??38 ??3 ??0.7
Embodiment 6 April 26 ??40 ??1 ??0.5
Embodiment 7 April 27 ??30 ??1.5 ??0.55
Embodiment 8 April 27 ??32 ??2 ??0.6
Embodiment 9 April 26 ??34 ??2.5 ??0.65
Embodiment 10 April 26 ??36 ??3 ??0.7
Embodiment 11 April 27 ??38 ??1 ??0.5
Embodiment 12 April 28 ??40 ??1.5 ??0.55
The parameters of the Huang Dingju that each embodiment of table 2 and comparative example are measured
Numbering Emergence rate (%) Average plant height (cm) Average individual plant divides number (individual) Average single-strain blade number (sheet) Average biomass of individual tree (g) Average soluble protein content (mgg -1??FW) Average protective enzyme content (Δ A470min -1??·g -1FW)
Embodiment 1 ??20 ??45 ??8 ??20 ??25 ??0.5 ??18.9
Embodiment 2 ??21 ??43 ??6 ??18 ??27 ??0.57 ??19
Numbering Emergence rate (%) Average plant height (cm) Average individual plant divides number (individual) Average single-strain blade number (sheet) Average biomass of individual tree (g) Average soluble protein content (mgg -1??FW) Average protective enzyme content (Δ A470min -1??·g -1FW)
Embodiment 3 ??18 ??42 ??6 ??16 ??25 ??0.55 ??19.3
Embodiment 4 ??17.2 ??42 ??4 ??15 ??21 ??0.54 ??19.7
Embodiment 5 ??15.3 ??36 ??3 ??14 ??20 ??0.5 ??19.5
Embodiment 6 ??14.2 ??45 ??7 ??22 ??19 ??0.46 ??20.1
Embodiment 7 ??21.2 ??43 ??6 ??16 ??29 ??0.58 ??19.1
Embodiment 8 ??19.5 ??41 ??4 ??14 ??26 ??0.53 ??19.4
Embodiment 9 ??18.7 ??40 ??4 ??13 ??24 ??0.56 ??19.6
Embodiment 10 ??17.4 ??39 ??2 ??12 ??21 ??0.48 ??19.4
Embodiment 11 ??16.5 ??37 ??5 ??18 ??20 ??0.5 ??20
Embodiment 12 ??14 ??35 ??4 ??14 ??19 ??0.45 ??20.2
Comparative example ??92 ??185 ??575 ??1850 ??335 ??1.17 ??11.5
Annotate: average biomass of individual tree is meant the average biomass of individual tree of yellow top chrysanthemum acrial part.
The assay method of each index of Huang Dingju is following, and (each sub-district is 3 * 3m 2, picked at random):
Emergence rate: according to the thousand kernel weight of seed, the sowing grain number of calculation plot, count the number of emerging of respective cell the back of emerging, and asks the mean value of calculating emergence rate.
Average plant height: 5 samplings in every sub-district, get 4 strains at every, be the tape measure mensuration plant height of 1mm with minimum scale, calculate the mean value of plant height.
Average individual plant divides all single-strain blade numbers of number peace: 5 samplings in each sub-district, and get 4 strains at every and count and ask calculation mean value.
Average biomass of individual tree: 5 samplings in each sub-district, every acrial part of getting 4 strains, with baking oven 104 ℃ complete 15 clocks after, dry to constant weight at 80 ℃.On electronic balance, claim its dry weight.
Average soluble protein content: 5 samplings in each sub-district, get 4 strains at every, three leaf a slices of plant are got in every strain, take by weighing 0.3g~0.5g after the mixing, shred and in the mortar of freezing mistake, add extract 3ml, add a small amount of quartz sand, in ice bath, grind to form homogenate fast, homogenate is poured in the centrifuge tube, use 5ml extract (at twice) that homogenate in the mortar is washed centrifuge tube again, then 10000r/min (rev/min), centrifugal 20min under 4 ℃ of conditions (minute), supernatant is the soluble protein extract.The Coomassie brilliant blue method of employing Gisnnopolitis (Gisnnopolitis C, Nries S K.Superoxidedismutases occurrence in higher plants.Plant Physiology, 1977,59:309-314.) measure.Get 0.1ml enzyme liquid and put into test tube respectively, add Tris buffer solution 0.9ml in the test tube again, the blank pipe adds Tris buffer solution 1ml, and each pipe adds coomassie brilliant blue staining liquid 5ml respectively more then, shakes up, and measures absorbance (A) value at 595nm wavelength place.Each sample repeats 3 times.
Average protective enzyme content (POD): 5 samplings in each sub-district, get 4 strains at every, take by weighing 0.5g left and right sides sample; adding 5mL extraction buffer solution (including 1% crospovidone) is extract, and ice bath grinds, and changes centrifuge tube then over to; under 4 ℃, 10000r/min, centrifugal 10min.Supernatant is a crude enzyme liquid.The guaiacol method of employing Li Hesheng (the Li Hesheng chief editor, plant physiology and biochemistry experimental principle and technology, higher education publishing house, Beijing: 2000) measure, the absorbance of working sample reaction 3min under the 470nm wavelength, every 30s (second) reads a secondary data.Each sample repeats 3 times.
Figure G2009102654076D00092
Result from last table 2 as can be seen, Grain Production of Amaranthus is remarkable to the biological substitution effect of Huang Dingju.The inventor finds can further strengthen the inhibitory action of Grain Production of Amaranthus to Huang Dingju by optimizing the planting density of Grain Production of Amaranthus in further testing.As can be seen from Table 2, the emergence rate of Huang Dingju reduces by 80.43%, average plant height reduces by 77.30%, and average individual plant divides that number reduces 98.96%, average single-strain blade number reduces 99.14%, average biomass of individual tree reduces 92.54%, average soluble protein content reduces 52.99% (calculate according to the data of embodiment 3 and comparative example and get).And along with the increase of Grain Production of Amaranthus planting density, indexs such as the emergence rate of Huang Dingju, average plant height, average mark number, the average number of blade, average biomass of individual tree, average soluble protein content all have the trend that reduces.And along with the increase of planting density, average protective enzyme content increases, and this is because Huang Dingju is subjected to coercing increase, thereby stimulates the increase of protective enzyme, so average protective enzyme content increases.
Embodiment described herein only is to the explanation of the preferred embodiments of the present invention example.The technical staff of the technical field of the invention can content disclosed according to the present invention carry out various modifications to described embodiment, but revises thus and the technical scheme that does not depart from essence of the present invention that obtains still drops within the appended claims institute restricted portion.

Claims (9)

1. a biological substitution method of controlling yellow top chrysanthemum exotic invasive is characterized in that, described method adopts Grain Production of Amaranthus to come Huang Dingju is carried out biological substitution.
2. biological substitution method as claimed in claim 1, wherein, described Grain Production of Amaranthus adopts the seeding method plantation.
3. biological substitution method as claimed in claim 2, wherein, described Grain Production of Amaranthus adopts the mode of drilling to plant.
4. biological substitution method as claimed in claim 3, wherein, the plantation line-spacing of described Grain Production of Amaranthus is 30cm~40cm.
5. as each described biological substitution method of claim 2~4, wherein, the sowing depth of described Grain Production of Amaranthus is 1cm~3cm.
6. as each described biological substitution method of claim 2~5, wherein, the planting density of described Grain Production of Amaranthus is 0.5g/m 2~0.7g/m 2
7. as each described biological substitution method of claim 2~6, wherein, the final singling when plant height 20cm~30cm of described Grain Production of Amaranthus.
8. biological substitution method as claimed in claim 7, wherein, the final singling spacing in the rows of described Grain Production of Amaranthus is 10cm~15cm.
9. as each described biological substitution method of claim 2~8, wherein, described Grain Production of Amaranthus was sowed in the self seed phase.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102090258A (en) * 2010-11-25 2011-06-15 中国农业科学院农业环境与可持续发展研究所 Method for replacing and controlling flaveria bidentis (L.) kuntze with astragalus adsurgens
CN108419637A (en) * 2018-01-29 2018-08-21 河北大学 A kind of biological substitution method of control bidentis exotic invasive
CN109566300A (en) * 2018-12-27 2019-04-05 河北大学 A kind of biological substitution method controlling artemisiifolia exotic invasive
CN109661943A (en) * 2019-01-29 2019-04-23 河北大学 A kind of biological substitution method using maidenhair control bidentis exotic invasive

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CN102090258A (en) * 2010-11-25 2011-06-15 中国农业科学院农业环境与可持续发展研究所 Method for replacing and controlling flaveria bidentis (L.) kuntze with astragalus adsurgens
CN102090258B (en) * 2010-11-25 2012-04-25 中国农业科学院农业环境与可持续发展研究所 Method for replacing and controlling flaveria bidentis (L.) kuntze with astragalus adsurgens
CN108419637A (en) * 2018-01-29 2018-08-21 河北大学 A kind of biological substitution method of control bidentis exotic invasive
CN108419637B (en) * 2018-01-29 2021-08-10 河北大学 Biological substitution method for controlling external invasion of flaveria bidentis
CN109566300A (en) * 2018-12-27 2019-04-05 河北大学 A kind of biological substitution method controlling artemisiifolia exotic invasive
CN109566300B (en) * 2018-12-27 2021-09-21 河北大学 Biological substitution method for controlling foreign invasion of ragweed
CN109661943A (en) * 2019-01-29 2019-04-23 河北大学 A kind of biological substitution method using maidenhair control bidentis exotic invasive

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