CN103250543B - Method for cultivating mini-vegetables in greenhouse arch shed - Google Patents

Method for cultivating mini-vegetables in greenhouse arch shed Download PDF

Info

Publication number
CN103250543B
CN103250543B CN201310203122.6A CN201310203122A CN103250543B CN 103250543 B CN103250543 B CN 103250543B CN 201310203122 A CN201310203122 A CN 201310203122A CN 103250543 B CN103250543 B CN 103250543B
Authority
CN
China
Prior art keywords
temperature
mini
vegetable
parts
shed
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.)
Expired - Fee Related
Application number
CN201310203122.6A
Other languages
Chinese (zh)
Other versions
CN103250543A (en
Inventor
蒋燕
王义军
蔡树仁
史树端
康小非
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.)
LUOYANG MINI FRUIT AND VEGETABLE CO Ltd
Original Assignee
LUOYANG MINI FRUIT AND VEGETABLE CO Ltd
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 LUOYANG MINI FRUIT AND VEGETABLE CO Ltd filed Critical LUOYANG MINI FRUIT AND VEGETABLE CO Ltd
Priority to CN201310203122.6A priority Critical patent/CN103250543B/en
Publication of CN103250543A publication Critical patent/CN103250543A/en
Application granted granted Critical
Publication of CN103250543B publication Critical patent/CN103250543B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The invention belongs to the field of plant cultivation and particularly relates to a method for cultivating mini-vegetables in a greenhouse arch shed. The method comprises the following steps that good mini-vegetable seeds are selected, plug seedling is performed, planting is performed in good time, the arch shed is managed and harvesting is performed. By utilizing a temperature changing processing method in the process of plug seedling, namely the mini-vegetable seeds are placed in water with the temperature of 50 DEG C to 55 DEG C and soaked, continuous stirring is performed till the temperature of water is lowered to 30 DEG C, stirring is stopped, the seeds are transferred into a condition of -5 DEG C to 0 DEG C and frozen for no less than ten hours. The cold-resistant capacity of the mini-vegetable seeds is greatly improved, and the viability of the mini-vegetable seeds in adversity is improved. According to the method for cultivating the mini-vegetables in the greenhouse arch shed, in a process where a night temperature rises to a daytime temperature, when the temperature rises to 26 DEG C, temperature rises slowly, and then the daytime temperature is kept between 26 DEG C to 28 DEG C, the temperature in the shed can be kept within a range of 26 DEG C and 28 DEG C for a long time, and pest and disease damage does not favorably happen.

Description

A kind of mini-vegetable greenhouse move-in-mud robot method
Technical field
The invention belongs to field of plant cultivation, be specifically related to a kind of mini-vegetable greenhouse move-in-mud robot method.
Background technology
Mini-vegetable mainly refer to family balcony, draw roof, indoor and garden planting plant type less, be easy to pipe
Manage, there is the edible vegetable of necessarily viewing and admiring the potted plant value of valency.Mini-vegetable can take soil or soilless culture.
The feature of mini-vegetable is easy to family planting, within vegetative period, certain views and admires feature, can substitute flowers and plants to a certain extent as ornamental plants because blade, fruit, flower or limb have; After its maturation, edible, due to household operation, substantially do not use agricultural chemicals, hormone and be some otherly unfavorable for healthy material, this becomes completely relieved green vegetables.And the process of the process inherently pleasant mental and body that plants vegetables, people not only can release the pressure by planting vegetables, but also can understand the process of growth of vegetables, enlarge one's knowledge.
The kind of mini-vegetable is a lot.Such as: short uncivilized nation eggplant is viewed and admired and edible duality, color has reddish yellow two kinds.Plant type is less, plant height 25 cm, and growing way is comparatively strong, and fruit is round just, fruit surface smooth, and fruit look has azarin and bright orange two kinds, fruity sweet and sour palatability, single fruit weight 10 grams, fruit 2.5-3 centimetres, footpath, and fruit look gorgeous, and sight by force; Disease-resistant, low light tolerance, photosensitiveness plant in genus, as long as temperature is suitable, the whole year can cultivate, and growth thermophilic is 20-30 DEG C.Fruit colour-change period 7-10 days, viewing period reaches about 100 days.Loose leaf romaine lettuce is especially best with the zingy Luo Sha of strain shape purple leaf romaine lettuce effect, also has the kinds such as jasper cream, the purple leaf of upright, the red sail in Rome, Italy are all-round, the large fast-growing dish of California, USA.Leaf draws bunch half upright, and plant height 25-35 centimetre, degree of development 25-30 centimetres, blade is oblong.
At present, the large-scale breeding method of mini-vegetable is also immature, the normal impact by damage by disease and insect.And usually take two kinds of methods to control the height of vegetables further in the process of mini-vegetable growth: one, suppressed by control temperature or moisture
Plant growth, which results in mini-vegetable growth conditions can not meet, and affects the growth of mini-vegetable; Two, in the process of mini-vegetable growth, use chlormequat, the stem tubbiness of mini-vegetable can be made, dwarfed plant, strengthen photosynthesis, improve fruit-setting rate; But the sugariness after using in mini-vegetable body declines, and has a strong impact on its mouthfeel.
Summary of the invention
The object of this invention is to provide a kind of mini-vegetable greenhouse move-in-mud robot method, effectively can not only reduce damage by disease and insect
Generation, mini-vegetable can also be made to look sturdy, and can not mouthfeel be affected.
The technical solution used in the present invention is, a kind of mini-vegetable greenhouse move-in-mud robot method, comprises the following steps:
1), excellent mini-vegetable seed is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the mini-vegetable seed in step 1) being placed in temperature is that the water of 50-55 DEG C soaks, continuous stirring, until water temperature drops to 30 DEG C, stops stirring, then seed is transferred to temperature for freezing under-5-0 DEG C of condition, cooling time >=10h;
B, vernalization: be vernalization under the condition of 25-28 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 25-28 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 20-25 DEG C daytime, controls night at 13-17 DEG C;
3), field planting in good time: when ground temperature reaches 12 DEG C, start field planting, field planting is watered and made entropy for first 3 days, after seedling-slowing stage terminates, applies growth regulating fertile to mini-vegetable;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%;
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, is elevated to the process of temperature in daytime from nocturnal temperature, and close ventilating opening, temperature is elevated to 28 DEG C of at least used time 1h by 26 DEG C;
C, fertilizer management: when topdressing, apply fertilizer to apart from mini-vegetable root 10-15cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after mini-vegetable maturation.
The invention has the beneficial effects as follows, the present invention by taking the method for intermittent warming in the process of point disk seedling growing, being placed in temperature by mini-vegetable seed is that the water of 50-55 DEG C soaks, continuous stirring, until water temperature drops to 30 DEG C, stops stirring, then seed is transferred to temperature for freezing under-5-0 DEG C of condition, cooling time >=10h, substantially increases the cold tolerance of mini-vegetable seed, improves the survival ability of mini-vegetable seed in adverse circumstance.The present invention is fertile in the after-applied growth regulating of seedling-slowing stage, relative to traditional height being controlled mini-vegetable by temperature and moisture, has both met the growth demand of mini-vegetable, and has reached again and make the short strong object of mini-vegetable.Chlormequat can make the stem tubbiness of mini-vegetable, dwarfed plant, strengthens photosynthesis, improves fruit-setting rate; But the sugariness after using in mini-vegetable body declines, have a strong impact on its mouthfeel, use together with after potassium dihydrogen phosphate, ash, soya-bean cake, saccharomycete mix with chlormequat by the present invention, be equivalent to be applied with the sugariness that phosphate fertilizer and plant organic fertilizer improve mini-vegetable itself to mini-vegetable, solve the problem that after using chlormequat, sugariness reduces.The present invention is in the field planting stage, and take first to make the method for field planting after entropy, ground temperature declines few, is beneficial to slow seedling, improves survival rate.The temperature of 22-25 DEG C is the temperature of most of damage by disease and insect optimum growth and breeding, and in the process that the present invention grows mini-vegetable, temperature is taked " several "
Word administrative law, is namely elevated to the process of temperature in daytime from nocturnal temperature, and when temperature reaches 26 DEG C, start slowly to heat up, daytime, temperature remained on 26-28 DEG C afterwards, and the present invention, by the temperature in booth is remained on 26-28 DEG C for a long time, is unfavorable for that damage by disease and insect occurs.
Temperature change in daytime of the present invention is little, is beneficial to the growth of vegetables, changes in the process heated up and close ventilating opening, avoid the loss of carbonic acid gas in booth, facilitate the photosynthesis of large shed vegetable on night to daytime.The present invention is under the condition of temperature-controllable, and take the method for early taking off late lid during illumination management, the photosynthesis time extending plant improves the photosynthetic rate of plant.The present invention, when applying fertilizer, applies apart from mini-vegetable root 10-15cm place, impels the root of mini-vegetable to extend to fertilising place, facilitates the growth of mini-vegetable root.
Embodiment
Below embodiments of the invention are elaborated: the present embodiment carries out under premised on technical solution of the present invention
Implement, give detailed embodiment and concrete operating process, but protection scope of the present invention is not limited to following enforcement
Example.
A kind of mini-vegetable greenhouse move-in-mud robot method, comprises the following steps:
1), excellent mini-vegetable seed is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the mini-vegetable seed in step 1) being placed in temperature is that the water of 50-55 DEG C soaks, continuous stirring, until water temperature drops to 30 DEG C, stops stirring, then seed is transferred to temperature for freezing under-5-0 DEG C of condition, cooling time >=10h;
B, vernalization: be vernalization under the condition of 25-28 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 25-28 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 20-25 DEG C daytime, controls night at 13-17 DEG C;
3), field planting in good time: when ground temperature reaches 12 DEG C, start field planting, field planting is watered and made entropy for first 3 days, after seedling-slowing stage terminates, applies growth regulating fertile to mini-vegetable;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%; Concrete grammar is: be the chlormequat 50 parts of 50% by mass concentration, mass concentration be 0.3% potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete, being placed on temperature after mixing is fermentation 5-6 days in the fermenting cellar of 55-60 DEG C.
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, from nocturnal temperature liter
High in the process of temperature in daytime, close ventilating opening, temperature is elevated to 28 DEG C of at least used time 1h by 26 DEG C;
C, fertilizer management: when topdressing, apply fertilizer to apart from mini-vegetable root 10-15cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after mini-vegetable maturation.
Embodiment 1
A kind of mini-vegetable greenhouse move-in-mud robot method, comprises the following steps:
1), excellent mini tomato seeds is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the mini tomato seeds in step 1) being placed in temperature is that the water of 55 DEG C soaks, and constantly stir, until water temperature drops to 30 DEG C, stop stirring, it is freezing under 0 DEG C of condition for then seed being transferred to temperature, cooling time 10h;
B, vernalization: be vernalization under the condition of 26 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 26 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 22 DEG C daytime, controls night at 15 DEG C;
3), field planting in good time: when ground temperature reaches 12 DEG C, start field planting, field planting is watered and made entropy for first 3 days, after seedling-slowing stage terminates, applies growth regulating fertile to mini tomato;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%; Concrete grammar is: be the chlormequat 50 parts of 50% by mass concentration, mass concentration be 0.3% potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete, being placed on temperature after mixing is fermentation 5 days in the fermenting cellar of 57 DEG C.
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, is elevated to the process of temperature in daytime from nocturnal temperature, and close ventilating opening, temperature is elevated to 28 DEG C of used time 1h by 26 DEG C;
B, illumination management: namely open shade net morning 7, at 5 in afternoon covers shade net again;
C, fertilizer management: when topdressing, apply fertilizer to apart from mini tomato root 12cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after mini Tomato Ripening.
Embodiment 2
A kind of mini-vegetable greenhouse move-in-mud robot method, comprises the following steps:
1), excellent micro laparoscope seed is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the micro laparoscope seed in step 1) being placed in temperature is that the water of 55 DEG C soaks, and constantly stir, until water temperature drops to 30 DEG C, stop stirring, it is freezing under 0 DEG C of condition for then seed being transferred to temperature, cooling time 10h;
B, vernalization: be vernalization under the condition of 25-28 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 26 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 22 DEG C daytime, controls night at 15 DEG C;
3), field planting in good time: when ground temperature reaches 12 DEG C, start field planting, field planting is watered and made entropy for first 3 days, after seedling-slowing stage terminates, applies growth regulating fertile to micro laparoscope;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%; Concrete grammar is: be the chlormequat 50 parts of 50% by mass concentration, mass concentration be 0.3% potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete, being placed on temperature after mixing is fermentation 5 days in the fermenting cellar of 57 DEG C.
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, is elevated to the process of temperature in daytime from nocturnal temperature, and close ventilating opening, temperature is elevated to 28 DEG C of used time 1.5h by 26 DEG C;
B, illumination management: namely open shade net morning 7, at 5 in afternoon covers shade net again;
C, fertilizer management: when topdressing, apply fertilizer to apart from mini tomato root 12cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after micro laparoscope maturation.
Embodiment 3
A kind of mini-vegetable greenhouse move-in-mud robot method, comprises the following steps:
1), excellent Mininangua seed is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the micro laparoscope seed in step 1) being placed in temperature is that the water of 55 DEG C soaks, and constantly stirs, directly
Drop to 30 DEG C to water temperature, stop stirring, it is freezing under 0 DEG C of condition for then seed being transferred to temperature, cooling time 10h;
B, vernalization: be vernalization under the condition of 25-28 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 26 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 22 DEG C daytime, controls night at 15 DEG C;
3), field planting in good time: when ground temperature reaches 12 DEG C, start field planting, field planting is watered and made entropy for first 3 days, after seedling-slowing stage terminates, applies growth regulating fertile to Mininangua;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%; Concrete grammar is: be the chlormequat 50 parts of 50% by mass concentration, mass concentration be 0.3% potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete, being placed on temperature after mixing is fermentation 5 days in the fermenting cellar of 57 DEG C.
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, is elevated to the process of temperature in daytime from nocturnal temperature, and close ventilating opening, temperature is elevated to 28 DEG C of used time 2h by 26 DEG C;
B, illumination management: namely open shade net morning 7, at 5 in afternoon covers shade net again;
C, fertilizer management: when topdressing, apply fertilizer to apart from Mininangua root 12cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after Mininangua maturation.

Claims (1)

1. a mini-vegetable greenhouse move-in-mud robot method, is characterized in that, comprise the following steps:
1), excellent mini-vegetable seed is selected, for subsequent use;
2), point disk seedling growing, method is:
A. to soak seed sterilization: the mini-vegetable seed in step 1) being placed in temperature is that the water of 50-55 DEG C soaks, continuous stirring, until water temperature drops to 30 DEG C, stops stirring, then seed is transferred to temperature for freezing under-5-0 DEG C of condition, cooling time >=10h;
B, vernalization: be vernalization under the condition of 25-28 DEG C in temperature, seed reaches 70% when showing money or valuables one carries unintentionally, and is seeded in the dish of cave;
C, be cultivate strong sprout under the condition of 25-28 DEG C in temperature, field planting carries out low temperature hardening in first 7 days, and hardening temperature controls at 20-25 DEG C daytime, controls night at 13-17 DEG C;
3), in good time field planting: when ground temperature reaches 12 DEG C, start field planting, and water for first 3 days in field planting and make entropy, after seedling-slowing stage terminates, apply growth regulating to mini-vegetable fertile;
Chlormequat, mass concentration that described growth regulating is fertile is 50% by mass concentration be 0.3% potassium dihydrogen phosphate, ash, soya-bean cake and saccharomycete mix, the parts by weight of each component are respectively: potassium dihydrogen phosphate 20 parts, ash 15 parts, soya-bean cake 10 parts, 5 parts, saccharomycete that the chlormequat 50 parts that mass concentration is 50%, mass concentration are 0.3%;
4), shed management:
A, temperature treatment: in shed, temperature control in daytime is at 26-28 DEG C, nocturnal temperature controls at 10-20 DEG C, is elevated to the process of temperature in daytime from nocturnal temperature, and close ventilating opening, temperature is elevated to 28 DEG C of at least used time 1h by 26 DEG C;
B, illumination management: namely open shade net morning 7-8, at 4-5 in afternoon covers shade net again;
C, fertilizer management: when topdressing, apply fertilizer to apart from mini-vegetable root 10-15cm place;
D, moisture management: the relative moisture in shed controls 50-80%;
5), gather: gather after mini-vegetable maturation.
CN201310203122.6A 2013-05-28 2013-05-28 Method for cultivating mini-vegetables in greenhouse arch shed Expired - Fee Related CN103250543B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201310203122.6A CN103250543B (en) 2013-05-28 2013-05-28 Method for cultivating mini-vegetables in greenhouse arch shed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201310203122.6A CN103250543B (en) 2013-05-28 2013-05-28 Method for cultivating mini-vegetables in greenhouse arch shed

Publications (2)

Publication Number Publication Date
CN103250543A CN103250543A (en) 2013-08-21
CN103250543B true CN103250543B (en) 2015-06-17

Family

ID=48955064

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201310203122.6A Expired - Fee Related CN103250543B (en) 2013-05-28 2013-05-28 Method for cultivating mini-vegetables in greenhouse arch shed

Country Status (1)

Country Link
CN (1) CN103250543B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104206149B (en) * 2014-08-25 2016-08-31 江苏丘陵地区镇江农业科学研究所 A kind of cultural method having climing western pumpkin nurturing staff

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102138392A (en) * 2010-01-28 2011-08-03 付景兴 Method of cultivation frame type management in melon grafting and seedling shed
CN102282987B (en) * 2011-06-10 2012-10-31 南京市蔬菜科学研究所 Cultivation method for premature small watermelon
CN102972189A (en) * 2012-12-07 2013-03-20 北海市种子管理站 Greenhouse cultivation method for small-size watermelons

Also Published As

Publication number Publication date
CN103250543A (en) 2013-08-21

Similar Documents

Publication Publication Date Title
CN105191763A (en) Vegetable organic soil-less culture method, culture medium and manufacturing method thereof
CN101731067A (en) Research on cultivation technology of organic ornamental peppers
CN103430799A (en) Greenhouse Huping jujube culturing technology
CN102318533A (en) A kind of quick-growing cultivation method of southern magnolia
CN103875498A (en) Method for planting malus halliana
CN102172190A (en) Cultivation method of apple bonsai realizing current-year fruiting and market-selling in Spring Festival
CN103348850A (en) Cultivation method of Chinese chives
CN103782751A (en) Method of raising grape seedlings by cutting
CN103798096A (en) Method for improving blueberry sapling planting quality
CN104255402B (en) The breeding method of a kind of year night ginger lotus
CN104488637A (en) Carambola planting method
CN103875423A (en) Method for cultivating asparagus
CN103416209A (en) Artificial cultivation method of wild sweet tea tree
CN104365359A (en) Tea tree planting method
CN104272943A (en) Cultivation method for celery
CN101743838A (en) Method for planting rhizome Chinese medicinal materials through biotechnology
CN104206130A (en) Method for interplanting maize and red cluster peppers
CN105009895A (en) Cultivation method of high-yield pollution-free tomatoes
CN109287461B (en) Tomato seedling cultivation method capable of remarkably improving early-stage yield
CN101341847B (en) Continuous cultivation method for vertical seedling of lianas vegetables
CN104620798A (en) Astragalus mongholicus bunge greenhouse seedling raising technique
CN104303765B (en) The high-yield planting method of the stem of noble dendrobium
CN105145096A (en) Nightshade cultivation method
CN103250543B (en) Method for cultivating mini-vegetables in greenhouse arch shed
CN116158316A (en) High-yield method for overwintering cultivation of facility peppers

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
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150617

Termination date: 20160528