Patents
Literature
Hiro is an intelligent assistant for R&D personnel, combined with Patent DNA, to facilitate innovative research.
Hiro

39 results about "Hand-pollination" patented technology

Hand pollination, also known as mechanical pollination is a technique that can be used to pollinate plants when natural or open pollination is either undesirable or insufficient. This method of pollination is done by manually transferring pollen from the stamen of one plant to the pistil of another. This is often done with a cotton swab or small brush, but can also be done by removing the petals from a male flower and brushing it against the stigmas of female flowers, or by simply shaking flowers in the case of bisexual flowers, such as tomatoes. Common reasons for choosing this method include the lack of pollinators, keeping control of cross-pollination between varieties grown together, and creating specific hybrids. Examples of this are vanilla plants, which are transported to areas where its natural pollinator doesn't exist, or plants grown in greenhouses, urban areas, or with a cover to control pests, where natural pollinators cannot reach them. Pollinator decline and the concentrated pollination needs of monoculture can also be a factor. However, these are not the only reasons, and variable techniques for hand-pollination have arisen for many specialty crops. For instance, hand-pollination is used with date palms to avoid wasting space and energy growing sufficient male plants for adequate natural pollination. Because of the level of labor involved, hand-pollination is only an option on a small scale, used chiefly by small market gardeners and owners of individual plants. On large-scale operations, such as field crops, orchards, or commercial seed production, honeybees or other pollinators are a more efficient approach to pollination management. Despite this, hand-pollination is a fairly widespread practice. Pears grown in Hanyuan County, China have been hand-pollinated since the 1980s, because they can't be pollinated with other varieties that have different flowering times; also, lice infestation requires the use of many insecticide sprays, which causes local beekeepers to refuse to lend beehives.

Method for propagating bilateral trichosanthes kirilowii maxim seeds

The invention discloses a method for propagating bilateral trichosanthes kirilowii maxim seeds, seeds are stored in aired fruit, peeled out from the fruit during pregermination and also soaked by 20% biogas slurry for 24 hours, seeding and seedling culturing are completed in a nutrition pot and row cover seedling culture manner, nutrition soils in nutrition pots are the mixed soils of 60% decomposed organic fertilizer and 40% topsoil, the temperature of a row cover before the seedling emergence of the seeds is between 30-32 DEG C, the bed temperature after the seedling emergence is about 25 DEG C, and seedlings are transplanted to a land when reaching above 10 centimeter; and enough base fertilizer can be applied in the land in advance, furrows with the width of 1.5 centimeters are formed, the transplanting spacing is 1.5 meters multiplied by 1 meter, a leaf fertilizer and an additional fertilizer are sprayed timely during the field management period, and hand pollination is carried out during the flowering periods of the second year and the third year. The germination rate of the seeds reaches 90%, the yield can be improved by about 20%, the extract content of the medical bilateral trichosanthes kirilowii maxim is the highest, the extract content of the all tichosanthes kirilowii maxim accounts for 39.8%, the extract content of Mongolian snake gourd root accounts for 15.6%, and the extract contents of both the all tichosanthes kirilowii maxim and the Mongolian snake gourd root are higher than the quality standards which are stipulated in Chinese Pharmacopoeia.
Owner:镇巴县牟家坪农业科技有限责任公司

Cultivation method of pitaya

Provided is a cultivation method of pitaya, pertaining to the technical field of plantation. The invention especially relates to the cultivation method of pitaya.The cultivation method of pitaya has following beneficial effects: output of pitaya is increased; damage rate of pitaya is decreased; and quality of pitaya is ensured. The cultivation method of pitaya comprises following steps of: firstly, selecting rootstocks and scions: selecting wild trigonocarpus and others for pitaya rootstocks with yellow fruits and selecting pitaya having white fruits for pitaya rootstocks with red fruits as rootstocks; secondly, performing high-standard water and fertilizer management and applying fertilizers regularly: heavily dressing organic fertilizers every year and applying nitrogen-phosphorus-potassium mixed fertilizers for long-term use in a balancing manner because a fruit harvesting period lasts long; thirdly, carrying out medication prior to grating: utilizing ethyl alcohol or wine to disinfect small knifes and others for grating in order to prevent courses of infection; fourthly, interplannting 10% of pitaya having white fruits during processes of interplannting and planting pitaya through hand pollination; and fifthly, pruning and cutting out branches after yielding fruits each year in order to promote new branches, ensuring yield in the next year.
Owner:李忠久

Method for obtaining distant hybridization offspring of common head cabbage and cabbage type rape

InactiveCN108308020ARestore fertilityShorten the rescue induction timeHorticulture methodsPlant tissue cultureGermplasmBud
The invention provides a method for obtaining a distant hybridization offspring of a common head cabbage and a cabbage type rape, and belongs to the field of biotechnological breeding. The method comprises the steps that (1) a common head cabbage cytoplasmic male sterility is selected to serve as a female parent, a cabbage type rape restorer serves as a male parent, and the female parent and the male parent are isolated after hand pollination is conducted; (2) an ovary after being pollinated for 18-25 days is cut and disinfected; (3) in-vitro culture is conducted for 18-25 days; (4) an ovule in the ovary which is subjected to in-vitro culture is peeled off, and then subjected to induction culture to germinate; (5) differentiation culture is conducted, and a F1 generation seedling is obtained; and (6) a lateral bud of the F1 generation seedling is separated and transplanted onto a rooting medium, and a complete hybridization seedling is obtained. The method utilizes an embryo rescue technique to overcome the problem that the hybridization seedling cannot be obtained due to abortion of a young embryo is prone to occurring in the distant hybridization process of the common head cabbage and the cabbage type rape, an excellent recovery gene of the rape is transferred into a common head cabbage cytoplasmic male sterile cultivated species, the fertility of cabbage is recovered, and the technical evidences are provided for innovation and application of germplasm resources of cabbage.
Owner:NORTHWEST A & F UNIV

Pollination device and method for increasing hand pollination effect of annona squamosa by utilizing pollination device

The invention relates to the technical field of agricultural application, in particular to a pollination device and a method for increasing the hand pollination effect of annona squamosa by utilizingthe pollination device. According to the pollination device disclosed by the invention, the pollination efficiency is increased, the fruit setting rate is increased, and the generation of malformed fruits is reduced. According to the method disclosed by the invention, the pollination time is prolonged, and pollination can be favorably carried out by a large-scale orchard. The pollination device comprises a pipe sleeve, a pushing rod, a piston and a powder storage pipe, wherein a sliding cavity is formed in the pipe sleeve; a poking hole is formed in the side wall of the pipe sleeve; a pollination hole is formed in the front end of the powder storage pipe; the width of the pollination hole is 4 to 6 mm. The method adopts the pollination device one of any of claims 1 to 4 and comprises the following steps: (1) building spray irrigation facilities in an annona squamosa planting orchard, wherein the height of spray nozzles spaces from the annona squamosa by 40 to 50 cm, and water can be prevented from being sprayed to flowers; (2) starting to spray the water ahead of pollination by one hour when annona squamosa blooms, and enabling the humidity of the orchard to be up to 70 to 80 percent; (3) enabling the pollination time to be before 9 o'clock in the morning and after 17 o'clock in the afternoon.
Owner:DONGGUAN AGRI SCI RES CENT

Method for promoting advancing maturity of cherry

The invention discloses a method for promoting advancing maturity of cherry. The method comprises the steps of planting cherry trees in a greenhouse, wherein the top of the greenhouse is provided with spraying pipes, and watering and foliage spraying of a fertilizer or medicine liquor are conducted as required; applying farmyard manure before the cherry sprouts, and watering and covering soil after fertilizer application; conducting hand-pollination on the cherry in a flowering phase; spraying mixed liquor of brassinolide and sulfate to cherry flowers in the cherry flowering phase, and spraying self-made disease-resistant growth-promoting liquor on flowers, leaves, and fruit of the cherry from the final stage of the flowering phase to a fruiting phase; spraying fruit setting liquor on the fruit from the fruiting phase to the period when the fruit maturation degree reaches 50-70%; letting in fresh air at day and covering the greenhouse and adopting temperature-rising operation according to needs at night from the period when the cherry sprouts to the fruit ripening period; preparing corresponding medicine liquor to kill pests from the period when the cherry sprouts to the fruit ripening period, and maintaining ventilation of the cherry greenhouse. According to the method for promoting advancing maturity of the cherry, the fruit setting rate of the cherry can be effectively increased, the ripening period of the cherry is advanced, and the fruit quality is good.
Owner:金寨胜达农业科技有限公司

Corn cross pollination device

The invention relates to a corn cross pollination device. A shell is internally provided with a box body used for containing pollen, the box body is fixed to the shell, a rotary shaft penetrates through the interior of the box body, and is in motive seal with the contact face of the box body, one end of the rotary shaft penetrates through the box body and the shell and then is connected with an output shaft of a motor, and the motor is fixed to the shell; the other end of the rotary shaft penetrates out of the box body and the shell, then the tail end of the rotary shaft is fixedly connected with a first mounting block, the side, away from the rotary shaft, of the first mounting block is provided with a blade part used for pruning bracts of corn female ears to conveniently expose filaments, and the middle of the first mounting block is provided with a first through hole serving as a pollen channel; the tail end of the first through hole is provided with a butterfly valve for controlling outflow of the pollen, the top of the first through hole is communicated with a blind hole formed inside the rotary shaft, the blind hole is coaxial with the rotary shaft, and the outer wall of thepart, located in the box body, of the rotary shaft is provided with multiple second through holes communicated with the blind hole. The corn cross pollination device is easy to operate, the labor intensity of hand pollination can be lowered, and the cross pollination efficiency is improved.
Owner:YANGTZE NORMAL UNIVERSITY

Method for cultivating peonies for oil

The invention relates to the technical field of flower cultivation, in particular to a method for cultivating peonies for oil. The method comprises the steps that sandy soil is laid in a greenhouse, pH is adjusted, and fertilization and sterilization are carried out; selected peony plants for the oil are planted with row spacing*line spacing of 30cm*50cm; hoeing and topdressing are carried out in the growing period of the peonies for the oil, indoor air ventilation and light transmission are kept, insect killing and sterilization are carried out, chlormequat chloride is sprayed, the flower head of each plant is covered with a plastic bag for 2-3 days, and then a plurality of small holes are pricked in each plastic bag with needles; in the florescence, the plastic bags on the flower heads of the plants are removed, gibberellins and daminozide are sprayed on pistils and stamens respectively, pollinating insects are placed in the greenhouse, temperature, illumination time and ventilation time in the greenhouse are controlled, and meanwhile hand pollination is carried out; fallen leaves are swept away in time, and are burned up or buried deeply in a centralized mode. According to the method, the growing conditions of the peonies for the oil are improved, meanwhile, the pollination success rate in the florescence of the peonies for the oil is increased, and therefore the seed setting rate is improved.
Owner:BEIJING FORESTRY UNIV FOREST SCI CO LTD +1

No-tillage cultivation method for summer squash during rotation of crops

The invention discloses a no-tillage cultivation method for summer squash during rotation of crops and belongs to the technical field of rotation of crop cultivation. The method comprises the following steps: planting; field management; hand-pollination; pest control; picking time prolonging and harvesting. The method comprises the following steps: sowing summer squashes in a winter warm plastic greenhouse timely; covering the summer squashes with mulching films after being ridged; immediately watering seedling slow water immediately 3-4 days after planting; smearing whole female flowers and carpopodia with hormone coatings; spraying Zhibinling once every 10 days; spraying anti-virus powder in a second pesticide application time; using the two pesticides alternately; additionally coveringan inner film and arranging an inner skirt film before a cold wave to make sure that the temperature in the greenhouse is 15-30 DEG C; and picking tender summer squashes immediately. The soil ploughing labor is saved by means of no-tillage direct sowing culture, and the summer squashes are germinated in a drought land in seedling period, the plant root systems are deeply plunged, the summer squashes are drought-resistant and lodging-resistant and the picking time is prolonged, so that the purpose of lowering the production cost is achieved.
Owner:MINQIN QUANSHENG YONGTAI AGRI

Method for increasing sexual propagation success rate of Daphne aurantiaca Diels

The invention belongs to the technical field of biological propagation, and discloses a method for increasing the sexual propagation success rate of Daphne aurantiaca Diels. According to the method, the floral traits are measured and analyzed, the pollen activity is measured through an MTT staining method, the stigma receptivity is measured through a benzidine-hydrogen peroxide method, and the morphology of a stigma and pollen is observed through a scanning electron microscope. The method shows that the floral structure of the Daphne aurantiaca Diels is special, is tubulous and comprises anthers of two wheels, a pistil and a stamen are separated from each other; the pollen of a flower in bloom has the activity, the stigma has the receptivity, under the scanning electron microscope, the structures of the stigma and the pollen are not abnormal, and some pollen falls onto the stigma; pollinators for the Daphne aurantiaca Diels are phalaenae which visit the flower at night, and the flowervisiting frequency is low; P/O and hand pollination experiments show that a breeding system of the Daphne aurantiaca Diels is outcrossed; and the fruit-set ratio of the Daphne aurantiaca Diels is verylow, the fruit-set ratio of the natural pollination is 1.4%, and the fruit-set ratio of hand cross pollination is 23.3%.
Owner:INST OF BIOLOGICAL RESOURCES JIANGXI ACAD OF SCI
Who we serve
  • R&D Engineer
  • R&D Manager
  • IP Professional
Why Eureka
  • Industry Leading Data Capabilities
  • Powerful AI technology
  • Patent DNA Extraction
Social media
Try Eureka
PatSnap group products