Method for cultivating dwarf male sterile wheat

A wheat and dwarf technology, applied in the directions of botanical equipment and methods, application, plant genetic improvement, etc., can solve the problems of unfavorable wheat varieties and the increase of plant height of rotation population, and achieve rich scientific and application value, strong stalk reduction effect. , the effect of high outcrossing rate

Inactive Publication Date: 2006-07-26
CROP BREEDING & CULTIVATING INST CHINESE ACAD OF AGRI SCI
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AI Technical Summary

Problems solved by technology

In the recurrent selection population of Taigu nuclear sterile wheat, the average height of sterile plants and fertile plants is similar, but sterile plants have more opportunities to receive pollen higher than their own plants, while lower plants have less chances of receiving pollen, resulting in The plant height of the rotation population tends to increase gradually, which is not conducive to the selection of short-stalked and high-yielding wheat varieties

Method used

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Embodiment 1

[0015] Embodiment 1. Breeding dwarf wheat

[0016] Taigu GMS Nongda 139 wheat is a material obtained by crossing Nongda 139 as the recurrent male parent with Taigu GMS wheat and continuously backcrossing the sterile plants selected from the offspring. Its various traits are similar to Nongda 139 wheat, except that Progeny always segregate half male sterile and half male fertile.

[0017] Taigu nuclear sterile Nongda 139 wheat (genotype Ms2ms2 Nongda 139) was used as the female parent, and Aibian 1 homozygous (Rht10Rht10) wheat (purchased from the Variety Resources Institute of the Chinese Academy of Agricultural Sciences) was used as the male parent. The Aibian No. 1 homozygote with a plant height of 30cm was pollinated with the Taigu GMS Nongda 139 with a plant height of 90cm, and 260 F 1 In the generation, 128 plants showed dwarf (45cm) male sterile, and the remaining 132 plants showed dwarf (45cm) male fertile, the ratio of the two was 1:1. then F 1 The obtained dwarf st...

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Abstract

The invention discloses a method for breeding nanism wheat, comprising following steps: (1) employing Nongda 139 of sterility as female parent and dwarfing 1 wheat as male parent for cross breeding, getting F1 generation, from which sifting nanism sterile wheat; (2) test crossing the F1 generation wheat with Nongda 139 and getting hybrid, planting at least 4000-5000 strains of this seed, sifting and getting the product. The parent wheat of Nongda 139 is characterized by through masculinity abortive and high fruit generating rate of hetero-cross, and the dwarfing 1 is characterized by strong straw-reduction action and easy to identify, and the product greatly increases scientific and application value of wheat Nongda 139.

Description

technical field [0001] The invention relates to a method for cultivating dwarf wheat. Background technique [0002] Male sterility is a tool for large-scale production of hybrids in crops, especially self-pollinating crops. Taigu GMS wheat is a male sterile material discovered by Gao Zhongli, a farmer technician, in a rural wheat field in Shanxi Province in 1972. The sterility of Taigu GMS wheat is controlled by a dominant gene, the gene symbol was originally Ta1 (Deng Jingyang et al., Discovery and Utilization of Dominant Male Sterility Gene in Wheat, Acta Crops Sinica, 1980, (2): 85- 98), the internationally registered gene symbol is Ms2 (Liu Binghua et al., A dominant gene for male-sterility in wheat, plant Breeding, 1986, 97: 204-209). Taigu GMS wheat has complete male sterile, stable sterility, and high open-pollination seed-setting rate. It is one of the most distinctive plant male sterile materials discovered so far (Liu Binghua, 1994, Wheat GMS and Recurrent Select...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01H1/02
Inventor 刘秉华杨丽王山荭
Owner CROP BREEDING & CULTIVATING INST CHINESE ACAD OF AGRI SCI
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