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Breeding method and application of low-temperature sensitive genie male sterile rice line with high and low temperature resistance and high male sterility critical temperature

A critical temperature, high and low temperature resistant technology, applied in the breeding field of low temperature sensitive genic male sterile lines of rice, can solve the problems of low stigma vigor, low temperature, and susceptibility to low temperature damage of the female parent, and achieve high quality hybrid seeds, heterogeneous The effect of high seed delivery rate and lower sales price

Active Publication Date: 2020-09-01
HUNAN NORMAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are two major technical defects in the photothermosensitive genic male sterile line: first, even in the midsummer high temperature season, the hybrid seed production will fail due to the short-term midsummer low temperature that induces the photothermosensitive genic male sterile line to restore fertility , causing huge economic losses. For example, in 1993, 1996, 1999, 2004, 2008, 2012 and 2014, a large area of ​​photothermosensitive GMS line seed production failed
Second, in the midsummer high temperature season, hybrid seed production often has a high temperature climate with a maximum temperature above 35°C and an average daily temperature above 30°C. The female parent's stigma activity is low and the male parent's pollen activity is low, resulting in low yield of hybrid seed production, for example The temperature-sensitive genic male sterile line Guangzhan 63S has had many times over the years due to the high temperature in the flowering period, resulting in a seed setting rate of hybrid seed production lower than 30%. In addition, the pollen viability of male parents such as 9311 was reduced under high temperature conditions, resulting in low yield of hybrid seed production. The fundamental reason why the average yield of large-scale seed production of photothermosensitive GMS lines is difficult to break through 400 catties / mu
However, this type of sterile line has not been widely used in production. There are three reasons: first, the pollen critical sterility temperature is lower than 27°C, the safety of hybrid seed production is not high, and it is susceptible to high temperature induced sterility The pollen of the male sterile line is fertile, which leads to the failure of hybrid seed production; second, the high temperature resistance of the sterile line is not strong. When the natural daily average temperature reaches 32°C, the pollen fertility rate of the sterile line is lower than 40%, and the seed setting rate is lower than 30%. The third is that these CMS lines are sensitive to low temperature below 21°C, and are vulnerable to low temperature damage, resulting in a decrease in the seed setting rate of hybrid seed production

Method used

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  • Breeding method and application of low-temperature sensitive genie male sterile rice line with high and low temperature resistance and high male sterility critical temperature
  • Breeding method and application of low-temperature sensitive genie male sterile rice line with high and low temperature resistance and high male sterility critical temperature

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Effect test

Embodiment 1

[0030] A method for breeding low-temperature-sensitive genic male sterile lines of rice with high and low temperature-resistant sterility critical temperature, such as figure 1 shown, including the following steps:

[0031] (1) Use rice Go543S (low temperature-sensitive genic male sterile line) to cross with Guangluai No. 4 (high temperature resistant rice variety) to obtain F1 generation hybrid seeds, plant F1 generation and harvest self-crossed seeds F2 generation, and then plant Screen the sterile plants with pollen fertility rate of 0 in the F2 generation population of ;

[0032] (2) In the pollen mother cell meiosis stage of the sterile strain obtained after the screening in step (1), the first temperature control is carried out under the condition that the average daily temperature is 28° C. to 29° C. (water temperature for submerging young ears). After 15 days of treatment, the sterile plants with fertile pollen were eliminated, and the sterile plants with a pollen fer...

Embodiment 2

[0041] The application of the low-temperature-sensitive genic male sterile line of rice with a high temperature-resistant sterility critical temperature selected in Example 1 in breeding sterile line seeds comprises the following steps: normally planting a high-low temperature-resistant sterile critical temperature The low-temperature-sensitive genic male sterile line of rice with high temperature is self-fertilized at the pollen development stage or flowering stage under the condition of daily average temperature of 32°C to 33°C, and then the high-low temperature resistant rice low-temperature-sensitive male sterile line with high critical temperature can be obtained. The self-fertilization seed setting rate of the nuclear male sterile line is over 60%, and the reproductive output of the sterile line seed is high.

Embodiment 3

[0043] The application of the low-temperature-sensitive genic male sterile line of rice with high temperature-resistant sterility and high critical temperature selected and obtained in Example 1 in hybrid seed production comprises the following steps: normally planting the high-low temperature-resistant sterile critical temperature high Low-temperature-sensitive genic male sterile lines of rice, during the pollen development stage or flowering stage, are crossed with other male parents for seed production at an average daily temperature of 20°C to 28°C to obtain hybrid seeds, and the risk of self-fertilization of the sterile line 0, the safety of hybrid seed production is high.

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Abstract

The present invention provides a breeding method of a low-temperature sensitive genic male sterile rice line with high and low temperature resistance and a high male sterility critical temperature. The breeding method of the low-temperature sensitive genic male sterile rice line with the high and low temperature resistance and the high male sterility critical temperature comprises the following steps: hybridizing a low-temperature sensitive genic male sterile rice line with a high-temperature resistant rice variety, screening a high-temperature resistant low-temperature sensitive genic male sterile plant with a high pollen male sterility critical temperature and a qualified selfing setting rate at high temperature, then hybridizing the high-temperature resistant low-temperature sensitive genic male sterile plant with a low-temperature resistant rice variety, and screening a plant with a qualified outcrossing setting rate at low temperature. The method overcomes problems that current light-temperature-sensitive genic male sterile line has a high risk of hybrid seed production due to unstable fertility and low seed production yield caused by hybrid seed production under high temperature conditions. The present invention also discloses an application of the bred low-temperature sensitive genic male sterile rice line by the method in breeding sterile line seeds and hybrid seed production. The hybrid seed production is safe, hybrid seed quality is high, the sterile line has strong high-temperature resistance and the reproductive yield of the sterile line seeds is high.

Description

technical field [0001] The invention belongs to the technical field of rice breeding, and in particular relates to a breeding method and application of a high-low temperature-resistant rice low-temperature-sensitive genic male sterile line with a high sterility critical temperature. Background technique [0002] In 1970, Yuan Longping, Li Bihu and others discovered a cytoplasmic male sterile plant in Hainan wild rice. In 1973, the technical system of hybrid seed breeding of sterile line and maintainer line and hybrid seed breeding of sterile line and restorer line was successfully researched, that is, three-line matching. With the large-scale promotion of three-line hybrid rice, it has made great contributions to my country's food security. However, because the cytoplasmic male sterility used by the three-line method is restricted by the restoration relationship, it is difficult to breed new sterile lines and new restorer lines, and the utilization rate of rice resources is...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01H1/02A01H1/04
CPCA01H1/02A01H1/04
Inventor 陈良碧梁满中戴小军毛丹丹刘艳
Owner HUNAN NORMAL UNIVERSITY
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