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Male Parent Plays More Important Role in Heat Tolerance in Three-Line Hybrid Rice

机译:雄性亲本在三系杂交水稻耐热性中发挥重要作用

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Ten F 1 combinations with their male and female parents were employed to evaluate their heat tolerance during the flowering and early grain filling stages. The rice plants were subjected to heat stress (39 °C–43 °C) for 1–15 d during flowering. Based on the heat stress index, heat tolerance was only observed in the F 1 combinations H2 (K22A × R207), H3 (Bobai A × R207) and H4 (Bobai A × Minghui 63), whereas the others received above 0.5000 of heat stress index. Both parents of the tolerant combination (heat-tolerant × heat-tolerant) possessed heat tolerance, whereas the susceptible combinations were crossed by heat-tolerant (sterile lines) × heat-susceptible (restorer lines), heat-susceptible × heat-tolerant, or heat-susceptible × heat-susceptible parents. This result indicated that heat tolerance in rice was controlled by recessive genes. Thus, both parents should possess high temperature tolerance to develop heat-tolerant F 1 combinations. Furthermore, the heat stress index of F 1 combinations was significantly correlated with the heat stress index of restorer lines but not with the heat stress index of maintainer lines. This result suggested that male parents play a more important role in heat-tolerant combinations than female parents. Therefore, the heat susceptibility of the hybrid rice in China is mainly due to the wide application of low-heat-tolerant restorer lines with high yield in three-line hybrid rice breeding.
机译:使用十种F 1组合及其雄性和雌性父母来评估开花和早期籽粒充实阶段的耐热性。水稻在开花期间承受热胁迫(39°C–43°C)1-15 d。根据热应力指数,仅在F 1组合H2(K22A×R207),H3(Bobai A×R207)和H4(Bobai A×Minghui 63)组合中观察到耐热性,而其他组合受到的热应力高于0.5000指数。耐性组合(耐热性×耐热性)的两个亲本均具有耐热性,而易感组合则被耐热性(不育系)×耐热性(恢复系),耐热性×耐热性,或热敏×热敏父母。该结果表明水稻的耐热性受隐性基因控制。因此,父母双方都应具有高温耐受性,以开发耐热的F 1组合。此外,F 1组合的热应力指数与恢复系的热应力指数显着相关,而与维持系的热应力指数没有显着相关。该结果表明,男性父母在耐热组合中起着比女性父母更重要的作用。因此,中国杂交水稻的热敏性主要是由于在三系杂交水稻育种中广泛应用了高耐热低耐热恢复系。

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