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国家自然科学基金(31101116)

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水稻热耗散对逆境的响应被引量:8
2016年
非光化学猝灭(NPQ)常用于评估以热能途径耗散的光能(热耗散),热耗散在维持光能转化平衡中起着重要作用,是水稻叶片重要的光防御机制。大量研究表明,热耗散的诱导受跨类囊体膜ΔpH、叶黄素循环和PsbS蛋白等的调控;NPQ与光保护效应不呈线性关系,只有在某些特定条件下,NPQ才可作为光保护效应的有效指标;在高温、低温、缺氮、干旱、盐胁迫等逆境下水稻NPQ显著增加,热耗散可能与水稻抗逆性密切相关。本文从热耗散的诱导和调控机制、NPQ与光保护效应以及水稻NPQ对环境因子(温度、氮营养、水分、盐)的响应等4个方面综述了水稻叶片热耗散的研究进展,并对水稻NPQ与抗逆性关系的研究作了展望。
赵霞杨华伟刘然方陈婷婷奉保华张彩霞杨雪芹陶龙兴
关键词:水稻热耗散光合作用光保护逆境
Thermal Resistance of Common Rice Maintainer and Restorer Lines to High Temperature During Flowering and Early Grain Filling Stages被引量:3
2012年
Fifteen common rice maintainer lines and 26 high-yielding restorer lines were used to evaluate their thermal resistance and fertility during flowering and early grain filling stages.The rice plants were subjected to high temperature stress(39-43 ℃) for 1-15 d from main stem flowering.Based on the heat stress index,they were divided into thermal resistant lines,semi-thermal resistant lines,semi-thermal sensitive lines and thermal sensitive lines.Therefore,the maintainer lines K22B,Bobai B and V20B belonged to thermal resistant lines,whereas II-32B,Zhongzhe B and Zhong 9B belonged to thermal sensitive lines.For rice restorer lines,Minghui 63 had the highest thermal resistance,followed by R207,P32,P929,and the lowest thermal resistant lines P62-2-2,R8006 and P51.The correlation analysis indicated that the heat stress index was significantly correlated with seed-setting rate and abortive grain rate under heat stress,but not under natural conditions.This indicated that heat stress occurred during flowering and early grain filling stages mainly decreased the seedsetting rate and significantly increased the abortive grain rate in both rice maintainer and restorer lines.
FU Guan-fuSONG JianXIONG JieLIAO Xi-yuanZHANG Xiu-fuWANG XiLE Ming-kaiTAO Long-xing
关键词:水稻恢复系水稻植株高温胁迫保持系灌浆期
Male Parent Plays More Important Role in Heat Tolerance in Three-Line Hybrid Rice被引量:1
2015年
Ten F1 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 F1 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 F1 combinations. Furthermore, the heat stress index of F1 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.
FU Guan-fuZHANG Cai-xiaYANG Yong-jieXIONG JieYANG Xue-qinZHANG Xiu-fuJIN Qian-yuTAO Long-xing
关键词:三系杂交水稻父本应力指数恢复系
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