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水稻同化物转运及其对逆境胁迫响应的机理 被引量:9
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作者 张彩霞 符冠富 +2 位作者 奉保华 陈婷婷 陶龙兴 《中国农业气象》 CSCD 北大核心 2018年第2期73-83,共11页
产量形成是"源库流"协调统一的过程,但由于极端天气频发,使得水稻生长环境恶化,源库关系严重失调,对产量的形成造成不利影响。例如水稻开花结实期遭遇极端高温将严重抑制物质转运,导致籽粒充实度下降,产量降低,品质变劣。近年... 产量形成是"源库流"协调统一的过程,但由于极端天气频发,使得水稻生长环境恶化,源库关系严重失调,对产量的形成造成不利影响。例如水稻开花结实期遭遇极端高温将严重抑制物质转运,导致籽粒充实度下降,产量降低,品质变劣。近年来,有关水稻同化物转运和分配机理及其对逆境胁迫的响应机制方面的研究,主要形成了以下主要观点:(1)同化物在叶片主要通过质外体与共质体途径装载,然后利用"源"端和"库"端压力梯度,通过叶、茎、穗轴、枝梗和小穗轴等维管系统向颖果输送,于籽粒背部维管束卸载,形成籽粒。(2)同化物装载、运输及卸载中任意一个环节遇到高温、低温、干旱及氮素缺乏等逆境均可能导致同化物转运受阻,造成"流"的不畅,阻碍光合产物及其它营养物质进入籽粒,影响稻米产量及品质。(3)但由于研究手段及技术所限,目前有关逆境胁迫对同化物在韧皮部的装载、运输及卸载影响的研究相对较少,新技术的开发应用可为该研究领域提供新的发展机遇。 展开更多
关键词 水稻 同化物转运 蔗糖转运载体 韧皮部 逆境胁迫
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Alterations of Panicle Antioxidant Metabolism and Carbohydrate Content and Pistil Water Potential Involved in Spikelet Sterility in Rice under Water-Deficit Stress 被引量:4
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作者 fu guan-fu SONG Jian +3 位作者 LI Yu-rong YUE Ming-kai XIONG Jie TAO Long-xing 《Rice science》 SCIE 2010年第4期303-310,共8页
Two rice genotypes with different drought tolerance, namely Jin 23B (drought tolerant) and Zhenshan 97B (drought sensitive), were used to study the antioxidant enzyme activities, soluble sugar and starch contents ... Two rice genotypes with different drought tolerance, namely Jin 23B (drought tolerant) and Zhenshan 97B (drought sensitive), were used to study the antioxidant enzyme activities, soluble sugar and starch contents in spikelets, pistil water potential and pollen number on a stigma under water-deficit stress at the flowering stage, which were involved in the spikelet sterility. Compared with respective controls, drought stress induced more serious decreases of superoxide dismutase (SOD), peroxidase (POD) and catalase (CAT) activities and more significant increase of malonaldehyde (MDA) content in spikekets of Zhenshan 97B than in Jin 23B on 9 and 12 days after water stress (DAWS). The soluble sugar and starch contents increased significantly in spikelets of Jin 23B, but decreased significantly in spikelets of Zhenshan 97B during 9-12 DAWS. The pistil maintained higher water potential in Jin 23B than in Zhenshan 97B during 3-6 DAWS and 9-12 DAWS. In addition, water stress induced more significant decrease in the pollen number on a stigma as well as the percentage of unfilled grains in Zhenshan 97B than in Jin 23B. Thus, it is suggested that water stress induced spikelet sterility by damaging antioxidant enzyme activities, reducing carbohydrate content in spikelets and decreasing pistil water potential at the flowering stage in rice. 展开更多
关键词 antioxidant enzyme carbohydrate content flowering stage pistil water potential RICE water stress spikelet sterility
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Thermal Resistance of Common Rice Maintainer and Restorer Lines to High Temperature During Flowering and Early Grain Filling Stages 被引量:4
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作者 fu guan-fu SONG Jian +5 位作者 XIONG Jie LIAO Xi-yuan ZHANG Xiu-fu WANG Xi LE Ming-kai TAO Long-xing 《Rice science》 SCIE 2012年第4期309-314,共6页
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 ... 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 11-32B, 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 seed- setting rate and significantly increased the abortive grain rate in both rice maintainer and restorer lines. 展开更多
关键词 RICE maintainer line restorer line heat stress FERTILITY thermal resistance
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Male Parent Plays More Important Role in Heat Tolerance in Three-Line Hybrid Rice 被引量:2
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作者 fu guan-fu ZHANG Cai-xia +5 位作者 YANG Yong-jie XIONG Jie YANG Xue-qin ZHANG Xiu-fu JIN Qian-yu TAO Long-xing 《Rice science》 SCIE CSCD 2015年第3期116-122,共7页
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 ... 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. 展开更多
关键词 hybrid rice genetic correlation analysis heat stress heat tolerance
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