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Cleistogamy Decreases the Effect of High Temperature Stress at Flowering in Rice

机译:杂种优势降低了水稻开花期高温胁迫的影响

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Rice sterility due to a high temperature at flowering is a serious agricultural problem that has been associated with global warming. The flowering stage in rice plants is most vulnerable to high temperature stress. Closed flowering rice plants may better withstand high temperature stress. The aim of this study was to determine the role of cleistogamy (closed flowering) in avoiding high temperature-induced sterility. Cleistogamy was induced by moderate heat treatment at 30潞C during the panicle development stage. Both cleistogamous and chasmogamous (ordinary open flowering) rice plants, which possess the same genetic background, were subjected to 38潞C or 36潞C for 4 h just before flowering, and the percentage of fertility, number of pollen grains on a stigma, number of germinated pollen grains on a stigma, and temperatures inside and outside of the closed spikelets were examined. The cleistogamous rice plants showed a higher fertility percentage and a larger number of germinated pollen grains on a stigma than the chasmogamous rice plants. The temperature inside the closed flowering spikelets was 1.8潞C lower than that outside the spikelets. The cleistogamous rice plants thus showed avoidance to high temperature stress at 38潞C at flowering. On the basis of these results, we concluded that cleistogamy was advantageous to rice pollination and fertilization at high temperatures because of glume cooling.
机译:开花期高温造成的水稻不育是一个严重的农业问题,与全球变暖有关。水稻植物的开花期最容易受到高温胁迫。封闭的开花水稻植株可能更好地承受高温胁迫。这项研究的目的是确定在避免高温引起的不育中,通婚(封闭开花)的作用。在穗发育阶段,通过在30°C下进行适度的热处理诱导了鸡胚生殖。具有相同遗传背景的无性和无性(普通开放开花)水稻植株在开花前都要经受38潞C或36潞C的作用,持续4 h,其受精率,花粉粒数在柱头上,柱头上发芽的花粉粒的数量,以及封闭小穗内部和外部的温度。杂种优势水稻植株在柱头上显示出较高的生育率,并且发芽的花粉粒数量多于杂种水稻植株。封闭的开花小穗内部的温度比小穗外部的温度低1.8潞C。因此,杂种水稻植株在开花时避免在38潞C的高温胁迫下生长。根据这些结果,我们得出结论,由于颖花冷却,所以在高温度下,通配优势有利于水稻授粉和受精。

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