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早期生殖阶段的热激预处理通过改善冬小麦(L.)的光合作用和植物生产力增强花后热胁迫的耐热性

Heat Priming During Early Reproductive Stages Enhances Thermo-Tolerance to Post-anthesis Heat Stress via Improving Photosynthesis and Plant Productivity in Winter Wheat ( L.).

作者信息

Fan Yonghui, Ma Chuanxi, Huang Zhenglai, Abid Muhammad, Jiang Suyu, Dai Tingbo, Zhang Wenjing, Ma Shangyu, Jiang Dongguo, Han Xiao

机构信息

Key Laboratory of Wheat Biology and Genetic Improvement on South Yellow and Huai River Valley of China, Ministry of Agriculture, Anhui Agricultural University, Hefei, China.

Department of Soil and Water Conservation, Khushab, Pakistan.

出版信息

Front Plant Sci. 2018 Jun 13;9:805. doi: 10.3389/fpls.2018.00805. eCollection 2018.

Abstract

Heat stress during grain filling substantially decreases wheat productivity; thus, to ensure food security, heat tolerance in wheat needs to be developed. In this study, we evaluated the effect of heat priming applied during the stem-elongation stage, booting and anthesis, followed by 5 days of severe heat stress (a 7.86°C rise in temperature) during the grain-filling stage on physiological activities and grain yield of winter wheat in pot experiments during the 2015-2017 growing seasons using the winter wheat cultivars Yangmai 18 (a vernal type) and Yannong 19 (a facultative type). Compared with the damage observed in non-primed plants, heat priming during the stem-elongation stage and booting significantly prevented the grain-yield damage caused by heat stress during grain filling. Heat-primed plants displayed higher sucrose contents and sucrose-phosphate activity in leaves and greater above-ground dry matter than non-primed plants. Priming during stem elongation and booting led to increased photosynthetic capacity, stomatal conductance and chlorophyll contents in comparison with non-priming. Improved tolerance to heat stress due to the enhanced activities of antioxidant enzymes superoxide dismutase and peroxidase and reductions in reactive oxygen species and malondialdehyde production was observed in primed plants compared with non-primed plants of both cultivars. The positive effect of heat priming on the response to heat stress during grain filling was more pronounced in plants primed at the booting stage than in those primed at the stem-elongation or anthesis stage. Moreover, the vernal-type Yangmai 18 benefited more from heat priming than did Yannong 19, as evidenced by its higher productivity. We conclude that heat priming during early reproductive-stage growth can improve post-anthesis heat tolerance in winter wheat.

摘要

灌浆期的热胁迫会大幅降低小麦产量;因此,为确保粮食安全,需要培育耐热性强的小麦品种。在本研究中,我们于2015 - 2017年生长季开展盆栽试验,以冬小麦品种扬麦18(春性品种)和烟农19(半冬性品种)为材料,评估了在茎伸长期、孕穗期和开花期进行热激预处理,随后在灌浆期施加5天严重热胁迫(温度升高7.86°C)对冬小麦生理活性和籽粒产量的影响。与未进行预处理的植株相比,茎伸长期和孕穗期进行热激预处理显著减轻了灌浆期热胁迫对籽粒产量的损害。热激预处理的植株叶片中蔗糖含量和蔗糖磷酸活性更高,地上部干物质也比未预处理的植株更多。与未预处理相比,茎伸长期和孕穗期进行预处理使光合能力、气孔导度和叶绿素含量增加。与两个品种的未预处理植株相比,预处理植株中抗氧化酶超氧化物歧化酶和过氧化物酶活性增强,活性氧和丙二醛生成减少,对热胁迫的耐受性提高。孕穗期预处理的植株在灌浆期对热胁迫的响应中,热激预处理的积极作用比茎伸长期或开花期预处理的植株更显著。此外,春性品种扬麦18比烟农19从热激预处理中受益更多,其生产力更高就是证明。我们得出结论,生殖生长早期进行热激预处理可以提高冬小麦花后的耐热性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/739a/6008404/b41f17948587/fpls-09-00805-g001.jpg

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