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Effects of Low Temperature at Booting Stage on Sucrose Metabolism and Endogenous Hormone Contents in Winter Wheat Spikelet

机译:孕穗期低温对冬小麦小穗蔗糖代谢和内源激素含量的影响

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Low spring temperatures often occur during the winter wheat booting stage, when the young ears are very sensitive to cold. In this study, we used two wheat varieties differing in cold sensitivity (sensitive variety Yangmai 18 and tolerant variety Yannong 19) to examine the effect of low temperature on wheat grain number at booting stage. Low temperature stress was simulated in an artificial climate chamber at 4°C for 60 h in 2016 and at 2, 0, or ?2°C for 24 h in morphological assays, showing that the development of wheat spikelets was inhibited and floret growth was delayed following low temperature stress. However, an increase in the sucrose content of young panicles was also observed, and the activity of enzymes involved in sucrose metabolism was dynamically altered. Sucrose phosphate synthase activity was enhanced, and sucrose synthase activity significantly increased after treatment at 4 and 2°C, respectively. However, activities of sucrose synthase and invertase decreased with a reduction in temperature. Gene expression assays further revealed downregulation of TaSuS1 expression and upregulation of TaSuS2 , while expression of CWINV was inhibited. Moreover, phytohormone content assays showed an increase in the content of abscisic acid in young wheat ears, but a decrease in the content of auxin and gibberellins. The grain number per spike and 1000-grain weight also showed a downward trend following low temperature stress. Overall, these findings suggest that low temperature at booting induces abscisic acid accumulation in winter wheat, altering the activity of the enzymes involved in sucrose metabolism, which leads to an accumulation of sucrose in the young ears, thereby having a negative effect on wheat production.
机译:在冬小麦孕穗期,年轻的耳朵对寒冷非常敏感,因此春季气温通常较低。在这项研究中,我们使用了两个对冷敏感度不同的小麦品种(敏感品种扬麦18和耐性品种延农19)来研究低温对孕穗期小麦籽粒数量的影响。在2016年在4°C的人工气候箱中模拟了低温胁迫60 h,在形态学分析中在2、0或?2°C的24 h下模拟了低温胁迫,表明小麦小穗的发育受到抑制,小花的生长低温应力后延迟。然而,还观察到幼穗的蔗糖含量增加,并且参与蔗糖代谢的酶的活性被动态改变。分别在4°C和2°C处理后,蔗糖磷酸合酶活性增强,蔗糖合酶活性显着提高。然而,蔗糖合酶和转化酶的活性随温度降低而降低。基因表达测定进一步揭示了TaSuS1表达的下调和TaSuS2的上调,而CWINV的表达被抑制。此外,植物激素含量测定表明,幼麦穗中脱落酸的含量增加,而生长素和赤霉素的含量下降。在低温胁迫下,每个穗粒数和1000粒重也显示出下降的趋势。总体而言,这些发现表明,启动时的低温导致冬小麦中脱落酸的积累,从而改变了参与蔗糖代谢的酶的活性,从而导致幼穗中的蔗糖积累,从而对小麦的产量产生了负面影响。

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