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首页> 外文期刊>Journal of Plant Breeding and Crop Science >Activities of sucrose-metabolizing enzymes in grains of two wheat (Triticum aestivum L.) cultivars subjected to water stress during grain filling
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Activities of sucrose-metabolizing enzymes in grains of two wheat (Triticum aestivum L.) cultivars subjected to water stress during grain filling

机译:两种小麦灌浆过程中水分胁迫下蔗糖代谢酶的活性

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Developmental changes in the starch and soluble sugars content of grains and the activities of sucrose metabolism enzymes in drought-tolerant?(Triticum aestivum?L. cv. Zagros) and drought-sensitive with high yielding potential under favorable conditions (cv. Marvdasht) wheat genotypes were investigated under controlled water deficit during grain filling. The two cultivars were grown in pots under well-watered (WW) and water-stressed (WS) starting from anthesis until maturity.?Water stress caused a marked reduction in glucose, fructose and sucrose content of grains of sensitive cultivar. These changes were paralleled by sharp decline in the activities of cell wall invertase and soluble invertase in the grains of sensitive cultivar. Whereas in tolerant cultivar as the surge in invertase activity faded; in grains it was replaced by a substantial increase in sucrose synthase activity as seed development proceeds. Notwithstanding the increase in sucrose synthase activity in grains of sensitive cultivar; however, this little raise could not be sufficient to compensate for decreased levels of invertases and might restrict transport efficiency of storage material, and together with insufficient photosynthate may be the main reasons for dramatical reduction in the number of kernel and subsequent grain yield under WS treatment in Marvdasht.
机译:在有利条件下(Marvdasht)小麦在耐旱和高产的干旱敏感性小麦(Triticum aestivum?L.cv.Zagros)中谷物淀粉和可溶性糖含量的发育变化以及蔗糖代谢酶的活性在灌浆过程中控制水分亏缺的情况下研究了基因型。从开花期到成熟,这两个品种都在盆栽下于充分浇水(WW)和水分胁迫(WS)的条件下生长。水分胁迫导致敏感品种谷物的葡萄糖,果糖和蔗糖含量显着降低。这些变化与敏感品种籽粒中细胞壁转化酶和可溶性转化酶活性的急剧下降同时发生。而在耐性品种中,转化酶活性的增高逐渐减弱。在谷物中,随着种子发育的进行,其被蔗糖合酶活性的大幅提高所取代。尽管敏感品种的籽粒中蔗糖合酶活性增加;然而,这种少量提高不足以弥补蔗糖酶水平的下降,并可能限制存储材料的运输效率,并且光合产物不足可能是在WS处理下显着减少籽粒数量和随后谷物产量的主要原因在Marvdasht。

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