首页> 外文期刊>Acta Physiologiae Plantarum >Drought stress condition increases root to shoot ratio via alteration of carbohydrate partitioning and enzymatic activity in rice seedlings
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Drought stress condition increases root to shoot ratio via alteration of carbohydrate partitioning and enzymatic activity in rice seedlings

机译:干旱胁迫条件通过改变水稻幼苗中碳水化合物的分配和酶活性而增加了根冠比

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摘要

To understand the underlying mechanism for plasticity in root to shoot ratio (R/S) in response to drought stress, two rice cultivars, Zhenshan97 (drought susceptible) and IRAT109 (drought resistant), were grown hydroponically, and R/S, carbohydrate concentration and partitioning, and activities of enzymes for sucrose conversion in seedlings exposed to drought stress condition (DS) imposed by polyethylene glycol (6000) were investigated. The R/S significantly increased under DS in comparison with that under well-watered condition. The proportion of dry matter and soluble sugar of roots markedly increased under DS. The R/S was negatively correlated with proportion of soluble sugar in stems, and positively with the proportions of soluble sugar and starch in roots. Drought stress condition significantly increased leaf sucrose-phosphate synthase (EC 2.4.1.14) activity and root acid and neutral/ alkaline invertase (EC 3.2.1.26) activity. The R/S was positively correlated with leaf sucrose-phosphate synthase and root acid invertase activity, and negatively with leaf sucrose synthase activity in the cleavage direction. Our results indicate that the increase in R/S in response to DS is closely associated with the higher proportion of dry matter and soluble sugar in roots, and this occurs via an increase in leaf sucrose-phosphate synthase and root invertase activity, and thus more sucrose is available for transport from leaves to roots.
机译:为了了解干旱对根与茎比(R / S)的可塑性的潜在机理,两个水稻品种Zhenshan97(易受干旱影响)和IRAT109(抗干旱)通过水培法生长,R / S,碳水化合物浓度研究了聚乙二醇(6000)在干旱胁迫条件下(DS)对幼苗的蔗糖转化,分配和蔗糖转化酶的活性。与浇水良好的条件相比,DS的R / S显着增加。在DS条件下,根的干物质和可溶性糖的比例显着增加。 R / S与茎中可溶性糖的含量呈负相关,与根中可溶性糖和淀粉的含量呈正相关。干旱胁迫条件显着增加了叶片蔗糖-磷酸合酶(EC 2.4.1.14)的活性以及根酸和中性/碱性转化酶(EC 3.2.1.26)的活性。 R / S与叶蔗糖磷酸合酶和根酸转化酶活性呈正相关,与叶蔗糖合酶活性在切割方向呈负相关。我们的结果表明,响应DS的R / S的增加与根中干物质和可溶性糖的比例较高密切相关,这是通过增加叶蔗糖磷酸合成酶和根转化酶的活性而发生的,因此更多蔗糖可用于从叶到根的运输。

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