首页> 美国卫生研究院文献>Annals of Botany >Interactions Between Plant Hormones Regulate Submergence‐induced Shoot Elongation in the Flooding‐tolerant Dicot Rumex palustris
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Interactions Between Plant Hormones Regulate Submergence‐induced Shoot Elongation in the Flooding‐tolerant Dicot Rumex palustris

机译:植物激素之间的相互作用调节了耐水双子叶植物大头菜(Rumex palustris)的淹没诱导的芽伸长。

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摘要

Rumex palustris has the capacity to respond to complete submergence with hyponastic (upward) growth and stimulated elongation of petioles. These adaptive responses allow survival of this plant in habitats with sustained high water levels by re‐establishing contact with the aerial environment. Accumulated ethylene in submerged petioles interacts with ethylene receptor proteins and operates as a reliable sensor for the under‐water environment. Further downstream in the transduction pathway, a fast and substantial decrease of the endogenous abscisic acid concentration and a certain threshold level of endogenous auxin and gibberellin are required for hyponastic growth and petiole elongation. Interactions of these plant hormones results in a significant increase of the in vitro cell wall extensibility in submerged petioles. Furthermore, the pattern of transcript accumulation of a R. palustris α‐expansin gene correlated with the pattern of petiole elongation upon submergence.
机译:Rumex palustris有能力应对下垂(向上)生长和叶柄伸长刺激的完全淹没。这些适应性反应可通过与空中环境重新建立联系,使该植物在持续高水位的栖息地中生存。淹没叶柄中积累的乙烯与乙烯受体蛋白相互作用,并作为水下环境的可靠传感器。在转导途径的更下游,内源性脱落酸浓度的快速和大量降低以及内源性生长素和赤霉素的一定阈值水平对于鼻下垂生长和叶柄伸长是必需的。这些植物激素的相互作用导致淹没叶柄的体外细胞壁可扩展性显着提高。此外,R。palustrisα-expansin基因的转录本积累模式与浸没后叶柄伸长的模式相关。

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