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Effects of Rhizome Integration on the Water Physiology of Phyllostachys edulis Clones under Heterogeneous Water Stress

机译:水分胁迫下根茎整合对毛竹无性系水分生理的影响。

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摘要

Water is crucial to plant growth and development. Under heterogeneous environmental water deficiency, physiological integration of the rhizomatous clonal plant triggers a series of physiological cascades, which induces both signaling and physiological responses. It is known that the rhizome of , which connects associated clonal ramets, has important significance in this physiological integration. This significance is attributed to the sharing of water and nutrients in the vascular bundle of clonal ramets under heterogeneous water conditions. However, the physiological characteristics of physiological integration under heterogeneous water stress remain unclear. To investigate these physiological characteristics, particularly second messenger Ca signaling characteristics, long-distance hormone signaling molecules, antioxidant enzyme activity, osmotic adjustment substance, and nitrogen metabolism, ramets with a connected (where integration was allowed to take place) and severed rhizome (with no integration) were compared in this study. The vascular bundle structure of the rhizome was also observed using laser confocal microscopy. Overall, the results suggest that interconnected rhizome of can enhance its physiological function in response to drought-induced stress under heterogeneous water deficiency. These measured changes in physiological indices serve to improve the clonal ramets’ drought adaptivity through the interconnected rhizome.
机译:水对植物的生长和发育至关重要。在异质环境缺水的情况下,根状无性系植物的生理整合会引发一系列生理级联反应,从而诱发信号传导和生理反应。众所周知,连接相关克隆分株的的根茎在这种生理整合中具有重要意义。这种重要性归因于在非均质水条件下克隆分株的维管束中水和养分的共享。然而,在不同的水分胁迫下生理整合的生理特征仍然不清楚。为了研究这些生理特征,特别是第二信使Ca信号传导特征,长途激素信号传导分子,抗氧化酶活性,渗透调节物质和氮代谢,分株相互连接(允许发生整合)和切断的根茎(具有未整合)在本研究中进行了比较。还使用激光共聚焦显微镜观察了根茎的血管束结构。总体而言,这些结果表明,相互连接的根茎能够在非均质缺水条件下响应干旱引起的胁迫而增强其生理功能。这些生理指标的变化有助于通过相互连接的根茎提高克隆分株的干旱适应性。

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