首页> 美国卫生研究院文献>Plant Physiology >A Comparison of Oligogalacturonide- and Auxin-Induced Extracellular Alkalinization and Growth Responses in Roots of Intact Cucumber Seedlings
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A Comparison of Oligogalacturonide- and Auxin-Induced Extracellular Alkalinization and Growth Responses in Roots of Intact Cucumber Seedlings

机译:寡半乳糖苷和生长素诱导的完整黄瓜幼苗根系细胞外碱化和生长反应的比较

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摘要

Oligogalacturonic acid (OGA) affects plant growth and development in an antagonistic manner to that of the auxin indole-3-acetic acid (IAA), the mechanism by which remains to be determined. This study describes the relationship between IAA and OGA activity in intact cucumber (Cucumis sativus) seedlings. Both OGA and IAA induced rapid and transient extracellular alkalinization; however, the characteristics of the OGA and IAA responses differed in their kinetics, magnitude, calcium dependence, and region of the root in which they induced their maximal response. IAA (1 μm) induced a saturating alkalinization response of approximately 0.2 pH unit and a rapid reduction (approximately 80%) in root growth that only partially recovered over 20 h. OGAs, specifically those with a degree of polymerization of 10 to 13, induced a maximal alkalinization response of 0.48 pH unit, but OGA treatment did not alter root growth. Saturating concentrations of OGA did not block IAA-induced alkalinization or the initial IAA-induced inhibition of root growth but allowed IAA-treated roots to recover their initial growth rate within 270 min. IAA-induced alkalinization occurs primarily in the growing apical region of the root, whereas OGA induced its maximal response in the basal region of the root. This study demonstrates that OGA and IAA act by distinct mechanisms and that OGA does not simply act by inhibition of IAA action. These results also suggest that IAA-induced extracellular alkalinization is not sufficient to account for the mechanism by which IAA inhibits root growth.
机译:寡半乳糖醛酸(OGA)以与生长素吲哚-3-乙酸(IAA)相反的方式影响植物的生长发育,其机理尚待确定。这项研究描述了完整的黄瓜(Cucumis sativus)幼苗中IAA与OGA活性之间的关系。 OGA和IAA均可引起快速和短暂的细胞外碱化。但是,OGA和IAA响应的特征在动力学,强度,钙依赖性和诱导最大响应的根部区域方面有所不同。 IAA(1μm)引起大约0.2 pH单位的饱和碱化反应,并且根部生长迅速减少(大约80%),在20小时内仅部分恢复。 OGA,特别是那些聚合度为10到13的OGA,诱导的最大碱化反应为0.48 pH单位,但是OGA处理不会改变根的生长。饱和浓度的OGA不会阻止IAA诱导的碱化作用或初始IAA诱导的根生长抑制,但允许IAA处理的根在270分钟内恢复其初始生长速度。 IAA诱导的碱化作用主要发生在根部的根尖区域,而OGA诱导其在根部的根部区域产生最大响应。这项研究表明,OGA和IAA通过不同的机制起作用,并且OGA并不仅仅通过抑制IAA的作用起作用。这些结果还表明,IAA诱导的细胞外碱化不足以解释IAA抑制根生长的机制。

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