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外源生长素对高粱中胚轴伸长的影响

Effects of Exogenous Auxin on Mesocotyl Elongation of Sorghum.

作者信息

Liu Chang, Yao Ziqing, Jiang Bing, Yu Wenbo, Wang Yu, Dong Wenhui, Li Yutong, Shi Xiaolong, Liu Chunjuan, Zhou Yufei

机构信息

College of Agronomy, Shenyang Agriculture University, Shenyang 110866, China.

Jinzhou Academy of Agricultural Sciences, Jinzhou 121006, China.

出版信息

Plants (Basel). 2023 Feb 19;12(4):944. doi: 10.3390/plants12040944.

Abstract

The length of sorghum mesocotyl plays a vital role in seed emergence from the soil, which is the foundation of healthy growth. In this study, we aimed to understand how exogenous auxin (IAA) promoted mesocotyl elongation of sorghum and its physiology mechanism. The results presented that exogenous IAA significantly promoted mesocotyl elongation in MS24B (short mesocotyl inbred line) by increasing the cell length, while with extra exogenous NPA (IAA inhibitor) application, the mesocotyl length presented a significant short phenotype. In Z210 (long mesocotyl inbred line), exogenous IAA had a slight effect on mesocotyl length elongation, while the NPA treatment decreased the mesocotyl length considerably. In MS24B, IAA treatment increased the activity of amylase to degrade starch to soluble sugar, and the activity of hexokinase was improved to consume the increased soluble sugar to offer more energy. The energy will help to increase the activity of PM H-ATPase and the expression of expansin-related genes, which ultimately will promote the acidification of the plasma membrane in MS24B for cell elongation. Overall, the exogenous IAA functioned on the activation of energy metabolism, which in turn, inducted the acidification of the plasma membrane for mesocotyl elongation.

摘要

高粱中胚轴的长度在种子出土过程中起着至关重要的作用,而种子出土是健康生长的基础。在本研究中,我们旨在了解外源生长素(IAA)如何促进高粱中胚轴伸长及其生理机制。结果表明,外源IAA通过增加细胞长度显著促进了MS24B(短中胚轴自交系)中胚轴的伸长,而额外施加外源NPA(IAA抑制剂)时,中胚轴长度呈现出显著的缩短表型。在Z210(长中胚轴自交系)中,外源IAA对中胚轴长度伸长的影响较小,而NPA处理则显著降低了中胚轴长度。在MS24B中,IAA处理提高了淀粉酶的活性,将淀粉降解为可溶性糖,同时己糖激酶的活性也得到提高,以消耗增加的可溶性糖来提供更多能量。这些能量有助于提高质膜H-ATPase的活性和扩展蛋白相关基因的表达,最终促进MS24B质膜酸化以实现细胞伸长。总体而言,外源IAA作用于激活能量代谢,进而诱导质膜酸化以促进中胚轴伸长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31d2/9959298/d6910b6ad26a/plants-12-00944-g001.jpg

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