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揭示根系木质素积累在硅诱导番茄抗旱性中的主导作用。

Uncovering the dominant role of root lignin accumulation in silicon-induced resistance to drought in tomato.

机构信息

College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong 271018, China; Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production in Shandong, Genetic Improvement of Horticultural Crops in Huanghuai Region, Ministry of Agriculture and Rural Affairs, China.

College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong 271018, China; Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production in Shandong, Genetic Improvement of Horticultural Crops in Huanghuai Region, Ministry of Agriculture and Rural Affairs, China.

出版信息

Int J Biol Macromol. 2024 Feb;259(Pt 1):129075. doi: 10.1016/j.ijbiomac.2023.129075. Epub 2023 Dec 29.

Abstract

The role of lignin accumulation in silicon-induced resistance has not been fully elucidated. Based on the finding that the root cell wall is protected by silicon, this study explored the role of lignin accumulation in silicon-induced drought resistance in tomato. The decreased silicon concentration of the root confirmed the dominant role of lignin accumulation in silicon-induced drought resistance. The lignin monomer content in the root was enhanced by silicon, and was accompanied by the enhancement of drought resistance. Histochemical and transcriptional analyses of lignin showed that lignin accumulation was promoted by silicon under drought stress. In addition, in the root zone, silicon-induced lignin accumulation increased as the distance from the root tip increased under drought stress. Surprisingly, the Dwarf gene was upregulated by silicon in the roots. Micro Tom Dwarf gene mutation and Micro Tom-d + Dwarf gene functional complementation were further used to confirm that Dwarf regulates the spatial accuracy of SHR expression in the root. Therefore, root lignin accumulation plays a dominant role in silicon-induced drought resistance in tomato and the regulation of spatial accuracy of root lignification by silicon under drought stress is through the BR pathway, thereby avoiding the inhibition of root growth caused by root lignification.

摘要

木质素积累在硅诱导抗性中的作用尚未完全阐明。基于硅对根细胞壁起保护作用的发现,本研究探讨了木质素积累在番茄硅诱导抗旱性中的作用。根中硅浓度降低证实了木质素积累在硅诱导抗旱性中起主导作用。硅增强了根中木质素单体的含量,同时增强了抗旱性。木质素的组织化学和转录分析表明,在干旱胁迫下,硅促进了木质素的积累。此外,在根区,干旱胁迫下,硅诱导的木质素积累随距根尖距离的增加而增加。令人惊讶的是,硅在根中上调了 Dwarf 基因。进一步使用 Micro Tom Dwarf 基因突变和 Micro Tom-d+Dwarf 基因功能互补来证实 Dwarf 调节了 SHR 在根中的空间表达准确性。因此,根木质素积累在番茄硅诱导抗旱性中起主导作用,硅在干旱胁迫下通过 BR 途径调节根木质化的空间准确性,从而避免了根木质化对根生长的抑制。

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