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噻苯隆与乙烯利处理下棉花叶片脱落的比较生理和转录组学机制。

Comparative Physiological and Transcriptomic Mechanisms of Defoliation in Cotton in Response to Thidiazuron versus Ethephon.

机构信息

Engineering Research Center of Plant Growth Regulator, Ministry of Education & College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.

State Key Laboratory of Plant Physiology and Biochemistry, China Agricultural University, Beijing 100193, China.

出版信息

Int J Mol Sci. 2023 Apr 20;24(8):7590. doi: 10.3390/ijms24087590.

Abstract

Thidiazuron (TDZ) is a widely used chemical defoliant in cotton and can stimulate the production of ethylene in leaves, which is believed to be the key factor in inducing leaf abscission. Ethephon (Eth) can also stimulate ethylene production in leaves, but it is less effective in promoting leaf shedding. In this study, the enzyme-linked immunosorbent assays (ELISA) and RNA-seq were used to determine specific changes at hormonal levels as well as transcriptomic mechanisms induced by TDZ compared with Eth. The TDZ significantly reduced the levels of auxin and cytokinin in cotton leaves, but no considerable changes were observed for Eth. In addition, TDZ specifically increased the levels of brassinosteroids and jasmonic acid in the leaves. A total of 13 764 differentially expressed genes that specifically responded to TDZ were identified by RNA-seq. The analysis of KEGG functional categories suggested that the synthesis, metabolism, and signal transduction of auxin, cytokinin, and brassinosteroid were all involved in the TDZ-induced abscission of cotton leaves. Eight auxin transport genes (, , , , , , , and ) specifically responded to TDZ. The transgenic plants showed lower defoliation than the wild type treated with TDZ, and YFP fluorescence in leaves was almost extinguished after treatment with TDZ rather than Eth. This provides direct evidence that GhPIN3a is involved in the leaf abscission induced by TDZ. We found that 959 transcription factors (TFs) specifically responded to TDZ, and a co-expression network analysis (WGCNA) showed five hub TFs (, , , , and ) during chemical defoliation with TDZ. Our work sheds light on the molecular basis of TDZ-induced leaf abscission in cotton.

摘要

噻苯隆(TDZ)是一种广泛用于棉花的化学脱叶剂,可刺激叶片产生乙烯,这被认为是诱导叶片脱落的关键因素。乙烯利(Eth)也可以刺激叶片产生乙烯,但促进叶片脱落的效果较差。本研究采用酶联免疫吸附测定(ELISA)和 RNA-seq 技术,确定了 TDZ 与 Eth 相比在激素水平和转录组机制方面引起的特定变化。TDZ 可显著降低棉花叶片中生长素和细胞分裂素的水平,但 Eth 则没有明显变化。此外,TDZ 特异性增加了叶片中的油菜素内酯和茉莉酸的水平。通过 RNA-seq 共鉴定到 13764 个对 TDZ 特异响应的差异表达基因。KEGG 功能分类分析表明,生长素、细胞分裂素和油菜素内酯的合成、代谢和信号转导均参与了 TDZ 诱导的棉花叶片脱落。8 个生长素转运基因(、、、、、、和)特异性响应 TDZ。与 TDZ 处理的野生型相比,转基因植株的脱叶率较低,且 TDZ 处理后叶片中的 YFP 荧光几乎熄灭,而 Eth 处理后则不会。这直接证明了 GhPIN3a 参与了 TDZ 诱导的叶片脱落。我们发现 959 个转录因子(TFs)特异性响应 TDZ,且 WGCNA 共表达网络分析显示,在 TDZ 化学脱叶过程中有 5 个关键 TFs(、、、、和)。我们的工作阐明了 TDZ 诱导棉花叶片脱落的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d4f/10143250/402f74fad52f/ijms-24-07590-g001.jpg

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