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内贝壳杉烯合酶基因的过表达增强了(Wall.)Lindl.中赤霉素的生物合成并提高了其耐盐性。

Overexpression of Ent-Kaurene Synthase Genes Enhances Gibberellic Acid Biosynthesis and Improves Salt Tolerance in (Wall.) Lindl.

作者信息

Yang Lin, Sun Fuai, Zhao Shanyan, Zhang Hangying, Yu Haoqiang, Zhang Juncheng, Yang Chunyan

机构信息

Medical Plant Exploitation and Utilization Engineering Research Center Fujian, Provincial Key Laboratory of Resources and Environment Monitoring & Sustainable Management and Utilization, Sanming University, Sanming 365004, China.

Maize Research Institute, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Genes (Basel). 2025 Jul 30;16(8):914. doi: 10.3390/genes16080914.

Abstract

: (Wall.) Lindl. () was widely used in traditional Chinese medicine and also as a health food in China. Gibberellins (GAs) are plant hormones that regulate various aspects of growth and development in . Ent-kaurene synthase (KS) plays a crucial role in the biosynthesis of GAs in plants. However, there is limited functional analysis of KS in GA biosynthesis and its effect on salt tolerance, especially in . : The genes were cloned from , and its salt tolerance characteristics were verified by prokaryotic expression. Under salt stress, analyze the regulation of gene on GA and active ingredient content by qRT-PCR and HPLC-MS/MS, and explore the mechanism of exogenous GAs promoting active ingredient enrichment by regulating the expression level of the under salt stress. : The protein was highly homologous to KSs with other plant species; subcellular localization of KS protein was lacking kytic vacuole. The transformants displayed a significant increase in salt tolerance under the stress conditions of 300 mM NaCl. And the expression of genes and the GAs accumulation was downregulated under the salt stress; among them, the contents of GA3, GA7, GA8, GA24, and GA34 showed a significant decrease. It was further found that there was an increase (1.36 times) in MDA content and a decrease (0.84 times) in relative chlorophyll content under the salt conditions from However, the content of active constituents was elevated from under the NaCl stress, including polysaccharides, total flavonoids, and free amino acids, which increased by 1.14, 1.23, and 1.44 times, respectively. Interestingly, the gene expression and the chlorophyll content was increased, MDA content showed a decrease from 2.02 μmoL·g to 1.74 μmoL·g after exogenous addition of GAs, and the elevation of active constituents of polysaccharides, total flavonoids, and free amino acids were increased by 1.02, 1.09, and 1.05 times, implying that GAs depletion mitigated the damage caused by adversity to . : The gene cloned from improved the salt tolerance of plants under salt stress by regulating GA content. Also, GAs not only alleviate salt tolerance but also play a key role in the synthesis of active components in . The functions of genes and GAs were identified to provide ideas for improving the salt tolerance and quality of ingredients in artificial cultivation from .

摘要

(Wall.)Lindl.在中国传统医学中被广泛应用,在中国也作为一种保健食品。赤霉素(GAs)是调节植物生长发育各个方面的植物激素。内贝壳杉烯合酶(KS)在植物GAs生物合成中起关键作用。然而,关于KS在GA生物合成中的功能分析及其对耐盐性的影响有限,尤其是在[具体植物名称未明确]中。:从[具体植物名称未明确]中克隆了[具体基因名称未明确]基因,并通过原核表达验证了其耐盐特性。在盐胁迫下,通过qRT-PCR和HPLC-MS/MS分析[具体基因名称未明确]基因对GA和活性成分含量的调控,并探讨外源GAs通过调节盐胁迫下[具体基因名称未明确]的表达水平促进活性成分富集的机制。:[具体基因名称未明确]蛋白与其他植物物种的KS高度同源;KS蛋白的亚细胞定位缺乏液泡。在300 mM NaCl胁迫条件下,转化体的耐盐性显著提高。在盐胁迫下,[具体基因名称未明确]基因的表达和GAs积累下调;其中,GA3、GA7、GA8、GA24和GA34的含量显著下降。进一步发现,在[具体盐浓度未明确]的盐条件下,丙二醛(MDA)含量增加(1.36倍),相对叶绿素含量下降(0.84倍)。然而,在NaCl胁迫下,活性成分的含量从[具体含量未明确]升高,包括多糖、总黄酮和游离氨基酸,分别增加了1.14、1.23和1.44倍。有趣的是,外源添加GAs后,[具体基因名称未明确]基因表达和叶绿素含量增加,MDA含量从2.02 μmoL·g降至1.74 μmoL·g,多糖、总黄酮和游离氨基酸等活性成分的升高分别增加了1.02、1.09和1.05倍,这意味着GAs的减少减轻了逆境对[具体植物名称未明确]造成的损害。:从[具体植物名称未明确]中克隆的[具体基因名称未明确]基因通过调节GA含量提高了盐胁迫下植物的耐盐性。此外,GAs不仅减轻了耐盐性,而且在[具体植物名称未明确]活性成分的合成中起关键作用。鉴定了[具体基因名称未明确]基因和GAs的功能,为提高[具体植物名称未明确]人工栽培中成分的耐盐性和品质提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f52/12386170/c5eda349ff0f/genes-16-00914-g001.jpg

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