干旱胁迫对黄芩次生代谢的影响及SbWRKY34在抗旱中的作用

IF 6.1 2区 生物学 Q1 PLANT SCIENCES
Tong Zhang , Caijuan Zhang , Wentao Wang , Suying Hu , Qian Tian , Yunyun Li , Langjun Cui , Lin Li , Zhezhi Wang , Xiaoyan Cao , Donghao Wang
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引用次数: 0

摘要

黄芩干根是一种中草药,其药理特性包括抗氧化、抗菌和抗病毒作用。在黄芩质量评价中,黄芩苷、黄芩苷、黄芩苷和黄芩苷的含量至关重要。干旱胁迫通常会影响药用植物药用部分的生物量和活性化合物的积累,从而影响其质量。黄芩对干旱胁迫响应的分子机制尚不清楚。探讨干旱胁迫对黄芩生长和代谢过程的影响,揭示其分子机制。我们发现,长期和强化的干旱处理导致其鲜重、株高和茎粗的初始激增,随后逐渐放缓,而丙二醛(MDA)含量上升;鲜重、根长、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性达到峰值后逐渐下降,根径不断变细。在本研究中,黄芩中黄酮类指数成分含量随着干旱时间的延长先下降后上升,补液后黄芩苷、黄芩苷和黄芩苷含量显著增加,黄芩苷和oroxylin a含量显著降低。转录组测序和KEGG分析显示,参与苯丙素生物合成和植物激素信号转导途径的DEGs显著富集。类黄酮生物合成途径中SbPAL、SbCCL、Sb4CL、SbCHI、SbFNSII、SbF6H、SbUGT基因和脱落酸信号转导途径中PYR/PYL、PP2C、ABF、SnRK2基因的表达水平发生了显著变化。随后选择对干旱敏感的SbWRKY34进行研究。SbWRKY34在茎中表达量最高,编码蛋白定位在细胞核中。SbWRKY34在拟南芥(e -SbWRKY34系)中过表达,导致其对干旱胁迫的敏感性增加,MDA含量显著降低,SOD和CAT活性升高。同时,AtCAT3、AtDREB、AtRD22、AtRD29A和AtRD29B的表达量在这些品系中显著降低,表明SbWRKY34负调控拟南芥的抗旱性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of drought stress on the secondary metabolism of Scutellaria baicalensis Georgi and the function of SbWRKY34 in drought resistance
The pharmacological properties of the dried root of Scutellaria baicalensis Georgi, a Chinese medicinal herb, include antioxidant, antibacterial, and antiviral effects. In S. baicalensis quality assessment, concentrations of baicalin, wogonoside, baicalein, and wogonin in the root are crucial. Drought stress commonly affects the biomass and build-up of active compounds in medicinal sections of medicinal plants and thus their quality. The molecular mechanisms underlying the response of S. baicalensis to drought stress remain unexplored. To delve into the impacts of drought stress on the growth and metabolic processes of S. baicalensis, as well as to unravel the underlying molecular mechanisms. We found prolonged and intensified drought treatment causes an initial surge in its fresh weight, plant height, and stem diameter followed by a gradual slowdown, while malondialdehyde (MDA) content rises; while the fresh weight, length, superoxide dismutase (SOD), and catalase (CAT) activities peak before declining, and the root's diameter continuously narrows. In this study, flavonoid index ingredient levels in S. baicalensis initially decreased, then rose as the drought duration extended, followed by a notable post-rehydration increase in baicalin, wogonoside, and baicalein content and decrease in levels of wogonin and oroxylin A. Transcriptome sequencing and KEGG analysis revealed a significant enrichment of DEGs involved in phenylpropanoid biosynthesis and plant hormone signal transduction pathways. The expression levels of SbPAL, SbCCL, Sb4CL, SbCHI, SbFNSII, SbF6H, and SbUGT genes in the flavonoid biosynthetic pathway and PYR/PYL, PP2C, ABF, and SnRK2 genes in the abscisic acid signal transduction pathway were significantly changed. Drought responsive SbWRKY34 was selected for the subsequent investigation. SbWRKY34 showed the highest level in stems, and the encoding protein was localized in the nucleus. Overexpression of SbWRKY34 in Arabidopsis thaliana (OE-SbWRKY34 lines) resulted in increased sensitivity to drought stress, with considerably reduced MDA content and elevated SOD and CAT activities. Concurrently, the expression levels of AtCAT3, AtDREB, AtRD22, AtRD29A, and AtRD29B were significantly reduced in these lines, suggesting that SbWRKY34 functions to negatively regulate drought resistance in A. thaliana.
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来源期刊
Plant Physiology and Biochemistry
Plant Physiology and Biochemistry 生物-植物科学
CiteScore
11.10
自引率
3.10%
发文量
410
审稿时长
33 days
期刊介绍: Plant Physiology and Biochemistry publishes original theoretical, experimental and technical contributions in the various fields of plant physiology (biochemistry, physiology, structure, genetics, plant-microbe interactions, etc.) at diverse levels of integration (molecular, subcellular, cellular, organ, whole plant, environmental). Opinions expressed in the journal are the sole responsibility of the authors and publication does not imply the editors'' agreement. Manuscripts describing molecular-genetic and/or gene expression data that are not integrated with biochemical analysis and/or actual measurements of plant physiological processes are not suitable for PPB. Also "Omics" studies (transcriptomics, proteomics, metabolomics, etc.) reporting descriptive analysis without an element of functional validation assays, will not be considered. Similarly, applied agronomic or phytochemical studies that generate no new, fundamental insights in plant physiological and/or biochemical processes are not suitable for publication in PPB. Plant Physiology and Biochemistry publishes several types of articles: Reviews, Papers and Short Papers. Articles for Reviews are either invited by the editor or proposed by the authors for the editor''s prior agreement. Reviews should not exceed 40 typewritten pages and Short Papers no more than approximately 8 typewritten pages. The fundamental character of Plant Physiology and Biochemistry remains that of a journal for original results.
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