极端温度通过改变参与其生物合成的转录本的表达,引起心糖苷及其苷元单位在卡罗tropis procera中的积累。

IF 2.7 3区 生物学 Q2 PLANT SCIENCES Journal of Plant Research Pub Date : 2025-01-07 DOI:10.1007/s10265-024-01612-6
Emma Anjali Minj, Akansha Pandey, Akhilesh Kumar, Tushar Pandey, Anjum Bano, Archana Kumari, Mallika Madan, Anshu Mohanta, Sanjeev Kanojiya, Vineeta Tripathi
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引用次数: 0

摘要

锦桐是夹竹桃科的一种药用植物,是天然心桂素的核心来源。心糖苷(Cardiac glycosides, CGs)是一种类固醇衍生物,据报道具有通过多种信号通路调节癌细胞存活和死亡的能力。早期特异性和伤口反应性cg及其基因原单位的积累已经有报道。近年来越来越多的证据表明,植物次生代谢物的产生与胁迫和防御反应信号有关。在本报告中,我们利用LC-MS/MS分析了CGs及其基因原单位在控制和胁迫条件下的季节性积累,并对其进行了分析。研究表明,在冬季和夏季雨季之外,以及在热胁迫和盐胁迫下,原花椒植物都能有效地积累CGs和genin单位。在热、冷和NaCl的作用下,三种桃香内酯中,降钙素的积累量大于红豆苷元和乌扎黄苷元,而降钙素、果苷元、uscharidin、uscharin和asclepin等cg的积累量显著。相对于激素处理,如茉莉酸甲酯和水杨酸,目标偏绝对化表现出高达两倍的积累。CG生物合成基因的基因表达分析也验证了目标代谢物的积累模式。这种有针对性的代谢物积累增强了植物对不利条件的耐受性。基因表达分析支持这一策略,强调植物有效的胁迫管理。这些发现有助于我们理解植物如何通过代谢物的积累来适应压力,从而增强它们对具有挑战性的环境条件的耐受性。
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Extreme temperatures elicit the accumulation of cardiac glycoside and their genin units in Calotropis procera by altering the expression of transcripts involved in its biosynthesis.

Calotropis procera (Aiton) W.T. Aiton is a medicinal plant belonging to the family Apocynaceae as a core source of natural cardenolides. Cardiac glycosides (CGs) are steroid derivatives reported to have the ability to regulate cancer cell survival and death through multiple signaling pathways. Earlier stage-specific and wound-responsive accumulation of CGs and their genin units have already been reported. Recent cumulative evidences have implicated stress and defense response signaling in the production of secondary metabolite in plants. In this report, seasonal accumulation of CGs and its genin units have been explored along with their profiling under control vs stress conditions with a significant accumulation using LC-MS/MS. The study showed that Calotropis procera plants efficiently accumulate CGs and genin units in both winter and summer beside rainy season, as well as under thermal and salinity stress. Among the three cardenolides, the calotropagenin was accumulated more than coroglaucigenin and uzarigenin whereas CGs like calotropin, frugoside, uscharidin, uscharin, and asclepin were significantly accumulated in response to heat, cold and NaCl. Comparatively for hormonal treatments like methyl jasmonate and salicylic acid, targeted metabsolites showed upto twofold accumulation. Gene expression analysis of CG biosynthetic genes also validated the accumulation pattern of the targeted metabolite. This targeted metabolites accumulation enhances plant tolerance to adverse conditions. Gene expression analysis supports this strategy, emphasizing the plant's effective stress management. These findings significantly contribute to our understanding of how plants adapt to stress through the accumulation of metabolites, thereby enhancing their tolerance to challenging environmental conditions.

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来源期刊
Journal of Plant Research
Journal of Plant Research 生物-植物科学
CiteScore
5.40
自引率
3.60%
发文量
59
审稿时长
1 months
期刊介绍: The Journal of Plant Research is an international publication that gathers and disseminates fundamental knowledge in all areas of plant sciences. Coverage extends to every corner of the field, including such topics as evolutionary biology, phylogeography, phylogeny, taxonomy, genetics, ecology, morphology, physiology, developmental biology, cell biology, molecular biology, biochemistry, biophysics, bioinformatics, and systems biology. The journal presents full-length research articles that describe original and fundamental findings of significance that contribute to understanding of plants, as well as shorter communications reporting significant new findings, technical notes on new methodology, and invited review articles.
期刊最新文献
Integrated metabolomic and transcriptomic strategies to reveal adaptive mechanisms in barley plant during germination stage under waterlogging stress. The relationships between photochemical reflectance index (PRI) and photosynthetic status in radish species differing in salinity tolerance. Extreme temperatures elicit the accumulation of cardiac glycoside and their genin units in Calotropis procera by altering the expression of transcripts involved in its biosynthesis. Application of ultra-weak photon emission imaging in plant stress assessment. New Year's greetings 2025 from the Journal of Plant Research.
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