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在对照和盐胁迫条件下,组成型根系异戊二烯排放对根系表型和生理的影响。

The effect of constitutive root isoprene emission on root phenotype and physiology under control and salt stress conditions.

作者信息

Bellucci Manuel, Mostofa Mohammad Golam, Weraduwage Sarathi M, Xu Yuan, Abdelrahman Mostafa, De Gara Laura, Loreto Francesco, Sharkey Thomas D

机构信息

Department of Energy Plant Research Laboratory Michigan State University East Lansing Michigan USA.

Department of Science and Technology for Humans and the Environment Università Campus Bio-Medico di Roma Rome Italy.

出版信息

Plant Direct. 2024 Jul 6;8(7):e617. doi: 10.1002/pld3.617. eCollection 2024 Jul.

Abstract

Isoprene, a volatile hydrocarbon, is typically emitted from the leaves of many plant species. Given its well-known function in plant growth and defense aboveground, we examined its effects on root physiology. We used isoprene-emitting (IE) lines and a non-emitting (NE) line of Arabidopsis and investigated their performance by analyzing root phenotype, hormone levels, transcriptome, and metabolite profiles under both normal and salt stress conditions. We show that IE lines emitted tiny amounts of isoprene from roots and showed an increased root/shoot ratio compared with NE line. Isoprene emission exerted a noteworthy influence on hormone profiles related to plant growth and stress response, promoting root development and salt-stress resistance. Methyl erythritol 4-phosphate pathway metabolites, precursors of isoprene and hormones, were higher in the roots of IE lines than in the NE line. Transcriptome data indicated that the presence of isoprene increased the expression of key genes involved in hormone metabolism/signaling. Our findings reveal that constitutive root isoprene emission sustains root growth under saline conditions by regulating and/or priming hormone biosynthesis and signaling mechanisms and expression of key genes relevant to salt stress defense.

摘要

异戊二烯是一种挥发性碳氢化合物,通常由许多植物物种的叶片释放。鉴于其在地上部植物生长和防御中的知名功能,我们研究了其对根系生理的影响。我们使用了拟南芥的异戊二烯释放(IE)系和非释放(NE)系,并通过分析正常和盐胁迫条件下的根系表型、激素水平、转录组和代谢物谱来研究它们的表现。我们发现,与NE系相比,IE系从根部释放少量异戊二烯,且根/茎比增加。异戊二烯的释放对与植物生长和胁迫反应相关的激素谱产生了显著影响,促进了根系发育和耐盐性。2-C-甲基-D-赤藓糖醇-4-磷酸途径代谢物,即异戊二烯和激素的前体,在IE系根部比NE系中含量更高。转录组数据表明,异戊二烯的存在增加了参与激素代谢/信号传导的关键基因的表达。我们的研究结果表明,组成型根系异戊二烯释放通过调节和/或启动激素生物合成、信号传导机制以及与盐胁迫防御相关的关键基因的表达,在盐胁迫条件下维持根系生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c449/11227114/7f1b061f53ea/PLD3-8-e617-g001.jpg

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