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转录调控在生长素介导的非生物胁迫响应中的作用。

Role of transcriptional regulation in auxin-mediated response to abiotic stresses.

作者信息

Marzi Davide, Brunetti Patrizia, Saini Shashank Sagar, Yadav Gitanjali, Puglia Giuseppe Diego, Dello Ioio Raffaele

机构信息

Research Institute on Terrestrial Ecosystems-National Research Council (IRET-CNR), Montelibretti, Italy.

National Biodiversity Future Center (NBFC), Palermo, Italy.

出版信息

Front Genet. 2024 Apr 24;15:1394091. doi: 10.3389/fgene.2024.1394091. eCollection 2024.

Abstract

Global climate change (GCC) is posing a serious threat to organisms, particularly plants, which are sessile. Drought, salinity, and the accumulation of heavy metals alter soil composition and have detrimental effects on crops and wild plants. The hormone auxin plays a pivotal role in the response to stress conditions through the fine regulation of plant growth. Hence, rapid, tight, and coordinated regulation of its concentration is achieved by auxin modulation at multiple levels. Beyond the structural enzymes involved in auxin biosynthesis, transport, and signal transduction, transcription factors (TFs) can finely and rapidly drive auxin response in specific tissues. Auxin Response Factors (ARFs) such as the ARF4, 7, 8, 19 and many other TF families, such as WRKY and MADS, have been identified to play a role in modulating various auxin-mediated responses in recent times. Here, we review the most relevant and recent literature on TFs associated with the regulation of the biosynthetic, transport, and signalling auxin pathways and miRNA-related feedback loops in response to major abiotic stresses. Knowledge of the specific role of TFs may be of utmost importance in counteracting the effects of GCC on future agriculture and may pave the way for increased plant resilience.

摘要

全球气候变化(GCC)正对生物,尤其是固着生长的植物构成严重威胁。干旱、盐碱化和重金属积累会改变土壤成分,并对农作物和野生植物产生不利影响。植物激素生长素通过对植物生长的精细调节,在应对胁迫条件中发挥关键作用。因此,通过多层次的生长素调节,实现了其浓度的快速、严格和协调调节。除了参与生长素生物合成、运输和信号转导的结构酶外,转录因子(TFs)可以在特定组织中精细而快速地驱动生长素反应。近年来,已确定生长素反应因子(ARFs)如ARF4、7、8、19以及许多其他转录因子家族,如WRKY和MADS,在调节各种生长素介导的反应中发挥作用。在此,我们综述了与生长素生物合成、运输和信号通路调控相关的转录因子以及响应主要非生物胁迫的miRNA相关反馈环的最新相关文献。了解转录因子的具体作用对于对抗全球气候变化对未来农业的影响可能至关重要,并可能为提高植物的抗逆性铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c70/11076734/04e9250079bd/fgene-15-1394091-g001.jpg

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