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冬天即将来临?气候变化对植物应对低温的影响。

Is winter coming? Impact of the changing climate on plant responses to cold temperature.

机构信息

Centre for Research in Agricultural Genomics (CRAG) IRTA-CSIC-UAB-UB, Campus UAB, Barcelona, Spain.

National Research Council, Institute of Molecular Biology and Pathology, Rome, Italy.

出版信息

Plant Cell Environ. 2023 Nov;46(11):3175-3193. doi: 10.1111/pce.14669. Epub 2023 Jul 12.

DOI:10.1111/pce.14669
PMID:37438895
Abstract

Climate change is causing alterations in annual temperature regimes worldwide. Important aspects of this include the reduction of winter chilling temperatures as well as the occurrence of unpredicted frosts, both significantly affecting plant growth and yields. Recent studies advanced the knowledge of the mechanisms underlying cold responses and tolerance in the model plant Arabidopsis thaliana. However, how these cold-responsive pathways will readjust to ongoing seasonal temperature variation caused by global warming remains an open question. In this review, we highlight the plant developmental programmes that depend on cold temperature. We focus on the molecular mechanisms that plants have evolved to adjust their development and stress responses upon exposure to cold. Covering both genetic and epigenetic aspects, we present the latest insights into how alternative splicing, noncoding RNAs and the formation of biomolecular condensates play key roles in the regulation of cold responses. We conclude by commenting on attractive targets to accelerate the breeding of increased cold tolerance, bringing up biotechnological tools that might assist in overcoming current limitations. Our aim is to guide the reflection on the current agricultural challenges imposed by a changing climate and to provide useful information for improving plant resilience to unpredictable cold regimes.

摘要

气候变化正在导致全球年度温度模式的改变。其中重要的方面包括冬季寒冷温度的降低以及不可预测的霜冻的发生,这都对植物的生长和产量产生了重大影响。最近的研究提高了对模式植物拟南芥中冷响应和耐受机制的认识。然而,这些冷响应途径将如何适应全球变暖引起的持续季节性温度变化仍然是一个悬而未决的问题。在这篇综述中,我们强调了依赖低温的植物发育计划。我们专注于植物在暴露于寒冷时为了调整其发育和应激反应而进化出的分子机制。涵盖遗传和表观遗传方面,我们介绍了最新的见解,即可变剪接、非编码 RNA 和生物分子凝聚体的形成如何在冷响应的调节中发挥关键作用。最后,我们对有吸引力的目标进行了评论,以加速增加耐寒性的培育,提出了可能有助于克服当前限制的生物技术工具。我们的目的是引导人们对不断变化的气候给农业带来的当前挑战进行反思,并为提高植物对不可预测的寒冷环境的适应能力提供有用的信息。

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