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启动耐热性:为适应气候的作物释放热弹性。

Priming thermotolerance: unlocking heat resilience for climate-smart crops.

作者信息

Chopra Priyanka, Sapia Natalia, Karami Omid, Kumar Pawan, Honys David, Colombo Lucia, Mendes Marta, Benhamed Moussa, Fotopoulos Vasileios, Lieberman-Lazarovich Michal, Mueller-Roeber Bernd, Kaiserli Eirini, Hafidh Said, Fragkostefanakis Sotirios

机构信息

Institute of Biology Leiden, Leiden University, Leiden, The Netherlands.

Institute of Molecular Biosciences, Goethe-Universitat Frankfurt am Main, Frankfurt am Main, Germany.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2025 May 29;380(1927):20240234. doi: 10.1098/rstb.2024.0234.

Abstract

Rising temperatures and heat waves pose a substantial threat to crop productivity by disrupting essential physiological and reproductive processes. While plants have a genetically inherited capacity to acclimate to high temperatures, the thermotolerance capacity of many crops remains limited. This limitation leads to yield losses, which are further intensified by the increasing intensity of climate change. In this review, we explore how thermopriming enhances plant resilience by preparing plants for future heat stress (HS) events and summarize the mechanisms underlying the memory of HS (thermomemory) in different plant tissues and organs. We also discuss recent advances in priming agents, including chemical, microbial and physiological interventions, and their application strategies to extend thermotolerance beyond inherent genetic capacity. Additionally, this review examines how integrating priming strategies with genetic improvements, such as breeding and genome editing for thermotolerance traits, provides a holistic solution to mitigate the impact of climate change on agriculture. By combining these approaches, we propose a framework for developing climate-resilient crops and ensuring global food security in the face of escalating environmental challenges.This article is part of the theme issue 'Crops under stress: can we mitigate the impacts of climate change on agriculture and launch the 'Resilience Revolution'?'.

摘要

气温上升和热浪通过扰乱基本的生理和生殖过程,对作物生产力构成重大威胁。虽然植物具有遗传继承的适应高温的能力,但许多作物的耐热能力仍然有限。这种限制导致产量损失,而气候变化强度的增加进一步加剧了这种损失。在这篇综述中,我们探讨了热激预处理如何通过使植物为未来的热胁迫事件做好准备来增强植物的恢复力,并总结了不同植物组织和器官中热胁迫记忆(热记忆)的潜在机制。我们还讨论了预处理剂的最新进展,包括化学、微生物和生理干预,以及它们将耐热性扩展到固有遗传能力之外的应用策略。此外,本综述研究了如何将预处理策略与遗传改良(如耐热性状的育种和基因组编辑)相结合,为减轻气候变化对农业的影响提供全面的解决方案。通过结合这些方法,我们提出了一个框架,用于培育适应气候变化的作物,并在不断升级的环境挑战面前确保全球粮食安全。本文是主题为“胁迫下的作物:我们能否减轻气候变化对农业的影响并发起‘恢复力革命’?”的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10d1/12121387/78913688320a/rstb.2024.0234.f001.jpg

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