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干燥环境中的生命:理解耐旱性及加速转化应用的路线图。

Life on the dry side: a roadmap to understanding desiccation tolerance and accelerating translational applications.

作者信息

Marks R A, Ekwealor J T B, Artur M A S, Bondi L, Boothby T C, Carmo O M S, Centeno D C, Coe K K, Dace H J W, Field S, Hutt A, Porembski S, Thalhammer A, van der Pas L, Wood A J, Alpert P, Bartels D, Boeynaems S, Datar M N, Giese T, Seidou W I, Kirchner S M, Köhler J, Kumara U G V S S, Kyung J, Lyall R, Mishler B D, Ndongmo J B V T, Otegui M S, Reddy V, Rexroth J, Tebele S M, VanBuren R, Verdier J, Vothknecht U C, Wittenberg M F, Zokov E, Oliver M J, Rhee S Y

机构信息

Plant Resilience Institute, Michigan State University, East Lansing, MI, USA.

Department of Plant Biology, University of Illinois, Urbana, IL, USA.

出版信息

Nat Commun. 2025 Apr 6;16(1):3284. doi: 10.1038/s41467-025-58656-y.

Abstract

To thrive in extreme conditions, organisms have evolved a diverse arsenal of adaptations that confer resilience. These species, their traits, and the mechanisms underlying them comprise a valuable resource that can be mined for numerous conceptual insights and applied objectives. One of the most dramatic adaptations to water limitation is desiccation tolerance. Understanding the mechanisms underlying desiccation tolerance has important potential implications for medicine, biotechnology, agriculture, and conservation. However, progress has been hindered by a lack of standardization across sub-disciplines, complicating the integration of data and slowing the translation of basic discoveries into practical applications. Here, we synthesize current knowledge on desiccation tolerance across evolutionary, ecological, physiological, and cellular scales to provide a roadmap for advancing desiccation tolerance research. We also address critical gaps and technical roadblocks, highlighting the need for standardized experimental practices, improved taxonomic sampling, and the development of new tools for studying biology in a dry state. We hope that this perspective can serve as a roadmap to accelerating research breakthroughs and unlocking the potential of desiccation tolerance to address global challenges related to climate change, food security, and health.

摘要

为了在极端条件下生存繁衍,生物体进化出了各种各样的适应性特征,使其具备了适应能力。这些物种、它们的特征以及其背后的机制构成了一种宝贵的资源,从中可以挖掘出许多概念性见解和应用目标。对水分限制最显著的适应之一是耐旱性。了解耐旱性背后的机制对医学、生物技术、农业和保护领域具有重要的潜在意义。然而,各子学科缺乏标准化阻碍了研究进展,使得数据整合变得复杂,并减缓了基础发现向实际应用的转化。在此,我们综合了进化、生态、生理和细胞层面关于耐旱性的现有知识,为推进耐旱性研究提供一份路线图。我们还探讨了关键差距和技术障碍,强调了标准化实验方法、改进分类抽样以及开发用于研究干燥状态下生物学的新工具的必要性。我们希望这一观点能成为加速研究突破、释放耐旱性潜力以应对与气候变化、粮食安全和健康相关的全球挑战的路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ba/11973199/0d35d6c5e905/41467_2025_58656_Fig1_HTML.jpg

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