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南极维管植物的生态生理学:极端环境抗性机制及其在应对气候变化中的重要性的最新进展

Ecophysiology of Antarctic Vascular Plants: An Update on the Extreme Environment Resistance Mechanisms and Their Importance in Facing Climate Change.

作者信息

Ramírez Constanza F, Cavieres Lohengrin A, Sanhueza Carolina, Vallejos Valentina, Gómez-Espinoza Olman, Bravo León A, Sáez Patricia L

机构信息

Laboratorio Cultivo de Tejidos Vegetales, Centro de Biotecnología, Facultad de Ciencias Forestales, Universidad de Concepción, Concepción 4030000, Chile.

Instituto de Ecología y Biodiversidad-IEB, Las Palmeras 3425, Ñuñoa, Santiago 7800003, Chile.

出版信息

Plants (Basel). 2024 Feb 3;13(3):449. doi: 10.3390/plants13030449.

Abstract

Antarctic flowering plants have become enigmatic because of their unique capability to colonize Antarctica. It has been shown that there is not a single trait that makes and so special, but rather a set of morphophysiological traits that coordinately confer resistance to one of the harshest environments on the Earth. However, both their capacity to inhabit Antarctica and their uniqueness remain not fully explained from a biological point of view. These aspects have become more relevant due to the climatic changes already impacting Antarctica. This review aims to compile and update the recent advances in the ecophysiology of Antarctic vascular plants, deepen understanding of the mechanisms behind their notable resistance to abiotic stresses, and contribute to understanding their potential responses to environmental changes. The uniqueness of Antarctic plants has prompted research that emphasizes the role of leaf anatomical traits and cell wall properties in controlling water loss and CO exchange, the role of Rubisco kinetics traits in facilitating efficient carbon assimilation, and the relevance of metabolomic pathways in elucidating key processes such as gas exchange, nutrient uptake, and photoprotection. Climate change is anticipated to have significant and contrasting effects on the morphophysiological processes of Antarctic species. However, more studies in different locations outside Antarctica and using the latitudinal gradient as a natural laboratory to predict the effects of climate change are needed. Finally, we raise several questions that should be addressed, both to unravel the uniqueness of Antarctic vascular species and to understand their potential responses to climate change.

摘要

南极开花植物因其在南极洲定殖的独特能力而变得神秘莫测。研究表明,并非单一性状使它们如此特别,而是一系列形态生理性状协同赋予了它们对地球上最恶劣环境之一的抗性。然而,从生物学角度来看,它们在南极洲生存的能力及其独特性仍未得到充分解释。由于气候变化已经对南极洲产生影响,这些方面变得更加重要。本综述旨在汇总和更新南极维管植物生态生理学的最新进展,加深对其显著抗非生物胁迫背后机制的理解,并有助于了解它们对环境变化的潜在响应。南极植物的独特性促使研究强调叶片解剖特征和细胞壁特性在控制水分流失和二氧化碳交换中的作用、核酮糖-1,5-二磷酸羧化酶动力学特征在促进高效碳同化中的作用,以及代谢组学途径在阐明气体交换、养分吸收和光保护等关键过程中的相关性。预计气候变化将对南极物种的形态生理过程产生重大且截然不同的影响。然而,需要在南极洲以外的不同地点开展更多研究,并利用纬度梯度作为自然实验室来预测气候变化的影响。最后,我们提出了几个需要解决的问题,以便揭示南极维管物种的独特性,并了解它们对气候变化的潜在响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13d9/10857404/4fa033e42a03/plants-13-00449-g001.jpg

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