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冬季多年生植物在变暖气候下的生存和去驯化:生理视角。

Winter survival and deacclimation of perennials under warming climate: physiological perspectives.

机构信息

Department of Food Science, Aarhus University, Aarslev, Denmark.

出版信息

Physiol Plant. 2013 Jan;147(1):75-87. doi: 10.1111/j.1399-3054.2012.01650.x. Epub 2012 Jun 23.

DOI:10.1111/j.1399-3054.2012.01650.x
PMID:22583023
Abstract

Appropriate timing and rate of cold deacclimation and the ability to reacclimate are important components of winter survival of perennials in temperate and boreal zones. In association with the progressive increase in atmospheric CO₂, temperate and boreal winters are becoming progressively milder, and temperature patterns are becoming irregular with increasing risk of unseasonable warm spells during the colder periods of plants' annual cycle. Because deacclimation is mainly driven by temperature, these changes pose a risk for untimely/premature deacclimation, thereby rendering plant tissue vulnerable to freeze-injury by a subsequent frost. Research also indicates that elevated CO₂ may directly impact deacclimation. Hence, understanding the underlying cellular mechanisms of how deacclimation and reacclimation capacity are affected by changes in environmental conditions is important to ensure winter survival and the sustainability of plant sources under changing climate. Relative to cold acclimation, deacclimation is a little studied process, but the limited evidence points to specific changes occurring in the transcriptome and proteome during deacclimation. Loss of freezing tolerance is additionally associated with substantial changes in cell/tissue-water relations and carbohydrate metabolism; the latter also impacted by temperature-driven, altered respiratory metabolism. This review summarizes recent progress in understanding the physiological mechanisms of deacclimation and how they may be impacted by climate change.

摘要

在温带和寒带地区,适当的低温脱适应时机和速率以及再适应能力是多年生植物冬季生存的重要组成部分。随着大气 CO₂浓度的逐渐增加,温带和寒带的冬季变得越来越温和,温度模式变得不规则,植物年周期的寒冷期出现不合时宜的暖冬的风险增加。由于脱适应主要受温度驱动,这些变化给过早/过早脱适应带来了风险,从而使植物组织容易受到随后的霜害的冻害。研究还表明,升高的 CO₂可能直接影响脱适应。因此,了解环境条件变化如何影响脱适应和再适应能力的潜在细胞机制对于确保植物在变化的气候下的冬季生存和可持续性至关重要。与低温驯化相比,脱适应是一个研究较少的过程,但有限的证据表明,在脱适应过程中,转录组和蛋白质组会发生特定的变化。失去抗冻性还与细胞/组织水分关系和碳水化合物代谢的实质性变化有关;后者也受到温度驱动的、改变的呼吸代谢的影响。本综述总结了理解脱适应生理机制的最新进展,以及它们可能如何受到气候变化的影响。

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