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使叶绿体变硬以保护植物。

Harden the chloroplast to protect the plant.

机构信息

CRA-Genomics Research Centre, 29017 Fiorenzuola d'Arda-PC, Italy.

出版信息

Physiol Plant. 2013 Jan;147(1):55-63. doi: 10.1111/j.1399-3054.2012.01689.x. Epub 2012 Oct 1.

Abstract

The chloroplast is the central switch of the plant's response to cold and light stress. The ability of many plant species to develop a cold tolerant phenotype is dependent on the presence of light and photosynthetic activity during low-temperature growth. Light exposure at low temperature stimulates an over-reduction of the plastoquinone pool as well as the accumulation of reactive oxygen species, and both metabolic conditions generate a retrograde signal controlling nuclear gene expression. At the same time the chloroplast is the target of many cold acclimation processes which are the results of the chloroplast-nucleus cross-talk. Often, the extent of cold acclimation of the chloroplast is tightly correlated with the overall plant tolerance to chilling and freezing temperatures, a finding suggesting that the chloroplast cold acclimation could be the rate limiting factor in the adaptation to low temperature.

摘要

叶绿体是植物对寒冷和光胁迫反应的中心开关。许多植物物种形成耐寒表型的能力取决于低温生长过程中光照和光合作用的存在。低温下的光照会刺激质体醌库的过度还原以及活性氧的积累,这两种代谢条件都会产生一个逆行信号,控制核基因表达。同时,叶绿体是许多低温驯化过程的目标,这些过程是叶绿体-核交叉对话的结果。通常,叶绿体的低温驯化程度与植物对冷胁迫和冻害温度的整体耐受性密切相关,这一发现表明,叶绿体的低温驯化可能是适应低温的限速因素。

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