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首页> 外文期刊>Journal of Plant Physiology >Enhanced expression of Rubisco activase splicing variants differentially affects Rubisco activity during low temperature treatment in Lolium perenne
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Enhanced expression of Rubisco activase splicing variants differentially affects Rubisco activity during low temperature treatment in Lolium perenne

机译:Rubisco激活酶剪接变体的增强表达差异地影响多年生黑麦草的Rubisco活性

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摘要

Alternative splicing of the Rubisco activase gene was shown to be a point for optimization of photosynthetic carbon assimilation. It can be expected to be a stress-regulated event that depends on plant freezing tolerance. The aim of the study was to examine the relationships among Rubisco activity, the expression of two Rubisco activase splicing variants and photoacclimation to low temperature. The experiment was performed on two Lolium perenne genotypes with contrasting levels of freezing tolerance. The study investigated the effect of pre-hardening (15 degrees C) and cold acclimation (4 degrees C) on net photosynthesis, photosystem II photochemical activity, Rubisco activity and the expression of two splicing variants of the Rubisco activase gene. The results showed an induction of Rubisco activity at both 15 degrees C and 4 degrees C only in a highly freezing-tolerant genotype. The enhanced Rubisco activity after pre-hardening corresponded to increased expression of the splicing variant representing the large isoform, while the increase in Rubisco activity during cold acclimation was due to the activation of both transcript variants. These boosts in Rubisco activity also corresponded to an activation of non-photochemical mechanism of photoacclimation induced at low temperature exclusively in the highly freezing-tolerant genotype. In conclusion, enhanced expression of Rubisco activase splicing variants caused an increase in Rubisco activity during pre-hardening and cold acclimation in the more freezing-tolerant Lolium perenne genotype. The induction of the transcript variant representing the large isoform may be an important element of increasing the carbon assimilation rate supporting the photochemical mechanism of photosynthetic acclimation to cold. (C) 2016 Elsevier GmbH. All rights reserved.
机译:Rubisco激活酶基因的选择性剪接被证明是优化光合碳同化的一个关键点。可以预期这是一个取决于植物抗冻性的胁迫调控事件。这项研究的目的是检查Rubisco活性,两个Rubisco激活酶剪接变体的表达以及对低温的光适应之间的关系。该实验是在两种黑麦草基因型上进行的,它们具有不同的耐冻性水平。该研究调查了预硬化(15摄氏度)和冷驯化(4摄氏度)对净光合作用,光系统II光化学活性,Rubisco活性以及Rubisco活化酶基因两个剪接变体表达的影响。结果表明,仅在高度耐冷冻的基因型中,在15℃和4℃下都诱导了Rubisco活性。预硬化后增强的Rubisco活性对应于代表大同种型的剪接变体的表达增加,而冷驯化过程中Rubisco活性的增加归因于两个转录物变体的激活。 Rubisco活性的这些增强也对应于仅在高度耐寒的基因型中在低温下诱导的光致适应的非光化学机制的激活。总之,在更耐冻的黑麦草基因型中,Rubisco激活酶剪接变体的增强表达导致预硬化和冷驯化期间Rubisco活性增加。代表大同工型的转录物变体的诱导可能是增加碳同化率的重要因素,从而支持了光合适应寒冷的光化学机制。 (C)2016 Elsevier GmbH。版权所有。

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