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莱茵衣藻中与碳浓缩机制诱导相关基因的表达分析

Expression analysis of genes associated with the induction of the carbon-concentrating mechanism in Chlamydomonas reinhardtii.

作者信息

Yamano Takashi, Miura Kenji, Fukuzawa Hideya

机构信息

Graduate School of Biostudies, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Plant Physiol. 2008 May;147(1):340-54. doi: 10.1104/pp.107.114652. Epub 2008 Mar 5.

Abstract

Acclimation to varying CO2 concentrations and light intensities is associated with the monitoring of environmental changes by controlling genetic and physiological responses through CO2 and light signal transduction. While CO2 and light signals are indispensable for photosynthesis, and these environmental factors have been proposed as strongly associated with each other, studies linking these components are largely limited to work on higher plants. In this study, we examined the physiological characteristics of a green alga, Chlamydomonas reinhardtii, exposed to various light intensities or CO2 concentrations. Acclimation to CO2-limiting conditions by Chlamydomonas requires the induction of a carbon-concentrating mechanism (CCM) to allow the uptake of inorganic carbon (Ci) and increase the affinity for Ci. We revealed that the induction of the CCM is not solely dependent on absolute environmental Ci concentrations but is also affected by light intensity. Using a cDNA array containing 10,368 expressed sequence tags, we also obtained global expression profiles related to the physiological responses. The induction of several CCM-associated genes was strongly affected by high light as well as CO2 concentrations. We identified novel candidates for Ci transporters and CO2-responsive regulatory factors whose expression levels were significantly increased during the induction of the CCM.

摘要

通过二氧化碳和光信号转导控制遗传和生理反应来监测环境变化,这与适应不同的二氧化碳浓度和光照强度有关。虽然二氧化碳和光信号对于光合作用不可或缺,并且这些环境因素被认为彼此密切相关,但将这些成分联系起来的研究主要局限于高等植物。在本研究中,我们检测了莱茵衣藻这种绿藻在暴露于各种光照强度或二氧化碳浓度下的生理特征。莱茵衣藻适应二氧化碳限制条件需要诱导碳浓缩机制(CCM),以实现无机碳(Ci)的吸收并增加对Ci的亲和力。我们发现,CCM的诱导不仅取决于环境中Ci的绝对浓度,还受光照强度的影响。使用包含10368个表达序列标签的cDNA阵列,我们还获得了与生理反应相关的全局表达谱。几个与CCM相关的基因的诱导受到高光以及二氧化碳浓度的强烈影响。我们鉴定出了Ci转运蛋白和二氧化碳响应调节因子的新候选基因,其表达水平在CCM诱导过程中显著增加。

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