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首页> 外文期刊>Extremophiles >Cloning and expression analysis of two different LhcSR genes involved in stress adaptation in an Antarctic microalga, Chlamydomonas sp. ICE-L
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Cloning and expression analysis of two different LhcSR genes involved in stress adaptation in an Antarctic microalga, Chlamydomonas sp. ICE-L

机译:南极微藻衣藻(Chlamydomonas sp。)中两个与胁迫适应有关的LhcSR基因的克隆和表达分析。 ICE-L

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Light-harvesting complexes (LHCs) play essential roles in light capture and photoprotection. Although the functional diversity of individual LHCs in many plants has been well described, knowledge regarding the extent of this family in the majority of green algal groups is still limited. In this study, two different LhcSR genes, LhcSR1 and LhcSR2 from Chlamydomonas sp. ICE-L, were cloned from the total cDNA and characterized in response to high light (HL), low light (LL), UV-B radiation and high salinity. The lower F v/F m as well as the associated induction of non-photochemical quenching (NPQ), observed under those conditions, indicated that Chlamydomonas sp. ICE-L was under stress. Under HL stress, the expression of LhcSR1 and LhcSR2 increased rapidly from 0.5 h HL and reached a maximum after 3 h. In LL, LhcSR2 expression was up-regulated during the first 0.5 h after which it decreased, while the expression of LhcSR1 decreased gradually from the beginning of the experiment. In addition, the transcript levels of LhcSR1 and LhcSR2 increased under UV-B radiation and high salinity. These results showed that both genes were inducible and up-regulated under stress conditions. A higher NPQ was accompanied by the up-regulated LhcSR genes, suggesting that LhcSR plays a role in thermal energy dissipation. Overall, the results presented here suggest that LhcSR1 and LhcSR2 play a primary role in photoprotection in Chlamydomonas sp. ICE-L under stress conditions and provide an important basis for investigation of the adaptation mechanism of LhcSR in Antarctic green algae.
机译:采光复合物(LHC)在光捕获和光保护中起着至关重要的作用。尽管已经很好地描述了许多植物中单个LHC的功能多样性,但有关该家族在大多数绿色藻类中的程度的知识仍然有限。在这项研究中,来自衣藻的两个不同的LhcSR基因LhcSR1和LhcSR2。从总cDNA中克隆ICE-L,并对高光(HL),低光(LL),UV-B辐射和高盐度做出响应。在这些条件下观察到较低的F v / F m 以及相关的非光化学猝灭(NPQ)诱导,表明衣藻。 ICE-L承受压力。在HL胁迫下,LhcSR1和LhcSR2的表达从HL的0.5 h开始迅速增加,并在3 h后达到最大值。在LL中,LhcSR2的表达在最初的0.5小时内被上调,然后下降,而LhcSR1的表达从实验开始就逐渐下降。此外,LhcSR1和LhcSR2的转录水平在UV-B辐射和高盐度下增加。这些结果表明,两种基因在胁迫条件下均是可诱导的并且上调的。较高的NPQ伴随着LhcSR基因的上调,表明LhcSR在热能耗散中起作用。总体而言,此处给出的结果表明LhcSR1和LhcSR2在衣藻的光保护中起主要作用。 ICE-L在胁迫条件下,为研究LhcSR在南极绿藻中的适应机制提供重要依据。

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