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Plastoglobules in algae: A comprehensive comparative study of the presence of major structural and functional components in complex plastids

机译:藻类的原生球:复杂质体中主要结构和功能成分的存在的全面比较研究

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Plastoglobules (PG) are lipophilic droplets attached to thylakoid membranes in higher plants and green algae and are implicated in prenyl lipid biosynthesis. They might also represent a central hub for integration of plastid signals under stress and therefore the adaptation of the thylakoid membrane under such conditions. In Arabidopsis thaliana, PG contain around 30 specific proteins of which Fibrillins (FBN) and Activity of bc(1) complex kinases (ABC1K) represent the majority with respect to both number and protein mass. However, nothing is known about the presence of PG in most algal species, which are responsible for about 50% of global primary production. Therefore, we searched the genomes of publicly available algal genomes for components of PG and the associated functional network in order to predict their presence and potential evolutionary conservation of physiological functions. We could identify homologous sequences for core components of PG, like FBN and ABC1K, in most investigated algal species. Furthermore, proteins at central and interesting positions within the PG functional coexpression network were identified. Phylogenetic sequence analysis revealed diversity within FBN and ABC1K sequences among algal species with complex plastids of the red lineage and large differences compared with green lineage species. Two types of FBN were detected that differ in their isoelectric point which seems to correlate with subcellular localization. Subgroups of FBN were shared between many investigated species and modeling of their 3D-structure implied a conserved structure. FBN and ABC1K are essential structural and functional components of PG. Their occurrence in investigated algal species suggests presence of PG therein and functions in prenyl lipid metabolism and adaptation of the thylakoid membrane that are conserved during evolution. (C) 2016 Elsevier B.V. All rights reserved.
机译:原生球(PG)是附着在高等植物和绿藻类囊体膜中的亲脂性液滴,与异戊二烯脂质的生物合成有关。它们也可能代表了质体信号在压力下的整合的中心枢纽,因此在这种条件下类囊体膜的适应。在拟南芥中,PG包含约30种特定蛋白,其中以纤维蛋白(FBN)和bc(1)复杂激酶(ABC1K)的活性为代表,无论是数量还是蛋白质量均占多数。但是,对于大多数藻类物种中PG的存在一无所知,这些藻类占全球初级生产的约50%。因此,我们搜索了公众可得的藻类基因组的PG和相关功能网络的基因组,以预测它们的存在和生理功能的潜在进化保守性。在大多数调查的藻类物种中,我们可以确定PG核心成分(如FBN和ABC1K)的同源序列。此外,鉴定了PG功能共表达网络中中心和感兴趣位置的蛋白质。系统发生序列分析表明,在藻类物种中,FBN和ABC1K序列具有多样性,其中红色谱系具有复杂的质体,与绿色谱系相比差异较大。检测到两种类型的FBN,它们的等电点不同,这似乎与亚细胞定位有关。 FBN的亚组在许多研究物种之间共享,对其3D结构的建模暗示了保守结构。 FBN和ABC1K是PG必不可少的结构和功能组件。它们在研究的藻类物种中的存在表明其中存在PG,并在进化过程中保守的异戊二烯脂质代谢和类囊体膜适应中起作用。 (C)2016 Elsevier B.V.保留所有权利。

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