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首页> 外文期刊>Molecular genetics and genomics: MGG >Identification, duplication, evolution and expression analyses of caleosins in Brassica plants and Arabidopsis subspecies
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Identification, duplication, evolution and expression analyses of caleosins in Brassica plants and Arabidopsis subspecies

机译:甘蓝型油菜和拟南芥亚种中油菜素的鉴定,复制,进化和表达分析

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Caleosins are a class of Ca2+ binding proteins that appear to be ubiquitous in plants. Some of the main proteins embedded in the lipid monolayer of lipid droplets, caleosins, play critical roles in the degradation of storage lipids during germination and in lipid trafficking. Some of them have been shown to have histidine-dependent peroxygenase activity, which is believed to participate in stress responses in Arabidopsis. In the model plant Arabidopsis thaliana, caleosins have been examined extensively. However, little is known on a genome-wide scale about these proteins in other members of the Brassicaceae. In this study, 51 caleosins in Brassica plants and Arabidopsis lyrata were investigated and analyzed in silico. Among them, 31 caleosins, including 7 in A. lyrata, 11 in Brassica oleracea and 13 in Brassica napus, are herein identified for the first time. Segmental duplication was the main form of gene expansion. Alignment, motif and phylogenetic analyses showed that Brassica caleosins belong to either the H-family or the L-family with different motif structures and physicochemical properties. Our findings strongly suggest that L-caleosins are evolved from H-caleosins. Predicted phosphorylation sites were differentially conserved in H-caleosin and L-caleosins, respectively. 'RY-repeat' elements and phytohormone-related cis-elements were identified in different caleosins, which suggest diverse physiological functions. Gene structure analysis indicated that most caleosins (38 out of 44) contained six exons and five introns and their intron phases were highly conserved. Structurally integrated caleosins, such as BrCLO3-3 and BrCLO4-2, showed high expression levels and may have important roles. Some caleosins, such as BrCLO2 and BoCLO8-2, lost motifs of the calcium binding domain, proline knot, potential phosphorylation sites and haem-binding sites. Combined with their low expression, it is suggested that these caleosins may have lost function.
机译:Caleosins是一类Ca2 +结合蛋白,在植物中似乎无处不在。嵌入脂质滴的脂质单层中的一些主要蛋白质,即钙曙红,在发芽过程中储存脂质的降解和脂质运输中起关键作用。已显示其中一些具有组氨酸依赖性过氧化酶活性,据信该活性参与拟南芥中的应激反应。在模型植物拟南芥中,已经对钙黄绿素进行了广泛的研究。然而,关于十字花科其他成员中的这些蛋白质,在全基因组范围内了解甚少。在这项研究中,对芸苔属植物和拟南芥中的51种钙黄绿素进行了计算机分析。其中,首次鉴定出31种钙黄绿素,其中包括在拟南芥中的7种,在甘蓝中的11种和在甘蓝型油菜中的13种。节段重复是基因扩增的主要形式。比对,基序和系统发育分析表明,甘蓝型油菜素属于H科或L科,具有不同的基序结构和理化特性。我们的发现强烈表明,L-caleosins是从H-caleosins进化而来的。预测的磷酸化位点分别在H-caleosin和L-caleosins中差异保守。在不同的钙黄绿素中鉴定出“ RY-重复”元素和植物激素相关的顺式元素,提示其多种生理功能。基因结构分析表明,大多数钙黄绿素(44个中的38个)含有6个外显子和5个内含子,它们的内含子相高度保守。结构整合的caleosins,例如Br​​CLO3-3和BrCLO4-2,显示出高表达水平,可能具有重要作用。一些钙黄绿素,例如Br​​CLO2和BoCLO8-2,失去了钙结合结构域,脯氨酸结,潜在的磷酸化位点和血红素结合位点的基序。结合它们的低表达,提示这些钙粘蛋白可能丧失了功能。

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