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首页> 外文期刊>DNA and Cell Biology >Genome-Wide Identification and Evolutionary Analysis of the Fruit-Weight 2.2-Like Gene Family in Polyploid Oilseed Rape (Brassica napus L.)
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Genome-Wide Identification and Evolutionary Analysis of the Fruit-Weight 2.2-Like Gene Family in Polyploid Oilseed Rape (Brassica napus L.)

机译:多倍体油菜油菜果体2.2样基因家族的基因组型鉴定及进化分析(Brassica Napus L.)

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摘要

The fruit-weight 2.2 (fw2.2) locus, which was first described in tomato, is known for controlling up to 30% of fruit mass. The functions of its homologs, the FW2.2-like (FWL) genes, have also been documented in other diploid plants such as maize and rice. However, the evolution and contribution of the FWL gene family to seed weight in polyploid crops remain to be explored. In this study, we deployed an integrated approach to characterize the FWL gene family in the allotetraploid crop, Brassica napus. A total of 18 FWL genes were identified and designated BnFWL1-18. These were classified into three groups based on their phylogenetic relationships, which were supported by multiple sequence alignment, chromosome location, collinearity, transmembrane prediction, conserved motifs, selection pressure, protein three-dimensional (3D) structure, and the composition and position of cis-regulatory elements. Strikingly, three conserved 3D models were identified in all 18 BnFWL proteins, pertaining to the soluble N-ethylmaleimide-sensitive factor attachment protein receptor complex. Intriguingly, we found that the BnFWL12 protein was structurally similar to phosphoenolpyruvate carboxylase, which is required for photosynthesis. More importantly, we identified an "SDGE" phosphorylation motif in BnFWL12 in a search for putative casein kinase II (CK2) phosphorylation sites. Moreover, the temporospatial expression profiles in different tissues revealed that the discrete expression patterns are likely associated with the functional differentiation of BnFWL genes. Taken together, our data shed light on the evolutionary divergence of the FWL gene family in a polyploid crop, providing foundations for further functional studies.
机译:果实重量2.2(FW2.2)基因座首先在番茄中描述,以控制高达30%的水果质量。其同源物,FW2.2样(FWL)基因的功能也被记录在其他二倍体植物,如玉米和米。然而,FWL基因家族对多倍体作物种子重量的进化和贡献仍有待探索。在这项研究中,我们部署了一种综合方法,以表征在同种异体一体化作物中的FWL基因家族,芸苔属植物。共鉴定了18个FWL基因并指定了BNFWL1-18。这些基于它们的系统发育关系被分为三组,其由多序列取向,染色体位置,共线性,跨膜预测,保守的基序,选择压力,蛋白质三维(3D)结构以及CIS的组成和位置支持 - 再抑制元素。尖锐的是,在所有18个BNFWL蛋白中鉴定了三种保守的3D模型,与可溶性的N-乙基马来酰亚胺敏感因子附着蛋白受体复合物有关。有趣的是,我们发现BNFWL12蛋白在结构上类似于磷酸丙酮酸羧酸盐,这是光合作用所需的。更重要的是,我们在寻求推定的酪蛋白激酶II(CK2)磷酸化位点的搜索中,我们在BNFWL12中鉴定了“SDGE”磷酸化基序。此外,不同组织中的颞膜表达谱显示出离散表达模式可能与BNFWL基因的功能分化相关。在一起,我们的数据揭示了FWL基因家族在多倍体作物中的进化分歧,为进一步的功能研究提供基础。

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