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Genome-wide analysis indicates diverse physiological roles of the turnip (Brassica rapa var. rapa) oligopeptide transporters gene family

机译:全基因组分析表明芜菁(Brassica rapa var。rapa)寡肽转运蛋白基因家族的多种生理作用

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摘要

Oligopeptide transporters (OPTs) encode integral membrane-localized proteins and have a broad range of substrate transport capabilities. Here, 28 BrrOPT genes were identified in the turnip. Phylogenetic analyses revealed two well-supported clades in the OPT family, containing 15 BrrOPTs and 13 BrrYSLs. The exon/intron structure of OPT clade are conserved but the yellow stripe-like (YSL) clade was different. The exon/intron of the YSL clade possesses structural differences, whereas the YSL class motifs structure are conserved. The OPT genes are distributed unevenly among the chromosomes of the turnip genome. Phylogenetic and chromosomal distribution analyses revealed that the expansion of the OPT gene family is mainly attributable to segmental duplication. For the expression profiles at different developmental stages, a comprehensive analysis provided insights into the possible functional divergence among members of the paralog OPT gene family. Different expression levels under a variety of ion deficiencies also indicated that the OPT family underwent functional divergence during long-term evolution. Furthermore, BrrOPT8.1, BrrYSL1.2, BrrYSL1.3, BrrYSL6 and BrrYSL9 responded to Fe(II) treatments and BrrYSL7 responded to calcium treatments, BrrYSL6 responded to multiple treatments in root, suggesting that turnip OPTs may be involved in mediating cross-talk among different ion deficiencies. Our data provide important information for further functional dissection of BrrOPTs, especially in transporting metal ions and nutrient deficiency stress adaptation.
机译:寡肽转运蛋白(OPT)编码完整的膜定位蛋白,并具有广泛的底物转运能力。在此,在萝卜中鉴定出28个BrrOPT基因。系统发育分析显示,OPT家族中有两个进化支配的进化枝,包含15个BrrOPT和13个BrrYSL。 OPT进化枝的外显子/内含子结构是保守的,但黄色条纹状(YSL)进化枝是不同的。 YSL进化枝的外显子/内含子具有结构差异,而YSL类基序结构是保守的。 OPT基因在萝卜基因组的染色体之间分布不均。系统发育和染色体分布分析表明,OPT基因家族的扩展主要归因于节段重复。对于不同发育阶段的表达概况,全面的分析提供了对旁系同源OPT基因家族成员之间可能的功能差异的见解。在各种离子缺陷下的不同表达水平也表明,OPT家族在长期进化过程中发生了功能差异。此外,BrrOPT8.1,BrrYSL1.2,BrrYSL1.3,BrrYSL6和BrrYSL9对Fe(II)处理有反应,而BrrYSL7对钙处理有反应,BrrYSL6对根的多种处理有反应,这表明芜菁OPTs可能参与介导交叉讨论不同的离子缺陷。我们的数据为进一步分析BrrOPT提供重要信息,尤其是在运输金属离子和营养缺乏胁迫适应方面。

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