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首页> 外文期刊>Genomics >Comparative analysis of the P-type ATPase gene family in seven Rosaceae species and an expression analysis in pear (Pyrus bretschneideri Rehd.)
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Comparative analysis of the P-type ATPase gene family in seven Rosaceae species and an expression analysis in pear (Pyrus bretschneideri Rehd.)

机译:七种枸杞物种P型ATP酶基因家族的对比分析及梨(Pyrus Bretschneideri Rehd)的表达分析。

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摘要

P-type ATPases are integral membrane transporters that play important roles in transmembrane transport in plants. However, a comprehensive analysis of the P-type ATPase gene family has not been conducted in Chinese white pear (Pyrus bretschneideri) or other Rosaceae species. Here, we identified 419 P-type ATPase genes from seven Rosaceae species (Pyrus bretschneideri, Malus domestica, Prunus persica, Fragaria vesca, Prunus mume, Pyrus communis and Pyrus betulifolia). Structural and phylogenetic analyses revealed that P-type ATPase genes can be divided into five subfamilies. Different subfamilies have different conserved motifs and cis-acting elements, which may lead to functional divergence within one gene family. Dispersed duplication and whole-genome duplication may play critical roles in the expansion of the P-type ATPase family. Purifying selection was the primary force driving the evolution of P-type ATPase family genes. Based on the dynamic transcriptome analysis and transient transformation of Chinese white pear fruit, Pbr029767.1 in the P-3A subfamily were found to be associated with malate accumulation during pear fruit development. Using a co-expression network, we identified several transcription factors that may have regulatory relationships with the P-type ATPase gene family. Overall, this study lays a solid foundation for understanding the evolution and functions of P-type ATPase genes in Chinese white pear and six other Rosaceae species.
机译:p型ATP酶是整体膜转运蛋白,其在植物中发挥重要作用。然而,对P型ATPase基因家族的综合分析尚未在中国白梨(Pyrus Bretschneideri)或其他蔷薇科物种中进行。在这里,我们鉴定了来自七种葡萄球菌(Pyrus Bretschneideri,Malus Domestica,Prunus Persica,Fragaria Vesca,Prunus Mume,Pyrus Communis和Pyrus betulifolia)的419个型ATP酶基因。结构和系统发育分析显示,p型ATP酶基因可分为五种亚壳。不同的亚壳具有不同的保守基序和顺式作用元素,其可能导致一个基因家族内的功能性差异。分散的重复和全基因组重复可能在P型ATP酶系列的扩展中发挥关键作用。净化选择是驱动p型AtPase家族基因的演变的主要力。基于中国白梨果的动态转录组分析和瞬态转化,P-3A亚家族中的PBR029767.1与梨果发育过程中的母体积累有关。使用共表达网络,我们鉴定了几种可能具有与p型ATPase基因家族的调节关系的转录因子。总体而言,本研究为了解中国白梨和六种其他枸杞物种的p型Atpase基因的进化和功能为稳定的基础。

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