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Divergence of the bZIP Gene Family in Strawberry, Peach, and Apple Suggests Multiple Modes of Gene Evolution after Duplication

机译:草莓,桃和苹果中bZIP基因家族的差异表明复制后基因进化的多种模式

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The basic leucine zipper (bZIP) transcription factors are the most diverse members of dimerizing transcription factors. In the present study, 50, 116, and 47 bZIP genes were identified in Malus domestica (apple), Prunus persica (peach), and Fragaria vesca (strawberry), respectively. Species-specific duplication was the main contributor to the large number of bZIPs observed in apple. After WGD in apple genome, orthologous bZIP genes corresponding to strawberry on duplicated regions in apple genome were retained. However, in peach ancestor, these syntenic regions were quickly lost or deleted. Maybe the positive selection contributed to the expansion of clade S to adapt to the development and environment stresses. In addition, purifying selection was mainly responsible for bZIP sequence-specific DNA binding. The analysis of orthologous pairs between chromosomes indicates that these orthologs derived from one gene duplication located on one of the nine ancient chromosomes in the Rosaceae. The comparative analysis of bZIP genes in three species provides information on the evolutionary fate of bZIP genes in apple and peach after they diverged from strawberry.
机译:基本的亮氨酸拉链(bZIP)转录因子是二聚化转录因子中最多样化的成员。在本研究中,分别在家蝇(苹果),桃(桃)和草莓(草莓)中鉴定出50、116和47个bZIP基因。特定于物种的重复是导致苹果中大量bZIP发生的主要因素。在苹果基因组中进行WGD后,保留了与苹果基因组重复区域中的草莓对应的直系同源bZIP基因。但是,在桃子祖先中,这些同语区域很快丢失或删除。积极的选择也许有助于进化枝S的扩展,以适应发展和环境压力。此外,纯化选择主要负责bZIP序列特异性DNA结合。对染色体之间的直系同源物对的分析表明,这些直系同源物源自位于蔷薇科的九个古代染色体之一上的一个基因重复。通过对三种物种中bZIP基因的比较分析,可以了解苹果和桃子中bZIP基因从草莓中分离后的进化命运。

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