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Characterization and Expression Analysis of ERF Genes in Fragaria vesca Suggest Different Divergences of Tandem ERF Duplicates

机译:草莓中ERF基因的表征和表达分析表明串联ERF重复序列存在不同的差异

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摘要

Ethylene-responsive factors (ERFs) play important roles in plant growth and development and in responses to abiotic stresses. However, little information was available about the ERF genes in woodland strawberry (Fragaria vesca), a genetic model plant for the Fragaria genus and Rosaceae family. In this study, 91 FveERF genes were identified, including 35 arrayed in tandem, indicating that tandem duplication is a major mechanism for the expansion of the FveERF family. According to their phylogenetic relationships with AtERFs from Arabidopsis thaliana, the tandem FveERF genes could be grouped into ancestral and lineage-specific tandem ones. The ancestral tandem FveERFs are likely derived from tandem duplications that occurred in the common ancestor of F. vesca and A. thaliana, whereas the lineage-specific ones are specifically present in the F. vesca lineage. The lineage-specific tandem FveERF duplicates are more conserved than the ancestral ones in sequence and structure. However, their expression in flowers and fruits is similarly diversified, indicating that tandem FveERFs have diverged rapidly after duplication in this respect. The lineage-specific tandem FveERFs display the same response patterns with only one exception under drought or cold, whereas the ancestral tandem ones are largely differentially expressed, suggesting that divergence of tandem FveERF expression under stress may have occurred later in the reproductive development. Our results provide evidence that the retention of tandem FveERF duplicates soon after their duplication may be related to their divergence in the regulation of reproductive development. In contrast, their further divergence in expression pattern likely contributes to plant response to abiotic stress.
机译:乙烯反应因子(ERF)在植物生长发育和对非生物胁迫的反应中起重要作用。然而,关于草莓草莓(草莓(Fragaria vesca))的ERF基因的信息很少,草莓是草莓属和蔷薇科的遗传模型植物。在这项研究中,鉴定出91个FveERF基因,包括35个串联排列的基因,表明串联重复是FveERF家族扩展的主要机制。根据它们与拟南芥AtERF的系统发育关系,可将串联的FveERF基因分为祖先和谱系特异性的串联基因。祖先串联FveERF可能源自在F.vesca和A.thaliana的共同祖先中发生的串联重复,而特定于谱系的FveERFs在F.vesca谱系中特别存在。特定于谱系的串联FveERF重复序列在序列和结构上都比祖先保守。但是,它们在鲜花和水果中的表达也有类似的变化,这表明串联的FveERF在复制后在这方面迅速分化。在干旱或寒冷条件下,特定于谱系的串联FveERF表现出相同的响应模式,只有一个例外,而祖先的串联FveERF在很大程度上表达差异,这表明在应激条件下串联FveERF表达可能在生殖发育后期发生了发散。我们的结果提供了证据,表明重复FveERF复制后的保留很快可能与它们在生殖发育调控中的差异有关。相反,它们在表达模式上的进一步差异可能有助于植物对非生物胁迫的反应。

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