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首页> 外文期刊>BMC Plant Biology >Genome-wide comparative analysis of the BAHD superfamily in seven Rosaceae species and expression analysis in pear ( Pyrus bretschneideri )
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Genome-wide comparative analysis of the BAHD superfamily in seven Rosaceae species and expression analysis in pear ( Pyrus bretschneideri )

机译:七种枸杞物种中BAHD超家族的基因组比较分析及梨(Pyrus Bretschneideri)的表达分析

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The BAHD acyltransferase superfamily exhibits various biological roles in plants, including regulating fruit quality, catalytic synthesizing of terpene, phenolics and esters, and improving stress resistance. However, the copy numbers, expression characteristics and associations with fruit aroma formation of the BAHD genes remain unclear. In total, 717 BAHD genes were obtained from the genomes of seven Rosaceae, (Pyrus bretschneideri, Malus domestica, Prunus avium, Prunus persica, Fragaria vesca, Pyrus communis and Rubus occidentalis). Based on the detailed phylogenetic analysis and classifications in model plants, we divided the BAHD family genes into seven groups, I-a, I-b, II-a, II-b, III-a, IV and V. An inter-species synteny analysis revealed the ancient origin of BAHD superfamily with 78 syntenic gene pairs were detected among the seven Rosaceae species. Different types of gene duplication events jointly drive the expansion of BAHD superfamily, and purifying selection dominates the evolution of BAHD genes supported by the small Ka/Ks ratios. Based on the correlation analysis between the ester content and expression levels of BAHD genes at different developmental stages, four candidate genes were selected for verification as assessed by qRT-PCR. The result implied that Pbr020016.1, Pbr019034.1, Pbr014028.1 and Pbr029551.1 are important candidate genes involved in aroma formation during pear fruit development. We have thoroughly identified the BAHD superfamily genes and performed a comprehensive comparative analysis of their phylogenetic relationships, expansion patterns, and expression characteristics in seven Rosaceae species, and we also obtained four candidate genes involved in aroma synthesis in pear fruit. These results provide a theoretical basis for future studies of the specific biological functions of BAHD superfamily members and the improvement of pear fruit quality.
机译:BAHD酰基转移酶超家族在植物中表现出各种生物作用,包括调节果实质量,催化合成萜烯,酚类和酯,提高应力抗性。然而,拷贝数,表达特征和与果香基因形成的果香组织仍然尚不清楚。总共有717根草基因是从七个Rosaceae的基因组获得(Pyrus Bretschneideri,Malus Domestica,Prunus Avium,Prunus,Fragaria Vesca,Pyrus Communis和Rubus Occidental)。基于模型植物的详细系统发育分析和分类,我们将BAHD家族基因分成七组,IA,IB,II-A,II-B,III-A,IV和V.群间同步分析揭示了在七种Rosaceae物种中检测到与78个同学基因对的古代突出的Superfamily。不同类型的基因复制事件共同驱动了BAHD超家族的扩展,净化选择占据了小Ka / Ks比率支持的BAHD基因的演变。基于不同发育阶段的酯含量和酯含量和表达水平的相关性分析,选择四种候选基因进行QRT-PCR评估的验证。结果暗示PBR020016.1,PBR019034.1,PBR014028.1和PBR029551.1是梨果发育过程中涉及香气形成的重要候选基因。我们已经彻底鉴定了七种枸杞物种的系统发育关系,膨胀模式和表达特征的综合比较分析,我们还获得了参与梨果芳香合成的四种候选基因。这些结果为BAHD超家族成员的特定生物功能和梨果实质量的提高提供了一种理论依据。

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