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Genome-Wide Analysis of the Sucrose Synthase Gene Family in Grape ( Vitis vinifera ): Structure, Evolution, and Expression Profiles

机译:葡萄蔗糖合酶基因家族的全基因组分析:结构,演化和表达谱。

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Sucrose synthase (SS) is widely considered as the key enzyme involved in the plant sugar metabolism that is critical to plant growth and development, especially quality of the fruit. The members of SS gene family have been identified and characterized in multiple plant genomes. However, detailed information about this gene family is lacking in grapevine ( Vitis vinifera L.). In this study, we performed a systematic analysis of the grape ( V. vinifera ) genome and reported that there are five S S genes (VvSS 1– 5) in the grape genome. Comparison of the structures of grape SS genes showed high structural conservation of grape S S genes, resulting from the selection pressures during the evolutionary process. The segmental duplication of grape SS genes contributed to this gene family expansion. The syntenic analyses between grape and soybean ( Glycine max ) demonstrated that these genes located in corresponding syntenic blocks arose before the divergence of grape and soybean. Phylogenetic analysis revealed distinct evolutionary paths for the grape S S genes. VvSS1/VvSS5, VvSS2/VvSS3 and VvSS4 originated from three ancient S S genes, which were generated by duplication events before the split of monocots and eudicots. Bioinformatics analysis of publicly available microarray data, which was validated by quantitative real-time reverse transcription PCR (qRT-PCR), revealed distinct temporal and spatial expression patterns of Vv SS genes in various tissues, organs and developmental stages, as well as in response to biotic and abiotic stresses. Taken together, our results will be beneficial for further investigations into the functions of S S gene in the processes of grape resistance to environmental stresses.
机译:蔗糖合酶(SS)被广泛认为是参与植物糖代谢的关键酶,对植物的生长发育尤其是果实的品质至关重要。 SS基因家族的成员已经在多种植物基因组中得到鉴定和表征。但是,葡萄(Vitis vinifera L.)中缺少有关此基因家族的详细信息。在这项研究中,我们对葡萄(V. vinifera)基因组进行了系统分析,并报告了葡萄基因组中有5个S S基因(VvSS 1-5)。葡萄SS基因结构的比较表明,由于进化过程中的选择压力,葡萄SS基因的结构高度保守。葡萄SS基因的节段重复促进了该基因家族的扩展。葡萄和大豆(Glycine max)之间的同义分析表明,位于相应同义区块中的这些基因是在葡萄和大豆发散之前产生的。系统发育分析揭示了葡萄S S基因的独特进化途径。 VvSS1 / VvSS5,VvSS2 / VvSS3和VvSS4起源于三个古老的S S基因,它们是由单子叶植物和双子叶植物分裂之前的复制事件产生的。公开的微阵列数据的生物信息学分析已通过定量实时逆转录PCR(qRT-PCR)验证,揭示了Vv SS基因在不同组织,器官和发育阶段以及应答中的独特时空表达模式对生物和非生物的压力。两者合计,我们的结果将有助于进一步研究S S基因在葡萄抗环境胁迫过程中的功能。

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