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番茄液泡转化酶直系同源基因:番茄植株(番茄属番茄组)的种间变异性

TAI vacuolar invertase orthologs: the interspecific variability in tomato plants (Solanum section Lycopersicon).

作者信息

Slugina M A, Shchennikova A V, Kochieva E Z

机构信息

Institute of Bioengineering, Research Center of Biotechnology, Russian Academy of Sciences, Leninsky Ave. 33, bld. 2, Moscow, 119071, Russia.

Lomonosov Moscow State University, GSP-1, Leninskie Gory, Moscow, 119991, Russia.

出版信息

Mol Genet Genomics. 2017 Oct;292(5):1123-1138. doi: 10.1007/s00438-017-1336-y. Epub 2017 Jun 20.

Abstract

Understanding the genetic mechanisms underlying carbohydrate metabolism can promote the development of biotechnological advances in fruit plants. The flesh tomato fruit represents an ideal system for examining the role of sucrose cleavage enzymes in fruit development, and wild tomato species differing in storage sugars serve as an excellent research material for this purpose. Plant vacuolar invertase is a key enzyme of sucrose metabolism in the sink organs. In the present study, we identified complete gene sequences encoding the TAI vacuolar invertase in 11 wild and one cultivated tomato accessions of the Solanum section Lycopersicon. The average level of interspecific polymorphism in TAI genes was 8.58%; however, in the green-fruited tomatoes, the TAI genes contained 100 times more SNPs than those in the red-fruited accessions. The TAI proteins demonstrated 8% variability, whereas the red-fruited species had none. A TAI-based phylogenetic tree revealed two main clusters containing self-compatible and self-incompatible species, which concurs with the previous crossability-based division and demonstrates that the TAI genes reflect the evolutionary relationships between the red- and green-fruited tomatoes. Furthermore, we detected differential expression patterns of the TAI genes in the fruits of wild and cultivated tomatoes, which corresponded to sugar composition. The polymorphism analysis of the TAI acid invertases of Solanum section Lycopersicon species will contribute to the understanding of the genetic potential of TAI genes to impact tomato breeding through genetic engineering of the carbohydrate composition in the fruit.

摘要

了解碳水化合物代谢的遗传机制有助于推动果树生物技术的发展。番茄果肉是研究蔗糖裂解酶在果实发育中作用的理想系统,而储存糖分不同的野生番茄物种是进行此项研究的优质材料。植物液泡转化酶是库器官中蔗糖代谢的关键酶。在本研究中,我们在11个野生番茄和1个栽培番茄(茄属番茄组)中鉴定出了编码TAI液泡转化酶的完整基因序列。TAI基因的种间多态性平均水平为8.58%;然而,在绿果番茄中,TAI基因中的单核苷酸多态性(SNP)比红果番茄中的多100倍。TAI蛋白表现出8%的变异性,而红果番茄物种则没有。基于TAI构建的系统发育树显示出两个主要聚类,包含自交亲和与自交不亲和物种,这与之前基于杂交亲和性的划分一致,并表明TAI基因反映了红果和绿果番茄之间的进化关系。此外,我们检测到野生和栽培番茄果实中TAI基因的差异表达模式,这与糖组成相对应。对茄属番茄组物种的TAI酸性转化酶进行多态性分析,将有助于通过对果实碳水化合物组成进行基因工程来了解TAI基因影响番茄育种的遗传潜力。

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