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首页> 外文期刊>Acta Horticulturae >SNPs within the glutathione S-transferase genes as markers for the identification of more or less stress responsive sweet orange varieties
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SNPs within the glutathione S-transferase genes as markers for the identification of more or less stress responsive sweet orange varieties

机译:谷胱甘肽S-转移酶基因内的SNPS作为标记的标记,用于识别或多或少的压力响应甜橙品种

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摘要

The glutathione S-transferases (GSTs) are ubiquitous dimeric enzymes catalyzing the nucleophilic addition of glutathione (GSH) to the electrophilic groups of a large variety of toxic chemicals. The resulting GS-conjugates are sequestered into the vacuoles where further transformation processes can promote their partial salvage, substitution or degradation. Subunits of all known GSTs exhibit a two-domain fold, the N-terminal domain, including the highly conserved GSH-binding site (G-site), and the C-terminal domain which represents the more divergent cosubstrate-binding site (H-site). Previously, two GST genes sharing 98.6% homology (Ul and U2) have been isolated from sweet orange. The encoded enzymes differ in three amino acids, all of them localized in the H-site of the proteins. Despite the fact that the enzymes share very high sequence similarity, they have been found to show different substrate specificity as well as different catalytic efficiency towards l-chloro-2,4-dinitrobenzene (CDNB). Inthe present work, the analysis of single nucleotide polymorphisms (SNPs) among members of nine Citrus sinensis varieties was performed by genotype sequencing. The data showed that all SNPs, which lead to one or to the other GST isoform, are as differentalleles in a heterozygosis status at the GST locus thus suggesting that all the varieties under investigation could potentially express both isoforms in their organs. The analysis of gene expression highlighted that the GST isoforms show different distribution between leaf and flesh as well as that they are differently involved in abiotic stress response. Therefore, the regulation of GST gene expression certainly fulfils a crucial role in citrus plant defense mechanisms. Moreover, gene sequencing revealed the presence of other still unidentified SNPs, most of them leading to conservative amino acid substitutions. In a particular case ('Tarocco dal muso'), the newly individuated SNP inserts an in frame stop codon within the protein coding region which prematurely interrupts the mRNA translation process producing an incomplete, most likely inactive, form of enzyme. Therefore, SNP genotyping might represent a powerful tool to identify among varieties those potentially more responsive to environmental stresses.
机译:谷胱甘肽S-转移酶(GSTS)是普遍存在的二聚体酶,催化谷胱甘肽(GSH)的亲核添加到大量有毒化学物质的亲电子组。将得到的GS-缀合物被隔离成真空耐力,其中进一步的转化过程可以促进其部分挽液,取代或降解。所有已知的GST的亚基表现出双域折叠,N-末端结构域,包括高度保守的GSH结合位点(G-位点),以及代表更分散的宇烷值结合位点的C末端结构域(H-地点)。以前,分享了98.6%同源性(UL和U2)的两个GST基因已从甜橙中分离出来。编码的酶在三个氨基酸中不同,所有这些都在蛋白质的H位点局部化。尽管酶份额存在非常高的序列相似性,但已经发现它们显示出不同的基质特异性以及朝向L-氯-2,4-二硝基苯(CDNB)的不同催化效率。目前工作,通过基因型测序进行九种柑橘Sinensis品种成员中单核苷酸多态性(SNP)的分析。这些数据显示所有导致一个或另一个GST同种型的SNP都在GST基因座的杂小凝固状态下都是不同的,因此表明正在调查的所有品种可能会在其器官中表达两种同种型。基因表达的分析突出显示GST同种型在叶片和肉体之间显示出不同的分布,以及它们不同地涉及非生物应激反应。因此,GST基因表达的调节肯定会满足柑橘植物防御机制中的至关重要作用。此外,基因测序揭示了其他静止不明的SNP的存在,其中大多数导致保守氨基酸取代。在特定情况下('塔柯克DAL MUSO'),新分类的SNP在蛋白质编码区内插入帧止芯密码子内,该蛋白质编码区域内过早地中断MRNA翻译过程产生不完全,最可能是无活性的酶的形式。因此,SNP基因分型可能代表一个强大的工具,可以在可能对环境压力敏感的那些品种之间识别。

著录项

  • 来源
    《Acta Horticulturae》 |2016年第1135期|共6页
  • 作者单位

    University of Catania Department of Agriculture Food and Environment Di3A Catania Italy;

    University of Catania Department of Agriculture Food and Environment Di3A Catania Italy;

    University of Catania Department of Agriculture Food and Environment Di3A Catania Italy;

    University of Catania Department of Agriculture Food and Environment Di3A Catania Italy;

    Consiglio per la Ricerca e la Sperimentazione in Agricoltura Centra di ricerca per l'agrumicoltura e le colture mediterranee (CRA-ACM) 95024 Acireale Italy;

    Hunan Agricultural University Horticulture and Landscape College Changsha Hunan China;

    University of Catania Department of Agriculture Food and Environment Di3A Catania Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

    glutathione transferase; sequencing; gene expression; Citrus sinensis L. (Osbeck); abiotic stress;

    机译:谷胱甘肽转移酶;测序;基因表达;柑橘sinensis l.(osbeck);非生物胁迫;

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