首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Molecular characterization of SlATG18f in response to Tomato leaf curl New Delhi virus infection in tomato and development of a CAPS marker for leaf curl disease tolerance
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Molecular characterization of SlATG18f in response to Tomato leaf curl New Delhi virus infection in tomato and development of a CAPS marker for leaf curl disease tolerance

机译:Slatg18F响应番茄叶卷曲新德氏病毒感染在番茄中的分子表征及叶卷曲疾病耐受帽标志物的开发

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Key message Analysis of autophagy-related genes in tomato shows the involvement of SlATG18f in leaf curl disease tolerance and a CAPS marker developed from this gene demonstrates its usefulness in marker-assisted selection. Autophagy is a highly conserved catabolic process regulating cellular homeostasis and adaptation to different biotic and abiotic stress. Several autophagy-related proteins (ATGs) are reported to be involved in autophagic processes, and considering their importance in regulating growth and stress adaptation, these proteins have been identified and characterized in several plant species. However, there is no information available on the role of autophagy-related proteins regulating the tolerance of tomato to tomato leaf curl disease (ToLCD). Given this, the present genome-wide study identified thirty ATG-encoding genes (SlATG) in tomato, followed by their functional characterization. Expression profiling of the SlATG genes in contrasting tomato cultivars subjected to virus infection showed a 4.5-fold upregulation of SlATG18f in the tolerant cultivar. Further, virus-induced gene silencing of SlATG18f in the tolerant cultivar conferred disease susceptibility, which suggested the role of this gene in Tomato leaf curl New Delhi virus tolerance. Comparison of the gene sequence of both tolerant and susceptible cultivars along with the 5 ' upstream regions identified an SNP (A/T) at -2916 upstream of the start codon. A cleaved amplified polymorphic sequence (CAPS) marker was developed targeting this region, which showed a significant association with the tolerance characteristics in the tomato germplasm (R-2 = 0.1787). Altogether, the study identified a potential gene that could be used to develop ToLCNDV tolerant tomato cultivars using transgene-based or marker-assisted breeding-based approaches.
机译:对番茄自噬相关基因的关键信息分析表明,SlATG18f参与了卷曲叶抗病性,从该基因开发的CAPS标记显示了其在标记辅助选择中的作用。自噬是一种高度保守的分解代谢过程,调节细胞内环境稳定和对不同生物和非生物胁迫的适应。据报道,几种自噬相关蛋白(ATG)参与自噬过程,考虑到它们在调节生长和胁迫适应中的重要性,这些蛋白已在几种植物中得到鉴定和表征。然而,目前还没有关于自噬相关蛋白在调节番茄对番茄曲叶病(ToLCD)耐受性中的作用的信息。鉴于此,目前的全基因组研究在番茄中鉴定了30个ATG编码基因(SlATG),并对其功能进行了表征。在受病毒感染的对照番茄品种中,SlATG基因的表达谱显示,在耐病毒品种中,SlATG18f的表达上调了4.5倍。此外,在耐病毒品种中,病毒诱导的SlATG18f基因沉默赋予了疾病易感性,这表明该基因在番茄曲叶病毒耐性中的作用。对耐性品种和感病品种以及5'上游区域的基因序列进行比较,发现在起始密码子上游-2916处存在一个SNP(A/T)。针对该区域开发了一个切割扩增多态性序列(CAPS)标记,该标记与番茄种质中的耐性特征显著相关(R-2=0.1787)。总之,这项研究确定了一个潜在的基因,可用于使用基于转基因或基于标记辅助育种的方法培育耐ToLCNDV番茄品种。

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