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Genome-Wide Identification and Expression Profiling of Tomato Hsp20 Gene Family in Response to Biotic and Abiotic Stresses

机译:番茄Hsp20基因家族对生物和非生物胁迫的全基因组鉴定和表达谱

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摘要

The Hsp20 genes are involved in the response of plants to environment stresses including heat shock and also play a vital role in plant growth and development. They represent the most abundant small heat shock proteins (sHsps) in plants, but little is known about this family in tomato (Solanum lycopersicum), an important vegetable crop in the world. Here, we characterized heat shock protein 20 (SlHsp20) gene family in tomato through integration of gene structure, chromosome location, phylogenetic relationship, and expression profile. Using bioinformatics-based methods, we identified at least 42 putative SlHsp20 genes in tomato. Sequence analysis revealed that most of SlHsp20 genes possessed no intron or a relatively short intron in length. Chromosome mapping indicated that inter-arm and intra-chromosome duplication events contributed remarkably to the expansion of SlHsp20 genes. Phylogentic tree of Hsp20 genes from tomato and other plant species revealed that SlHsp20 genes were grouped into 13 subfamilies, indicating that these genes may have a common ancestor that generated diverse subfamilies prior to the mono-dicot split. In addition, expression analysis using RNA-seq in various tissues and developmental stages of cultivated tomato and the wild relative Solanum pimpinellifolium revealed that most of these genes (83%) were expressed in at least one stage from at least one genotype. Out of 42 genes, 4 genes were expressed constitutively in almost all the tissues analyzed, implying that these genes might have specific housekeeping function in tomato cell under normal growth conditions. Two SlHsp20 genes displayed differential expression levels between cultivated tomato and S. pimpinellifolium in vegetative (leaf and root) and reproductive organs (floral bud and flower), suggesting inter-species diversification for functional specialization during the process of domestication. Based on genome-wide microarray analysis, we showed that the transcript levels of SlHsp20 genes could be induced profusely by abiotic and biotic stresses such as heat, drought, salt, Botrytis cinerea, and Tomato Spotted Wilt Virus (TSWV), indicating their potential roles in mediating the response of tomato plants to environment stresses. In conclusion, these results provide valuable information for elucidating the evolutionary relationship of Hsp20 gene family and functional characterization of the SlHsp20 gene family in the future.
机译:Hsp20基因参与植物对包括热激在内的环境胁迫的反应,并且在植物生长和发育中也起着至关重要的作用。它们代表了植物中最丰富的小热激蛋白(sHsps),但对番茄(Solanum lycopersicum)的这一科系知之甚少,番茄是世界上重要的蔬菜作物。在这里,我们通过整合基因结构,染色体位置,系统发育关系和表达谱来表征番茄中的热激蛋白20(SlHsp20)基因家族。使用基于生物信息学的方法,我们鉴定了番茄中至少42个推定的SlHsp20基因。序列分析显示,大多数SlHsp20基因不具有内含子或长度较短的内含子。染色体作图表明臂间和染色体内复制事件显着促进了SlHsp20基因的扩增。来自番茄和其他植物物种的Hsp20基因的系统树显示,SlHsp20基因被分为13个亚科,表明这些基因可能具有共同的祖先,在单对子分裂之前会产生不同的亚科。另外,使用RNA-seq在栽培番茄和野生亲缘茄的各种组织和发育阶段的表达分析表明,这些基因中的大多数(83%)在至少一种基因型的至少一个阶段表达。在42个基因中,几乎所有被分析的组织中都组成性地表达了4个基因,这表明这些基因在正常生长条件下可能在番茄细胞中具有特定的看家功能。两个SlHsp20基因在营养(叶和根)和生殖器官(花蕾和花)和栽培器官中的栽培番茄和小叶忍冬中表达差异,这表明在驯化过程中种间多样化以实现功能专业化。基于全基因组微阵列分析,我们显示,SlHsp20基因的转录水平可以被非生物和生物胁迫(如高温,干旱,盐,灰葡萄孢和番茄斑点枯萎病毒(TSWV))大量诱导,表明它们的潜在作用介导番茄植物对环境压力的响应。总之,这些结果为阐明Hsp20基因家族的进化关系和将来对SlHsp20基因家族的功能表征提供了有价值的信息。

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