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Identification of watermelon heat shock protein members and tissue-specific gene expression analysis under combined drought and heat stresses

机译:组合干旱和热应力下的西瓜热休克蛋白成员和组织特异性基因表达分析

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Heat shock protein ( Hsp ) gene family members in the watermelon genome were identified and characterized by bioinformatics analysis. In addition, expression profiles of genes under combined drought and heat stress conditions were experimentally analyzed. In the watermelon genome, 39 genes belonging to the sHsp family, 101 genes belonging to the Hsp40 family, 23 genes belonging to the Hsp60 family, 12 genes belonging to the Hsp70 family, 6 genes belonging to the Hsp90 family, and 102 genes belonging to the Hsp100 family were found. It was also observed that the proteins in the same cluster in the phylogenetic trees had similar motif patterns. When the estimated 3-dimensional structures of the Hsp proteins were examined, it was determined that the ?-helical structure was dominant in almost all families. The most orthologous relationship appeared to be between watermelon, soybean, and poplar in the ClaHsp gene families. For tissue-specific gene expression analysis under combined stress conditions, expression analysis of one representative Hsp gene each from root, stem, leaf, and shoot tissues was performed by real-time PCR. A significant increase was detected usually at 30 min in almost all tissues. This study provides extensive information for watermelon Hsps, and can enhance our knowledge about the relationships between Hsp genes and combined stresses.
机译:通过生物信息学分析鉴定了西瓜基因组中的热休克蛋白(HSP)基因家族成员。此外,实验分析了组合干旱和热应激条件下基因的表达谱。在西瓜基因组中,属于SHSP家族的39个基因,属于HSP40家族的101个基因,属于HSP60家族的23个基因,属于HSP70家族的12个基因,属于HSP90家族的6个基因,以及102个属于HSP90家族的基因,以及属于HSP90家族的6个基因,以及102个属于HSP90家族的基因和102个基因找到了HSP100家族。还观察到,系统发育树中同一簇中的蛋白质具有类似的基序图案。当检查HSP蛋白的估计的三维结构时,确定在几乎所有家庭中的α-伯克结构占主导地位。最正常的关系似乎是西瓜,大豆和杨树之间的克拉斯普基因家族。对于组织特异性基因表达分析在组合应力条件下,通过实时PCR进行来自根,茎,叶和芽组织的一个代表性HSP基因的表达分析。在几乎所有组织中通常在30分钟内检测到显着增加。本研究为西瓜HSP提供了广泛的信息,可以增强我们对HSP基因和组合应力之间关系的知识。

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