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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Genome-wide identification and expression profiling of the SnRK2 gene family in Malus prunifolia
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Genome-wide identification and expression profiling of the SnRK2 gene family in Malus prunifolia

机译:恶魔蛋白普鲁尼玉米SNRK2基因家族的基因组鉴定和表达谱

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摘要

Sucrose non-fermenting-1-related protein kinase 2 (SnRK2) constitutes a small plant-specific serine/threonine kinase family with essential roles in the abscisic acid (ABA) signal pathway and in responses to osmotic stress. Although a genome-wide analysis of this family has been conducted in some species, little is known about SnRK2 genes in apple (. Malus domestica). We identified 14 putative sequences encoding 12 deduced SnRK2 proteins within the apple genome. Gene chromosomal location and synteny analysis of the apple SnRK2 genes indicated that tandem and segmental duplications have likely contributed to the expansion and evolution of these genes. All 12 full-length coding sequences were confirmed by cloning from Malus prunifolia. The gene structure and motif compositions of the apple SnRK2 genes were analyzed. Phylogenetic analysis showed that MpSnRK2s could be classified into four groups. Profiling of these genes presented differential patterns of expression in various tissues. Under stress conditions, transcript levels for some family members were up-regulated in the leaves in response to drought, salinity, or ABA treatments. This suggested their possible roles in plant response to abiotic stress. Our findings provide essential information about SnRK2 genes in apple and will contribute to further functional dissection of this gene family.
机译:蔗糖非发酵-1-相关蛋白激酶2(SNRK2)构成一个小植物特异性丝氨酸/苏氨酸激酶系列,具有在脱钙(ABA)信号途径中的基本作用以及对渗透胁迫的反应。虽然在某些物种中进行了对这个家庭的基因组分析,但对于苹果(Malus Domestica)的SNRK2基因知之甚少。我们确定了编码12的14个推定序列12在苹果基因组中推导出的SNRK2蛋白。基因染色体位置和苹果SNRK2基因的同步分析表明,串联和节段性重复可能有助于这些基因的扩张和演化。通过从Malus Prunifolia克隆确认所有12个全长编码序列。分析了苹果SNRK2基因的基因结构和基序组合物。系统发育分析表明,MPSNRK2S可以分为四组。这些基因的分析呈现各种组织中表达的差异模式。在压力条件下,某些家庭成员的转录水平响应干旱,盐度或ABA治疗而上调。这表明他们可能在植物反应对非生物压力的作用。我们的研究结果提供了有关苹果中SNRK2基因的基本信息,并将有助于该基因家族的进一步功能解剖。

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