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首页> 外文期刊>Plant Physiology and Biochemistry >Genome-wide identification and expression analysis of calmodulin and calmodulin-like genes in apple (Malus x domestica)
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Genome-wide identification and expression analysis of calmodulin and calmodulin-like genes in apple (Malus x domestica)

机译:苹果(Malus x Domestica)钙调素和钙调蛋白样基因的基因组型鉴定及表达分析

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摘要

Changes in intracellular calcium (Ca2+) levels in response to developmental processes or external stimuli serve as signals in eukaryotic cells. These Ca2+ signals are likely perceived through sensor proteins that bind Ca2+ by EF-hand (a helix-loop-helix structure) motif. Calmodulins (CaMs), a group of well-characterized Ca2+ sensors, and calmodulin-like (CMLs) are implicated in a large number of diverse cellular processes, including plant development and stress responses. In this study, apple (Malus x domestica) genes encoding CaM and CML proteins that only possess EF-hand motifs with no other functional domains were analyzed. A total of 4 MdCaM and 58 MdCML genes were identified, which are spread among 16 out of the 17 apple chromosomes. Bioinformatics analyses, including protein characteristics, conserved domain, evolutionary relationships and chromosomal locations, demonstrated the conservation and divergence of MdCaMs/CMLs. In addition, expression analysis showed that MdCaMs/CMLs are expressed in more than one tissue, including shoot tips, roots, mature leaves, flowers and fruit. Furthermore, the expression of some MdCaM/CML members responded to plant hormones (abscisic acid, jasmonic acid) and salt stress, suggesting a potential role of these genes in responses to biotic and abiotic stress. Overexpression of stress-induced MdCML3 gene significantly improved the tolerance of apple calli to salinity and ABA. The identification and characterization of MdCaMs/CMLs in apple lays a foundation for future functional studies of these genes.
机译:响应于发育过程或外部刺激的细胞内钙(CA2 +)水平的变化用作真核细胞中的信号。这些CA2 +信号可能通过EF手(螺旋环 - 螺旋结构)基序结合CA2 +的传感器蛋白来感知。钙调汀(凸轮),一组良好的CA2 +传感器和钙调蛋白样(CML)涉及大量不同的细胞过程,包括植物发育和应力反应。在这项研究中,分析了苹果(Malus X Diemberaa)基因编码凸轮和CML蛋白,只分析了没有其他功能域的EF手图案。鉴定了总共4个MDCAM和58个MDCML基因,其在17个苹果染色体中的16个中分布。生物信息学分析,包括蛋白质特征,保守域,进化关系和染色体位置,证明了MDCAMS / CMLS的养护和分歧。此外,表达分析表明,MDCAMS / CMLS在多个组织中表达,包括拍摄提示,根,成熟叶,花和水果。此外,一些MDCAM / CML构件的表达响应植物激素(脱落酸,茉莉酸)和盐胁迫,表明这些基因在对生物和非生物胁迫的反应中的潜在作用。应激诱导的MDCML3基因的过度表达显着改善了苹果Calli对盐度和ABA的耐受性。苹果中MDCAMS / CMLS的鉴定和表征为这些基因的未来功能研究奠定了基础。

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