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Characterization and Comparison of the CPK Gene Family in the Apple (Malus × domestica) and Other Rosaceae Species and Its Response to Alternaria alternata Infection

机译:苹果(Malus×domestica)和其他蔷薇科植物CPK基因家族的表征比较及其对链格孢菌感染的响应

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摘要

As one of the Ca2+ sensors, calcium-dependent protein kinase (CPK) plays vital roles in immune and stress signaling, growth and development, and hormone responses, etc. Recently, the whole genome of apple (Malus × domestica), pear (Pyrus communis), peach (Prunus persica), plum (Prunus mume) and strawberry (Fragaria vesca) in Rosaceae family has been fully sequenced. However, little is known about the CPK gene family in these Rosaceae species. In this study, 123 CPK genes were identified from five Rosaceae species, including 37 apple CPKs, 37 pear CPKs, 17 peach CPKs, 16 strawberry CPKs, and 16 plum CPKs. Based on the phylogenetic tree topology and structural characteristics, we divided the CPK gene family into 4 distinct subfamilies: Group I, II, III, and IV. Whole-genome duplication (WGD) or segmental duplication played vital roles in the expansion of the CPK in these Rosaceae species. Most of segmental duplication pairs in peach and plum may have arisen from the γ triplication (~140 million years ago [MYA]), while in apple genome, many duplicated genes may have been derived from a recent WGD (30~45 MYA). Purifying selection also played a critical role in the function evolution of CPK family genes. Expression of apple CPK genes in response to apple pathotype of Alternaria alternata was verified by analysis of quantitative real-time RT-PCR (qPCR). Expression data demonstrated that CPK genes in apple might have evolved independently in different biological contexts. The analysis of evolution history and expression profile laid a foundation for further examining the function and complexity of the CPK gene family in Rosaceae.
机译:作为Ca 2 + 传感器之一,钙依赖蛋白激酶(CPK)在免疫和应激信号,生长发育和激素反应等方面起着至关重要的作用。最近,苹果的整个基因组蔷薇科的梨(Palus communis),桃(Prunus persica),李子(Prunus mume)和草莓(Fragaria vesca)的草莓已被完全测序。然而,对于这些蔷薇科物种中的CPK基因家族知之甚少。在这项研究中,从5个蔷薇科物种中鉴定了123个CPK基因,包括37个苹果CPK,37个梨CPK,17个桃CPK,16个草莓CPK和16个李子CPK。基于系统发育树的拓扑结构和结构特征,我们将CPK基因家族分为4个不同的亚家族:I,II,III和IV组。全基因组重复(WGD)或节段重复在这些蔷薇科物种的CPK扩展中起着至关重要的作用。桃和李子中的大多数节段重复对可能起源于γ重复(约1.4亿年前[MYA]),而在苹果基因组中,许多重复的基因可能源自最近的WGD(30〜45 MYA)。纯化选择在CPK家族基因的功能进化中也起着关键作用。通过定量实时RT-PCR(qPCR)分析验证了苹果CPK基因对苹果变种 Alternaria alternata 的响应。表达数据表明,苹果中的 CPK 基因可能在不同的生物学环境中独立进化。进化史和表达谱的分析为进一步研究蔷薇科 CPK 基因家族的功能和复杂性奠定了基础。

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