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Identification and expression analysis of WRKY transcription factor genes in response to fungal pathogen and hormone treatments in apple (Malus domestica)

机译:苹果(Malus Domestica)鉴定对髋骨转录因子基因的依赖性转录因子基因的鉴定及表达分析

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The WRKY family, a large family of transcription factors (TFs) found in higher plants, plays central roles in many aspects of biological processes and adaption to environment. However, little information is available on this family in apple (Malus domestica). In the present study, a total of 119 candidate WRKY genes in apple genome were identified and classified into three main groups (Group I-III) based on the structure of the conserved domains. Each group or subgroup showed similar exon-intron structures and motif compositions. The evolution analysis showed that 44 MdWRKY genes clustered into 20 intensive regions (&100 kb) and 78 MdWRKY formed 85 pairs of collinear relationships, suggesting that both tandem and segmental duplications played an important role in the evolution and diversification of the WRKY gene family in apple. Furthermore, the expression of the MdWRKY genes in apple leaves in response to biotic stress (Alternaria alternate) and hormone treatments [salicylic acid (SA), methyl jasmonate (MeJA) and ethephon] was examined by using RNA-seq and qRT-PCR. The results showed that 63 MdWRKY genes had differential expression in their transcript abundance in response to Alternaria alternata apple pathotype infection. Moreover, most pathogen responsive MdWRKY genes were also changed significantly when apple leaves were treated by SA, MeJA or ethephon plant growth regulations, suggesting an interaction between SA, JA and ethylene (Eth) hormone signaling under biotic stress. This work may provide the basis for future studies of the genetic modification of WRKY genes for pathogen resistance in apple.
机译:在高等植物中发现的腕子家族,大家转录因子(TFS),在生物过程的许多方面和对环境的许多方面起着中央角色。但是,在苹果(Malus Domestica)的这个家庭上有很少的信息。在本研究中,基于保守结构域的结构,将苹果基因组中的总共119个候选腕部基因鉴定并分为三个主要群体(I-III组)。每组或亚组显示出类似的外显子系统结构和基序组合物。进化分析表明,将44个MDWrky基因聚集成20个密集区域(& mdwrky形成的85对的共线关系,这表明串联和节段性重复在腕表的演化和多样化中起着重要作用。在苹果的基因家庭。此外,通过使用RNA-SEQ和QRT-PCR检查苹果叶中苹果叶中的MDWRky基因响应生物应激和激素处理[水杨酸(SA),茉莉酸甲酯(MEJA)和乙烯]。结果表明,63个MDWrky基因响应于Alternaria alternata植物型感染而在其转录物丰度中具有差异表达。此外,当苹果叶通过SA,Meja或Ethephon植物生长规定治疗苹果叶时,大多数病原体响应性MDWrky基因也发生了显着变化,表明在生物应激下的SA,JA和乙烯(Eth)信号传导之间的相互作用。这项工作可以为未来研究苹果中病原体抗性的遗传修饰的未来研究的基础。

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