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首页> 外文期刊>Frontiers in Plant Science >Cyclic nucleotide gated channel gene family in tomato: genome-wide identification and functional analyses in disease resistance
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Cyclic nucleotide gated channel gene family in tomato: genome-wide identification and functional analyses in disease resistance

机译:番茄中的环状核苷酸门控通道基因家族:全基因组鉴定和抗病性的功能分析

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The cyclic nucleotide gated channel (CNGC) is suggested to be one of the important calcium conducting channels. Nevertheless, genome-wide identification and systemic functional analysis of CNGC gene family in crop plant species have not yet been conducted. In this study, we performed genome-wide identification of CNGC gene family in the economically important crop tomato ( Solanum lycopersicum L.) and analyzed function of the group IVb SlCNGC genes in disease resistance. Eighteen CNGC genes were identified in tomato genome, and four CNGC loci that were misannotated at database were corrected by cloning and sequencing. Detailed bioinformatics analyses on gene structure, domain composition and phylogenetic relationship of the SlCNGC gene family were conducted and the group-specific feature was revealed. Comprehensive expression analyses demonstrated that SlCNGC genes were highly, widely but differently responsive to diverse stimuli. Pharmacological assays showed that the putative CNGC activators cGMP and cAMP enhanced resistance against Sclerotinia sclerotiorum . Silencing of group IVb SlCNGC genes significantly enhanced resistance to fungal pathogens Pythium aphanidermatum and S. sclerotiorum , strongly reduced resistance to viral pathogen Tobacco rattle virus , while attenuated PAMP- and DAMP-triggered immunity as shown by obvious decrease of the flg22- and AtPep1-elicited hydrogen peroxide accumulation in SlCNGC -silenced plants. Additionally, silencing of these SlCNGC genes significantly altered expression of a set of Ca~(2+)signaling genes including SlCaMs , SlCDPKs, and SlCAMTA3 . Collectively, our results reveal that group IV SlCNGC genes regulate a wide range of resistance in tomato probably by affecting Ca~(2+)signaling.
机译:环状核苷酸门控通道(CNGC)被认为是重要的钙传导通道之一。然而,尚未进行农作物植物中CNGC基因家族的全基因组鉴定和系统功能分析。在这项研究中,我们在经济上重要的农作物番茄(茄)中进行了CNGC基因家族的全基因组鉴定,并分析了IVb SlCNGC组基因在抗病性中的功能。在番茄基因组中鉴定出18个CNGC基因,并通过克隆和测序纠正了在数据库中被错误标注的4个CNGC基因座。对SlCNGC基因家族的基因结构,结构域组成和系统发育关系进行了详细的生物信息学分析,揭示了群体特异性特征。全面的表达分析表明,SlCNGC基因高度,广泛但对各种刺激反应不同。药理实验表明,假定的CNGC激活剂cGMP和cAMP增强了对核盘菌的抵抗力。 IVb S1CNGC组基因的沉默显着增强了对真菌病原体腐霉腐霉和核盘菌的抵抗力,大大降低了对病毒病原体烟草吵闹声的抵抗力,同时减弱了PAMP和DAMP触发的免疫力,这由flg22-和AtPep1-的明显降低所表明。在SlCNGC沉默的植物中引起过氧化氢积累。此外,这些SlCNGC基因的沉默显着改变了一组Ca〜(2+)信号转导基因的表达,包括SalCaMs,SlCDPKs和SlCAMTA3。总体而言,我们的结果表明,IV族SlCNGC基因可能通过影响Ca〜(2+)信号传导来调节番茄的广泛抗性。

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