首页> 外文期刊>BMC Plant Biology >Comprehensive analysis of multiprotein bridging factor 1 family genes and SlMBF1c negatively regulate the resistance to Botrytis cinerea in tomato
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Comprehensive analysis of multiprotein bridging factor 1 family genes and SlMBF1c negatively regulate the resistance to Botrytis cinerea in tomato

机译:番茄中多蛋白桥连因子1家族基因和SlMBF1c负调控对灰葡萄孢的抗性的综合分析

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Multiprotein bridging factor 1?s (MBF1s) are members of the transcriptional co-activator family that have involved in plant growth, development and stress responses. However, little is known about the Solanum lycopersicum MBF1 (SlMBF1) gene family. In total, five SlMBF1 genes were identified based on the tomato reference genome, and these genes were mapped to five chromosomes. All of the SlMBF1 proteins were highly conserved, with a typical MBF1 domain and helix-turn-helix_3 domain. In addition, the promoter regions of the SlMBF1 genes have various stress and hormone responsive cis-regulatory elements. Encouragingly, the SlMBF1 genes were expressed with different expression profiles in different tissues and responded to various stress and hormone treatments. The biological function of SlMBF1c was further identified through its overexpression in tomato, and the transgenic tomato lines showed increased susceptibility to Botrytis cinerea (B. cinerea). Additionally, the expression patterns of salicylic acid (SA)-, jasmonic acid (JA)- and ethylene (ET)- mediated defense related genes were altered in the transgenic plants. Our comprehensive analysis provides valuable information for clarifying the evolutionary relationship of the SlMBF1 members and their expression patterns in different tissues and under different stresses. The overexpression of SlMBF1c decreased the resistance of tomato to B. cinerea through enhancing the gene expression of the SA-mediated signaling pathway and depressing JA/ET-mediated signaling pathways. These results will facilitate future functional studies of the transcriptional co-activator family.
机译:多蛋白桥联因子1βs(MBF1s)是转录共激活因子家族的成员,参与植物的生长,发育和胁迫反应。但是,关于茄茄MBF1(S1MBF1)基因家族知之甚少。总共,基于番茄参考基因组鉴定出五个SlMBF1基​​因,并将这些基因定位到五个染色体上。所有的SlMBF1蛋白都是高度保守的,具有典型的MBF1结构域和helix-turn-helix_3结构域。另外,SlMBF1基​​因的启动子区域具有各种应激和激素响应性顺式调节元件。令人鼓舞的是,SlMBF1基​​因在不同的组织中以不同的表达模式表达,并对各种压力和激素治疗产生反应。通过在番茄中的过表达进一步鉴定了SlMBF1c的生物学功能,并且转基因番茄品系显示对灰葡萄孢(B.cinerea)的敏感性增加。另外,在转基因植物中,水杨酸(SA),茉莉酸(JA)和乙烯(ET)介导的防御相关基因的表达模式发生了改变。我们的综合分析为阐明SlMBF1成员的进化关系及其在不同组织和不同压力下的表达模式提供了有价值的信息。 S1MBF1c的过表达通过增强SA介导的信号传导途径的基因表达和抑制JA / ET介导的信号传导通路而降低了番茄对灰葡萄孢的抗性。这些结果将促进未来的转录共激活因子家族的功能研究。

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