首页> 外文期刊>Russian journal of bioorganic chemistry >Mildew Resistance Locus O Gene Cloning, Characterization, and Expression Pattern in Mulberry (Morus multicaulis) and Its Prokaryotic Expression in E-coli
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Mildew Resistance Locus O Gene Cloning, Characterization, and Expression Pattern in Mulberry (Morus multicaulis) and Its Prokaryotic Expression in E-coli

机译:桑树(Morus Multiaulis)中的霉菌抵抗源区o基因克隆,表征和表达模式及其在e-coli中的原核表达

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摘要

MLO (mildew resistance locus O), which encodes a transmembrane protein 7TM, is considered to be a model plant gene suitable for studying broad-spectrum resistance. It is a negative regulator of powdery mildew resistance and thus has potential applications in plant breeding. In the present paper, a full cDNA sequence encoding MLO was cloned from the leaves of mulberry (Morus multicaulis) based on mulberry expressed sequence tags (EST), homologous cloning technology, and 5'-RLM-RACE using RT-PCR;the sequence was designated MMLO (GenBank accession no. KX683296). The full cDNA was 1943 bp in length with 5'-untranslated region (UTR) of 106 bp, 3'-UTR of 160 bp, and an open reading frame (ORF) of 1677 bp encoding a protein of 558 amino acids. The estimated molecular weight and isoelectric point (pI) of the putative protein were 62.48 kDa and 9.03, respectively. The MMLO protein had Mlo domain and belonged to the Mlo superfamily. Phylogenetic analysis based on the amino acid sequences encoded by the MLO gene from various species showed that mulberry was closely related to Eucalyptus grandis, Ziziphus jujube, and Juglansregia. Quantitative real-time PCR (qRT-PCR) analysis revealed that MMLO was expressed in all the tissues tested, including leaf, bud, fruit, stem, phloem, and xylem in mulberry with the highest expression in the phloem. The expression level of the mRNA increased and significantly changed under drought, cold, and salt stress treatments compared to the normal growth environment. The ORF segment of the MMLO was inserted into the expression plasmid pET-28a(+) to construct a recombinant expression plasmid. SDS-PAGE result revealed that fusion protein was successfully expressed. Overall, these results provide a better understanding of the molecular basis for the signal transduction mechanism during the stress responses in mulberry trees.
机译:编码跨膜蛋白7Tm的MLO(霉菌抵抗基因座O)被认为是适用于研究宽光谱抗性的模型植物基因。它是粉末状霉菌抗性的负调节剂,因此具有潜在的植物育种应用。在本文中,基于Mulbery表达的序列标签(EST),同源克隆技术和5'-RLM族使用RT-PCR,从桑树(Morus MultiCaniris)的叶片中克隆了编码MLO的完整cDNA序列;序列被指定MMLO(GenBank登录号。KX683296)。完整的cDNA为1943bp的长度为106bp,3'-utr为160bp的3'-utr),以及1677bp的开放阅读框(ORF)编码558氨基酸的蛋白质。推定蛋白质的估计分子量和等电点(PI)分别为62.48kDa和9.03。 MMLO蛋白质具有MLO结构域,属于MLO超家族。基于来自各种物种的MLO基因编码的氨基酸序列的系统发育分析表明,桑树与桉树祖母,Ziziphus Jujube和Juglansregia密切相关。定量实时PCR(QRT-PCR)分析显示,MMLO在测试的所有组织中表达,包括叶片,芽,水果,茎,韧皮植物和桑椹蛋白,含有最高表达的植物。与正常生长环境相比,在干旱,冷和盐胁迫处理下,mRNA的表达水平增加和显着改变。将MMLO的ORF区段插入表达质粒PET-28a(+)中以构建重组表达质粒。 SDS-PAGE结果显示成功表达了融合蛋白。总体而言,这些结果可以更好地了解信号转导机制在桑树中的应力反应期间的分子基础。

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