首页> 美国卫生研究院文献>Pathogens >Putative Role of a Yet Uncharacterized Protein Elicitor PeBb1 Derived from Beauveria bassiana ARSEF 2860 Strain against Myzus persicae (Homoptera: Aphididae) in Brassica rapa ssp. pekinensis
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Putative Role of a Yet Uncharacterized Protein Elicitor PeBb1 Derived from Beauveria bassiana ARSEF 2860 Strain against Myzus persicae (Homoptera: Aphididae) in Brassica rapa ssp. pekinensis

机译:源自球孢白僵菌ARSEF 2860菌株的尚未鉴定的蛋白质诱导物PeBb1对甘蓝型油菜桃蚜(桃蚜)的推定作用。北京

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摘要

This study reports the characterization of protein elicitor PeBb1 derived from entomopathogenic fungus ARSEF-2860 strain and its putative role in induced systemic resistance in ssp. against green peach aphid . The sequence of purified elicitor protein was matched with the genomic sequence of a hypothetical protein BBA_10269 from ARSEF-2860 (GenBank Accession No. ). The protein-encoding gene contained 534 bp cDNA encoding a polypeptide of 177 amino acids with a molecular mass of 19 kDa. The recombinant elicitor protein was expressed in using pET-28a (+) expression vector and induced necrosis in the leaves of tobacco. The effects of elicitor protein on aphid was determined by applying three different concentrations of PeBb1 (i.e., 26, 35, 53 μM) on plants at 4-leaf stage and the treated plants were exposed to newly emerged (0–6 h old) apterous adult aphids. Bioassay results showed significant ( < 0.05) sub-lethal effects of the exogenous application of PeBb1 elicitor on . Moreover, the RT-qPCR gene expression analyses showed a significant up-regulation of most of the key genes linked to ethylene (ET)- and jasmonic acid (JA)-associated plant defense pathways in elicitor-treated plants. These results not only recommend the putative utilization of PeBb1 elicitor protein in future biological pest control strategies against phloem-feeding insect pests such as , but also help in better comprehension of the mechanisms through which beneficial fungi trigger the induced plant resistance.
机译:这项研究报告了昆虫病原真菌ARSEF-2860菌株衍生的蛋白激发子PeBb1的表征及其在诱导的系统抗性中的作用。反对桃蚜。纯化的激发子蛋白的序列与来自ARSEF-2860的假想蛋白BBA_10269的基因组序列匹配(GenBank登录号)。蛋白质编码基因包含534 bp cDNA,编码177个氨基酸的多肽,分子量为19 kDa。用pET-28a(+)表达载体表达了重组激发子​​蛋白,并诱导了烟草叶片坏死。激发子蛋白对蚜虫的影响是通过在4叶片阶段对植物施用三种不同浓度的PeBb1(即26、35、53μM)来确定的,并将处理过的植物暴露于新近出现的(0-6小时龄)无性系中成年蚜虫。生物测定结果显示,外源应用PeBb1激发子对具显着(<0.05)亚致死作用。此外,RT-qPCR基因表达分析显示,与诱导剂处理过的植物中,与乙烯(ET)和茉莉酸(JA)相关的植物防御途径相关的大多数关键基因均显着上调。这些结果不仅建议在未来针对诸如韧皮部喂食的害虫的生物害虫控制策略中推定使用PeBb1激发子蛋白,而且还有助于更好地理解有益真菌触发诱导的植物抗性的机制。

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