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A Bacillus thuringiensis Chitin-Binding Protein is Involved in Insect Peritrophic Matrix Adhesion and Takes Part in the Infection Process

机译:芽孢杆菌硫霉素结合蛋白参与昆虫脱脂基质粘附,并参与感染过程

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Bacillus thuringiensis (Bt) is used for insect pest control, and its larvicidal activity is primarily attributed to Cry toxins. Other factors participate in infection, and limited information is available regarding factors acting on the peritrophic matrix (PM). This study aimed to investigate the role of a Bt chitin-binding protein (CBPA) that had been previously shown to be expressed at pH 9 in vitro and could therefore be expressed in the alkaline gut of lepidopteron larvae. A ?cbpA mutant was generated that was 10-fold less virulent than wild-type Bt HD73 towards Ostrinia furnacalis neonate larvae, indicating its important role in infection. Purified recombinant Escherichia coli CBPA was shown to have a chitin affinity, thus indicating a possible interaction with the chitin-rich PM. A translational GFP–CBPA fusion elucidated the localization of CBPA on the bacterial surface, and the transcriptional activity of the promoter P cbpA was immediately induced and confirmed at pH 9. Next, in order to connect surface expression and possible in vivo gut activity , last instar Galleria mellonella (Gm) larvae (not susceptible to Bt HD-73) were used as a model to follow CBPA in gut expression, bacterial transit, and PM adhesion. CBPA-GFP was quickly expressed in the Gm gut lumen, and more Bt HD73 strain bacteria adhered to the PM than those of the ?cbpA mutant strain. Therefore, CBPA may help to retain the bacteria, via the PM binding, close to the gut surface and thus takes part in the early steps of Bt gut interactions.
机译:芽孢杆菌(BT)用于虫害虫害,其幼虫活性主要归因于哭泣毒素。其他因素参与感染,有限的信息有关作用于斜塑基质(PM)的因素。该研究旨在探讨先前所示在体外在pH9在pH9时表达的Bt丁蛋白结合蛋白(CBPA)的作用,因此可以在Lepidopteron幼虫的碱性肠道中表达。产生CBPA突变体,其比野生型BT HD73更低的毒性为10倍,朝向Ostrinia FurnaCalis Neonate幼虫,表明其在感染中的重要作用。纯化的重组大肠杆菌COLI CBPA具有甲壳素亲和力,从而表明可以与富含丁蛋白的PM相互作用。平移GFP-CBPA融合阐明了细菌表面上CBPA的定位,并立即在pH9上立即诱导和证实促进剂PCBPA的转录活性,以便在体内肠道活性中连接表面表达和可能的情况下,最后Instar Galleria Mellonella(GM)幼虫(不敏感BT HD-73)用作肠道表达,细菌转运和PM粘附中CBPA的模型。 CBPA-GFP在GM肠道腔内快速表达,并且更多的BT HD73菌株粘附到PM的菌株比?CBPA突变菌株的菌株。因此,CBPA可以有助于通过PM结合保留细菌,靠近肠道表面,因此参与BT肠道相互作用的早期步骤。

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