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Cytopathological Effects of Bacillus sphaericus Cry48Aa/Cry49Aa Toxin on Binary Toxin-Susceptible and -Resistant Culex quinquefasciatus Larvae▿

机译:球形芽孢杆菌Cry48Aa / Cry49Aa毒素对二元易感和抗药性库克斯金丝雀幼虫的细胞病理学作用

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摘要

The Cry48Aa/Cry49Aa mosquitocidal two-component toxin was recently characterized from Bacillus sphaericus strain IAB59 and is uniquely composed of a three-domain Cry protein toxin (Cry48Aa) and a binary (Bin) toxin-like protein (Cry49Aa). Its mode of action has not been elucidated, but a remarkable feature of this protein is the high toxicity against species from the Culex complex, besides its capacity to overcome Culex resistance to the Bin toxin, the major insecticidal factor in B. sphaericus-based larvicides. The goal of this work was to investigate the ultrastructural effects of Cry48Aa/Cry49Aa on midgut cells of Bin-toxin-susceptible and -resistant Culex quinquefasciatus larvae. The major cytopathological effects observed after Cry48Aa/Cry49Aa treatment were intense mitochondrial vacuolation, breakdown of endoplasmic reticulum, production of cytoplasmic vacuoles, and microvillus disruption. These effects were similar in Bin-toxin-susceptible and -resistant larvae and demonstrated that Cry48Aa/Cry49Aa toxin interacts with and displays toxic effects on cells lacking receptors for the Bin toxin, while B. sphaericus IAB59-resistant larvae did not show mortality after treatment with Cry48Aa/Cry49Aa toxin. The cytopathological alterations in Bin-toxin-resistant larvae provoked by Cry48Aa/Cry49Aa treatment were similar to those observed when larvae were exposed to a synergistic mixture of Bin/Cry11Aa toxins. Such effects seemed to result from a combined action of Cry-like and Bin-like toxins. The complex effects caused by Cry48Aa/Cry49Aa provide evidence for the potential of these toxins as active ingredients of a new generation of biolarvicides that conjugate insecticidal factors with distinct sites of action, in order to manage mosquito resistance.
机译:Cry48Aa / Cry49Aa灭蚊两组分毒素最近从球形芽孢杆菌IAB59菌株中鉴定出来,并且独特地由三域Cry蛋白毒素(Cry48Aa)和二元(Bin)毒素样蛋白(Cry49Aa)组成。其作用方式尚未阐明,但该蛋白的显着特征是对库蚊复合物的物种具有高毒性,并且具有克服库蚊对B. sphaericus幼虫主要杀虫因子Bin毒素的抗性的能力。 。这项工作的目的是调查Cry48Aa / Cry49Aa对Bin毒素敏感和抗性库克斯库克斯昆雀幼虫中肠细胞的超微结构影响。 Cry48Aa / Cry49Aa处理后观察到的主要细胞病理学作用是强烈的线粒体空泡化,内质网的破坏,细胞质液泡的产生和微绒毛的破坏。这些作用在对Bin毒素敏感和耐药的幼虫中相似,表明Cry48Aa / Cry49Aa毒素与缺乏Bin毒素受体的细胞相互作用并显示出毒性作用,而对球形芽孢杆菌IAB59耐药的幼虫在治疗后未显示死亡率与Cry48Aa / Cry49Aa毒素结合。 Cry48Aa / Cry49Aa处理引起的抗Bin毒素的幼虫的细胞病理学变化与当幼虫暴露于Bin / Cry11Aa毒素的增效混合物时所观察到的相似。这种作用似乎是由Cry类毒素和Bin类毒素共同作用引起的。由Cry48Aa / Cry49Aa引起的复杂作用为这些毒素作为新一代生物杀虫剂的有效成分提供了证据,这些杀生物剂将杀虫因子与不同的作用位点结合在一起,以控​​制蚊子的抗药性。

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