首页> 外文期刊>Archives of Insect Biochemistry and Physiology >INCREASE IN LARVAL GUT PROTEOLYTIC ACTIVITIES AND Bti RESISTANCE IN THE DENGUE FEVER MOSQUITO
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INCREASE IN LARVAL GUT PROTEOLYTIC ACTIVITIES AND Bti RESISTANCE IN THE DENGUE FEVER MOSQUITO

机译:登革热蚊子幼虫肠道蛋白水解活性和抗BTI活性的增加

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摘要

The bioimecticide Bacillus thuringiensis var. israefensis (Bti.) is increasingly used worldwide for mosquito control. Although no established resistance to Bti has been described in the field so far, a resistant Aedes aegypti. strain (Ei'TOX strain) was selected in the laboratory using field-collected leaf litter containing Bti toxins. This selected strain exhibits a moderate resistance level to Bti, but a high resistance level to individual Cry toxins. As Bti. contains four different toxins, generalist resistance mechanisms affecting mosquito tolerance to different toxins were expected in the resistant strain. In the present work, we show that the resistant strain exhibits an increase of various gut proteolytic activities including trypsins, leucine-aminopeptidases, and carboxypeptidase A activities. These elevated proteolytic activities resulted in a faster activation of Cry4Aa protoxins while Cry4Ba or CryllAa were not affected. These results suggest that changes in proteolytic activities may contribute to Bti. resistance in mosquitoes together with other mechanisms.
机译:生物杀虫剂苏云金芽孢杆菌变种。以色列(Bti。)在世界范围内越来越多地用于灭蚊。尽管到目前为止,尚未在本领域中描述对Bti的已建立抗药性,但抗埃及伊蚊。在实验室中,使用田间采集的含Bti毒素的枯枝落叶筛选出了Ei'TOX菌株。所选菌株对Bti表现出中等抵抗力,但对单个Cry毒素表现出高抵抗力。作为Bti。由于含有四种不同的毒素,因此预计在该抗性菌株中,普通的抗性机制会影响蚊子对不同毒素的耐受性。在目前的工作中,我们表明抗性菌株表现出增加的各种肠蛋白水解活性,包括胰蛋白酶,亮氨酸-氨基肽酶和羧肽酶A活性。这些升高的蛋白水解活性导致Cry4Aa毒素的更快活化,而Cry4Ba或CryllAa则不受影响。这些结果表明蛋白水解活性的变化可能有助于Bti。蚊子的抵抗力以及其他机制。

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