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米蛾幼虫龄期对苏云金芽孢杆菌Cry1Aaδ-内毒素毒力的影响

Influence of Ephestia kuehniella stage larvae on the potency of Bacillus thuringiensis Cry1Aa delta-endotoxin.

作者信息

Abdelmalek Nouha, Sellami Sameh, Kallassy-Awad Mireille, Tounsi Molka Feki, Mebarkia Abdelkrim, Tounsi Slim, Rouis Souad

机构信息

Laboratory of Biopesticides, Centre of Biotechnology of Sfax, University of Sfax, P.O. Box 1177, 3018 Sfax, Tunisia.

Faculty of Sciences, University Saint-Joseph, Beirut, Lebanon.

出版信息

Pestic Biochem Physiol. 2017 Apr;137:91-97. doi: 10.1016/j.pestbp.2016.10.004. Epub 2016 Oct 21.

Abstract

The economically important crop pest Ephestia kuehniella was tested at two stages of larval development for susceptibility to Bacillus thuringiensis Cry1Aa toxin. Bioassays showed that toxicity decreased during the development of larvae stage. In fact, Cry1Aa toxins from BNS3-Cry (pHT-cry1Aa) showed low toxicity against the first-instar larvae (L1) with a LC value of about 421.02μg/g of diet and was not toxic against the fifth-instar (L5), comparing to the BLB1 toxins used as positive control which represent a LC value of about 56.96 and 84.21μg/g of diet against L1 and L5 instars larvae, respectively. Effects of Cry1Aa toxins were reflected in histopathological observations by the weak destruction of midgut epithelium, slight hypertrophy of epithelial cells, and minor alteration of brush border membrane (BBM) detected mainly in L1 larvae stage comparing to the more extensive damage caused by BLB1 toxins. Interestingly, in vitro proteolysis of Cry1Aa toxins was found to correlate with the difference of toxicity during larval stage development. In fact, the weak proteinase activity detected inside the L1 midgut has led to the persistence of the Cry1Aa active forms (65 and 58kDa) during prolonged incubations, causing the alterations described previously. Three subfamilies of aminopeptidase (APN) receptors were detected in both larvae instars with different intensities and molecular weights (150kDa and 55kDa for APN1, and 90kDa for APN2 and APN4). Remarkably, binding assay using Cry1Aa toxin seems to have no direct correlation with larval stages toxicity differences, since same putative receptors were detected. Understanding the reasons for the clear differences in the effectiveness of Cry1Aa toxins during larval development stages of E. kuehniella is very important for the design of future improvement insecticidal approaches and for the accomplishment of resistance prevention strategies.

摘要

对具有经济重要性的作物害虫地中海粉螟(Ephestia kuehniella)的两个幼虫发育阶段进行了苏云金芽孢杆菌Cry1Aa毒素敏感性测试。生物测定表明,在幼虫发育阶段毒性降低。事实上,来自BNS3-Cry(pHT-cry1Aa)的Cry1Aa毒素对一龄幼虫(L1)毒性较低,饲料中的LC值约为421.02μg/g,对五龄幼虫(L5)无毒,而用作阳性对照的BLB1毒素对L1和L5龄幼虫的LC值分别约为56.96和84.21μg/g。与BLB1毒素造成的更广泛损伤相比,Cry1Aa毒素的作用在组织病理学观察中表现为中肠上皮的轻微破坏、上皮细胞的轻度肥大以及主要在L1幼虫阶段检测到的刷状缘膜(BBM)的轻微改变。有趣的是,发现Cry1Aa毒素的体外蛋白水解与幼虫阶段发育过程中的毒性差异相关。事实上,在L1中肠内检测到的弱蛋白酶活性导致Cry1Aa活性形式(65和58kDa)在长时间孵育过程中持续存在,从而引起上述改变。在两个幼虫龄期均检测到三个氨肽酶(APN)受体亚家族,其强度和分子量不同(APN1为150kDa和55kDa,APN2和APN4为90kDa)。值得注意的是,使用Cry1Aa毒素的结合试验似乎与幼虫阶段的毒性差异没有直接关系,因为检测到相同的假定受体。了解Cry1Aa毒素在E. kuehniella幼虫发育阶段有效性存在明显差异的原因,对于未来改进杀虫方法的设计和抗药性预防策略的实施非常重要。

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