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Nanostructural and mechanical property changes to spider silk as a consequence of insecticide exposure

机译:杀虫剂暴露导致蜘蛛丝的纳米结构和机械性能发生变化

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Neonicotinoids are one of the world's most extensively used insecticides, but their sub-lethal influences on non-target and beneficial organisms are not well known. Here we exposed the orb web spider Parawixia audax, which is found on arable lands in Uruguay, to a sub-lethal concentration of the broad spectrum insecticide Geonex (thiamethoxam lambda-cyhalothrin) and monitored their web building. We collected their major ampullate silk and subjected it to tensile tests, wide-angle X-ray diffraction (WAXS) analysis, and amino acid composition analysis. Around half of the exposed spiders failed to build webs. Those that built webs produced irregular webs lacking spiral threads. The mechanical properties, nanostructures, and amino acid compositions of the silk were all significantly affected when the spiders were exposed to insecticides. We found that silk proline, glutamine, alanine and glycine compositions differed between treatments, indicating that insecticide exposure induced downregulation of the silk protein MaSp2. The spiders in the control group had stronger, tougher and more extensible silks than those in the insecticide exposed group. Our WAXS analyses showed the amorphous region nano structures became misaligned in insecticide exposed silks, explaining their greater stiffness. While the insecticide dose we subjected P. audax to was evidently sub-lethal, the changes in silk physicochemical properties and the impairment to web building will indelibly affect their ability to catch prey. (C) 2017 Elsevier Ltd. All rights reserved.
机译:新烟碱是世界上使用最广泛的杀虫剂之一,但它们对非靶标和有益生物的亚致死作用尚不为人所知。在这里,我们将在乌拉圭的耕地上发现的球网蜘蛛Parawixia audax暴露于亚致死浓度的广谱杀虫剂Geonex(噻虫嗪lambda-cyhalothrin)中,并监测了其网状构造。我们收集了他们的主要壶腹丝,并对其进行了拉伸测试,广角X射线衍射(WAXS)分析和氨基酸组成分析。大约一半的裸露蜘蛛无法建立网。那些制造网的人生产出不规则的网,缺少螺旋线。当蜘蛛暴露于杀虫剂时,丝绸的机械性能,纳米结构和氨基酸组成均受到显着影响。我们发现丝脯氨酸,谷氨酰胺,丙氨酸和甘氨酸组成在处理之间有所不同,这表明杀虫剂暴露引起丝蛋白MaSp2的下调。对照组的蜘蛛比暴露于杀虫剂的蜘蛛具有更强,更坚韧和更可延伸的丝。我们的WAXS分析表明,在暴露于杀虫剂的丝中,非晶区纳米结构变得错位,这说明它们的刚度更高。虽然我们对P. audax服下的杀虫剂剂量显然是致命的,但蚕丝理化特性的变化和对网状结构的损害将不可磨灭地影响其捕获猎物的能力。 (C)2017 Elsevier Ltd.保留所有权利。

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