首页> 外文期刊>Journal of Stored Products Research >Lipid adsorption of diatomaceous earths and increased water permeability in the epicuticle layer of the cowpea weevil Callosobruchus maculatus (F.) and the bean weevil Acanthoscelides obtectus (Say) (Chrysomelidae)
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Lipid adsorption of diatomaceous earths and increased water permeability in the epicuticle layer of the cowpea weevil Callosobruchus maculatus (F.) and the bean weevil Acanthoscelides obtectus (Say) (Chrysomelidae)

机译:the豆象鼻甲(Callosobruchus maculatus(F.)和豆象鼻甲Acanthoscelides obtectus(Say)(Chrysomelidae)的表皮层中硅藻土的脂质吸附和透水性增加

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摘要

Newly emerged females of the cowpea weevil Callosobruchus maculatus (F.) and bean weevil Acantho-scelides obtectus (Say) were exposed to diatomaceous earth (DE). The cuticular water loss rate (mu g cm(-2) h(-1)) of the DE treated and untreated weevils was determined gravimetrically based on the total body mass changed at 25 +/- 1 degrees C and 75 +/- 5% r.h. within a 48 h period. Fatty acid profiles comprising acids with a carbon chain length between 9 and 20 carbon atoms (C-9-C-20) of C. maculatus (F.) and A. obtectus (Say) were studied comparatively by using extracted DE particles from DE treated weevils, pure DE, water extraction and hexane extraction of the weevils. Peak area percentages of the GC chromatograms were used to compare the cuticular lipid compositions. The cuticular water loss rate (CWLR) of DE treated weevils was significantly higher than that untreated weevils. Despite of the DE treated weevils strive to control their CWLR within the first 10-12 h, CWLR drop significantly until their physical death. DE and hexane extracts contained only fatty acid chain lengths between C-16 and C-18. The major fatty acid identified in the DE extracts was oleic acid in the C-18:2cis9 group which averaged to about 55.7 +/- 3.04% and 63.8 +/- 3.52% in C maculatus and A. obtectus, respectively. Hexane extracts showed that cuticular hydrocarbons of the C maculatus were dominated by C-18:2cis9,C-12 and C-16:0 equivalents to the fatty acids of linoleic and palmitic acids, respectively. The loss of these fatty acids due to adsorption of DE may result in a greater water permeability of the insect cuticle and thus lead to desiccation and mortality. (C) 2015 Elsevier Ltd. All rights reserved.
机译:the豆象鼻虫Callosobruchus maculatus(F.)和豆象鼻虫Acantho-scelides obtectus(Say)的新雌成虫暴露于硅藻土(DE)。根据在25 +/- 1摄氏度和75 +/- 5摄氏度下的总体重变化,通过重量分析法确定经DE处理和未处理的象鼻虫的表皮失水率(μg cm(-2)h(-1)) %rh在48小时内。通过使用从DE中提取的DE颗粒,对包含碳链长度介于9和20个碳原子(C-9-C-20)的酸的脂肪酸分布图进行了比较研究。处理的象鼻虫,纯净的DE,象鼻虫的水萃取和己烷萃取。 GC色谱图的峰面积百分比用于比较表皮脂质组成。 DE处理的象鼻虫的表皮失水率(CWLR)显着高于未处理的象鼻虫。尽管接受DE治疗的象鼻虫努力在头10-12小时内控制其CWLR,但CWLR明显下降直至身体死亡。 DE和己烷提取物仅包含C-16和C-18之间的脂肪酸链长度。在DE提取物中鉴定出的主要脂肪酸是C-18:2cis9组中的油酸,其在斑马鱼和产盲曲霉中分别平均约为55.7 +/- 3.04%和63.8 +/- 3.52%。己烷提取物显示,黄斑C的表皮碳氢化合物分别以亚油酸和棕榈酸的脂肪酸的C-18:2cis9,C-12和C-16:0等价物为主。由于DE的吸附而导致的这些脂肪酸的损失可能导致昆虫表皮的更大的水渗透性,从而导致干燥和死亡。 (C)2015 Elsevier Ltd.保留所有权利。

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