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蚕蛹天蚕素及其类似物对烟粉虱(半翅目:蚜科)的影响及其在蚜虫肠道中被酶降解的情况。

Effects of Manduca sexta allatostatin and an analogue on the peach-potato aphid Myzus persicae (hemiptera: aphididae) and degradation by enzymes in the aphid gut.

机构信息

The Food and Environment Research Agency, Sand Hutton, York, United Kingdom.

出版信息

Arch Insect Biochem Physiol. 2010 Nov;75(3):139-57. doi: 10.1002/arch.20376.

Abstract

The oral toxicity of the C-type allatostatin, Manduca sexta allatostatin (Manse-AS) and the analogue δR³δR⁵Manse-AS, where R residues were replaced by their D-isomers, were tested against the peach-potato aphid Myzus persicae by incorporation into an artificial diet. Both peptides had significant dose-dependent effects on mortality, growth, and fecundity compared with control insects. The analogue, δR³δR⁵Manse-AS, had an estimated LC₅₀ of 0.31 µg/µl diet and was more potent than Manse-AS (estimated LC₅₀ of 0.58 µg/µl diet). At a dose of 0.35 µg δR³δR⁵Manse-AS/µl diet, 76% of the aphids were dead after 6 days and all were dead after 10 days. In comparison, three times the dose of Manse-AS was required to achieve 74% mortality after 8 days and 98% mortality after 16 days. The degradation of both peptides by extracts prepared from the gut of M. persicae was investigated. The estimated half-life of Manse-AS, when incubated with the gut extract from M. persicae, was 31 min. Degradation was due to a cathepsin L-like cysteine protease, carboxypeptidase-like activity, endoprotease activity with glutamine specificity, pyroglutamate aminopeptidase activity, and possibly trypsin-like proteases. The half-life of the δR³δR⁵ Manse-AS analogue was enhanced (73 min) with the D-isomers of R appearing to prevent cleavage around the R residues by cathepsin L-like cysteine proteases or from trypsin-like proteases. The greater stability of the analogue may explain its increased potency in M. persicae. This work demonstrates the potential use of Manse-AS and analogues, with greater resistance to enzymatic attack, in aphid control strategies.

摘要

C 型脑肠肽,Manduca sexta 脑肠肽(Manse-AS)及其类似物 δR³δR⁵Manse-AS(其中 R 残基被其 D-异构体取代)的口服毒性通过掺入人工饲料来测试对烟粉虱 Myzus persicae 的影响。与对照昆虫相比,这两种肽都具有显著的剂量依赖性死亡率、生长和繁殖力的影响。类似物 δR³δR⁵Manse-AS 的估计 LC₅₀为 0.31 μ g/μl 饮食,比 Manse-AS 更有效(估计 LC₅₀为 0.58 μ g/μl 饮食)。在 0.35 μ g δR³δR⁵Manse-AS/μl 饮食剂量下,6 天后 76%的蚜虫死亡,10 天后全部死亡。相比之下,需要三倍剂量的 Manse-AS 才能在 8 天后达到 74%的死亡率,在 16 天后达到 98%的死亡率。研究了从烟粉虱肠道中提取的提取物对这两种肽的降解情况。当与烟粉虱肠道提取物孵育时,Manse-AS 的估计半衰期为 31 分钟。降解是由于组织蛋白酶 L 样半胱氨酸蛋白酶、羧肽酶样活性、具有谷氨酰胺特异性的内切蛋白酶活性、焦谷氨酸氨肽酶活性以及可能的胰蛋白酶样蛋白酶引起的。δR³δR⁵ Manse-AS 类似物的半衰期延长(73 分钟),这表明 R 残基的类似物的 D-异构体可能防止了组织蛋白酶 L 样半胱氨酸蛋白酶或胰蛋白酶样蛋白酶的切割。类似物的稳定性更高可能解释了它在烟粉虱中的更高效力。这项工作表明,Manse-AS 及其类似物具有更大的抗酶攻击能力,可能用于蚜虫控制策略。

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