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首页> 外文期刊>Peptides: An International Journal >Effects of Manduca sexta allatostatin and an analog on the pea aphid Acyrthosiphon pisum (Hemiptera: Aphididae) and degradation by enzymes from the aphid gut.
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Effects of Manduca sexta allatostatin and an analog on the pea aphid Acyrthosiphon pisum (Hemiptera: Aphididae) and degradation by enzymes from the aphid gut.

机译:Manduca sexta allatostatin和类似物对豌豆蚜虫蚜(Ayrthosiphon pisum)(蚜虫:蚜虫)的影响以及被蚜虫肠道内的酶降解的作用。

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摘要

The C-type allatostatin, Manduca sexta allatostatin (Manse-AS) and the analog delta R(3)delta R(5)Manse-AS, where R residues were replaced by their d-isomers, were tested for oral toxicity against the pea aphid Acyrthosiphon pisum (Harris) by incorporation into an artificial diet. Both peptides had significant dose-dependent feeding suppression effects, resulting in mortality, reduced growth and fecundity compared with control insects. The delta R(3)delta R(5)Manse-AS analog had an estimated LC(50) of 0.18 microg/microl diet, and was more potent than Manse-AS. At a dose of 0.35 microg delta R(3)delta R(5)Manse-AS/microl diet, 98% of aphids were dead within 3 days, at a rate similar to those aphids that had been starved (no diet controls). On comparison, it required 13 days and three times the dose of Manse-AS fed to aphids to attain 96% mortality. It is possible that the feeding suppression effects of Manse-AS on aphids are due to the inhibition of gut motility. The estimated half-life of Manse-AS when incubated with a gut extract from A. pisum was 54 min. Degradation was most likely due to cathepsin L cysteine and/or trypsin-like proteases, by an unidentified glutamine-specific protease and by a carboxypeptidase-like enzyme. The d-isomers of R in the Manse-AS analog appeared to prevent hydrolysis by cathepsin L cysteine and trypsin-like enzymes, and enhance its half-life (145 min). However delta R(3)delta R(5)Manse-AS was cleaved by enzymes with carboxypeptidase-like and chymotrypsin-like activity. The increased stability of the Manse-AS analog may explain its enhanced feeding suppression effects when continually fed to aphids, and demonstrates the potential use of Manse-AS in a strategy to control aphid pests.
机译:测试了C型脲醛抑素,六倍体Manduca sexta脲抑素(Manse-AS)和类似的delta R(3)delta R(5)Manse-AS,其中R残基被其d-异构体取代,对豌豆有口服毒性蚜虫Acyrthosiphon pisum(Harris)通过掺入人工饮食而获得。与对照昆虫相比,两种肽均具有显着的剂量依赖性饲喂抑制作用,从而导致死亡率,生长和繁殖力下降。 δR(3)δR(5)Manse-AS类似物的LC(50)估计值为0.18微克/微升饮食,并且比Manse-AS更有效。以0.35微克Delta R(3)delta R(5)Manse-AS /微升饮食的剂量,三天内98%的蚜虫死亡,其发生率与饥饿的蚜虫相似(无饮食控制)。相比之下,它需要13天和3倍剂量的Manse-AS饲喂蚜虫才能达到96%的死亡率。 Manse-AS对蚜虫的摄食抑制作用可能是由于抑制肠蠕动引起的。当与来自Pisum的肠提取物一起孵育时,Manse-AS的估计半衰期为54分钟。降解最可能是由于组织蛋白酶L半胱氨酸和/或胰蛋白酶样蛋白酶,未知的谷氨酰胺特异性蛋白酶和羧肽酶样酶引起的。 Manse-AS类似物中R的d异构体似乎可以阻止组织蛋白酶L半胱氨酸和胰蛋白酶样酶的水解,并延长其半衰期(145分钟)。但是,δR(3)δR(5)Manse-AS被具有羧肽酶样和胰凝乳蛋白酶样活性的酶裂解。 Manse-AS类似物稳定性的提高可以解释其在连续饲喂蚜虫时增强的饲喂抑制作用,并证明了Manse-AS在防治蚜虫害虫的策略中的潜在用途。

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