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淀粉和蔗糖消化在伴人粉螨营养生物学中的重要性:α-淀粉酶和α-葡萄糖苷酶是基于抑制剂的粉螨控制策略的合适靶点。

The importance of starch and sucrose digestion in nutritive biology of synanthropic acaridid mites: alpha-amylases and alpha-glucosidases are suitable targets for inhibitor-based strategies of mite control.

作者信息

Erban Tomas, Erbanova Michaela, Nesvorna Marta, Hubert Jan

机构信息

Crop Research Institute, Prague, Czech Republic.

出版信息

Arch Insect Biochem Physiol. 2009 Jul;71(3):139-58. doi: 10.1002/arch.20312.

Abstract

The adaptation of nine species of mites that infest stored products for starch utilization was tested by (1) enzymatic analysis using feces and whole mite extracts, (2) biotests, and (3) inhibition experiments. Acarus siro, Aleuroglyphus ovatus, and Tyroborus lini were associated with the starch-type substrates and maltose, with higher enzymatic activities observed in whole mite extracts. Lepidoglyphus destructor was associated with the same substrates but had higher activities in feces. Dermatophagoides farinae, Chortoglyphus arcuatus, and Caloglyphus redickorzevi were associated with sucrose. Tyrophagus putrescentiae and Carpoglyphus lactis had low or intermediate enzymatic activity on the tested substrates. Biotests on starch additive diets showed accelerated growth of species associated with the starch-type substrates. The inhibitor acarbose suppressed starch hydrolysis and growth of the mites. We suggest that the species with higher starch hydrolytic activity in feces were more tolerant to acarbose, and alpha-amylase and alpha-glucosidase of synanthropic mites are suitable targets for inhibitor-based strategies of mite control.

摘要

通过以下方法测试了9种侵染储藏产品的螨类对淀粉利用的适应性:(1)使用粪便和全螨提取物进行酶分析,(2)生物测试,以及(3)抑制实验。粉螨、椭圆食粉螨和亚麻嗜渣螨与淀粉类底物和麦芽糖相关,在全螨提取物中观察到较高的酶活性。腐食酪螨与相同底物相关,但在粪便中具有较高活性。粉尘螨、嗜卷书虱和雷氏嗜木螨与蔗糖相关。腐食酪螨和乳果螨在测试底物上具有低或中等酶活性。对淀粉添加日粮的生物测试表明,与淀粉类底物相关的螨类生长加速。抑制剂阿卡波糖抑制淀粉水解和螨类生长。我们认为,粪便中淀粉水解活性较高的螨类对阿卡波糖更具耐受性,而共栖螨类的α-淀粉酶和α-葡萄糖苷酶是基于抑制剂的螨类控制策略的合适靶点。

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