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α-葡萄糖苷酶抑制剂溴康唑醇对银叶粉虱(Bemisia argentifolii)碳水化合物代谢的影响。

Effect of the alpha-glucosidase inhibitor, bromoconduritol, on carbohydrate metabolism in the silverleaf whitefly, Bemisia argentifolii.

作者信息

Salvucci M

机构信息

U.S. Department of Agriculture, Agricultural Research Service, Western Cotton Research Laboratory, Phoenix, Arizona 85040-8830, USA.

出版信息

Arch Insect Biochem Physiol. 2000 Nov;45(3):117-28. doi: 10.1002/1520-6327(200011)45:3<117::AID-ARCH3>3.0.CO;2-T.

Abstract

The involvement of alpha-glucosidase in the partitioning of ingested sucrose between excretion and incorporation was investigated in the silverleaf whitefly (Bemisia argentifolii). Approximately half of the alpha-glucosidase activity in adult whiteflies was soluble and the remainder was associated with membranes. In contrast, almost all of the trehalulose synthase was membrane-associated. Isoelectric focusing revealed that soluble and membrane-associated alpha-glucosidases were each composed of several isozymes in the pH 5 to 6.5 range, but the distribution of activity among the various isozymes was different. Bromoconduritol, an inhibitor of glucosidases, inhibited trehalulose synthase and alpha-glucosidase activities in whitefly extracts. Inhibition was greatest when bromoconduritol was incubated with extracts prior to the addition of sucrose, consistent with the irreversible nature of this inhibitor. Addition of bromoconduritol to artificial diets decreased the extractable trehalulose synthase and alpha-glucosidase activities by about 30 and 50%, respectively. Ingestion of bromoconduritol reduced the amount of carbohydrate excreted by about 80% without changing the distribution of the major honeydew sugars or causing an increase in the proportion of sucrose that was excreted. Ingestion of bromoconduritol did not affect respiration, the content and distribution of soluble carbohydrates in whitefly bodies, or the conversion of labeled sucrose into glucose, trehalose and isobemisiose. The results indicate that partitioning of ingested carbon between excretion and metabolism in whiteflies is highly regulated, probably involving multiple forms of alpha-glucosidase that facilitate a separation of the processes involved in the metabolic utilization of sucrose from those involved in excretion of excess carbohydrate. Arch. Insect Biochem. Physiol. 45:117-128, 2000. Published 2001 Wiley-Liss, Inc.

摘要

在烟粉虱(Bemisia argentifolii)中研究了α-葡萄糖苷酶在摄入的蔗糖在排泄与同化之间分配过程中的作用。成年粉虱中约一半的α-葡萄糖苷酶活性是可溶的,其余与膜相关。相比之下,几乎所有的海藻糖合酶都与膜相关。等电聚焦显示,可溶的和与膜相关的α-葡萄糖苷酶在pH 5至6.5范围内均由几种同工酶组成,但各种同工酶之间的活性分布不同。葡萄糖苷酶抑制剂溴代康杜立醇抑制了粉虱提取物中的海藻糖合酶和α-葡萄糖苷酶活性。当在添加蔗糖之前将溴代康杜立醇与提取物一起孵育时,抑制作用最大,这与该抑制剂的不可逆性质一致。向人工饲料中添加溴代康杜立醇分别使可提取的海藻糖合酶和α-葡萄糖苷酶活性降低了约30%和50%。摄入溴代康杜立醇可使排泄的碳水化合物量减少约80%,而不会改变主要蜜露糖的分布,也不会导致排泄的蔗糖比例增加。摄入溴代康杜立醇不影响呼吸作用、粉虱体内可溶性碳水化合物的含量和分布,也不影响标记蔗糖向葡萄糖、海藻糖和异烟粉虱糖的转化。结果表明,粉虱摄入的碳在排泄与代谢之间的分配受到高度调节,可能涉及多种形式的α-葡萄糖苷酶,这些酶有助于将蔗糖代谢利用过程与多余碳水化合物排泄过程分开。《昆虫生物化学与生理学档案》45:117 - 128, 2000年。2001年由Wiley - Liss公司出版。

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