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豌豆蚜幼虫表皮对糖类和氨基酸的吸收

Absorption of sugars and amino acids by the epidermis of Aphidius ervi larvae.

作者信息

Giordana B, Milani A, Grimaldi A, Farneti R, Casartelli M, Ambrosecchio M R, Digilio M C, Leonardi M G, de Eguileor M, Pennacchio F

机构信息

Dipartimento di Biologia, Università di Milano, via Celoria 26, 20133 Milan, Italy.

出版信息

J Insect Physiol. 2003 Dec;49(12):1115-24. doi: 10.1016/j.jinsphys.2003.08.010.

Abstract

Aphidius ervi Haliday (Hymenoptera, Braconidae) is an endophagous parasitoid of several aphid species of economic importance, widely used in biological control. The definition of a suitable artificial diet for in vitro mass production of this parasitoid is still an unresolved issue that, to be properly addressed, requires a deeper understanding both of its nutritional needs and of the functional properties of the larval epithelia involved in nutrient absorption. The experimental evidence presented in this paper unequivocally demonstrates that the uptake of sugars and amino acids takes place through the body surface of the larval stages of A. ervi. These nutrients are efficiently absorbed by the larval epidermis, but the transport rate progressively declines over time. The epidermis exhibits a cross-reactivity to antibodies raised against the mammalian facilitative glucose transporter GLUT2 and the sodium cotransporter SGLT1. The analysis of sugar transport sensitivity to specific inhibitors indicates the involvement of GLUT2-like transporters, while a role for SGLT1-like transporters is not supported. The peculiar pathways of nutrient absorption in A. ervi larvae further corroborate the general idea that the pre-imaginal stages of endophagous koinobiont Hymenoptera, like Metazoan parasites, show a high degree of physiological integration with their hosts.

摘要

豌豆蚜茧蜂(膜翅目,茧蜂科)是几种具有经济重要性的蚜虫的内寄生性天敌,广泛应用于生物防治。为这种寄生蜂进行体外大量繁殖确定合适的人工饲料仍是一个未解决的问题,要妥善解决这一问题,需要更深入地了解其营养需求以及参与营养吸收的幼虫上皮细胞的功能特性。本文给出的实验证据明确表明,豌豆蚜茧蜂幼虫阶段通过体表摄取糖类和氨基酸。这些营养物质被幼虫表皮有效吸收,但随着时间推移运输速率逐渐下降。表皮对针对哺乳动物易化葡萄糖转运蛋白GLUT2和钠协同转运蛋白SGLT1产生的抗体表现出交叉反应性。对糖类运输对特定抑制剂敏感性的分析表明存在类似GLUT2的转运蛋白参与其中,而未支持类似SGLT1的转运蛋白发挥作用。豌豆蚜茧蜂幼虫独特的营养吸收途径进一步证实了这样一个普遍观点,即内寄生广腹细腰亚目昆虫的成虫前期阶段,如同后生动物寄生虫一样,与其宿主表现出高度的生理整合。

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