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植物-昆虫相互作用:我们能从植物凝集素中学到什么?

Plant-insect interactions: what can we learn from plant lectins?

机构信息

Laboratory of Agrozoology, Department of Crop Protection, Ghent University, Ghent, Belgium.

出版信息

Arch Insect Biochem Physiol. 2010 Apr;73(4):193-212. doi: 10.1002/arch.20351.

Abstract

Many plant lectins have high anti-insect potential. Although the effects of most lectins are only moderately influencing development or population growth of the insect, some lectins have strong insecticidal properties. In addition, some studies report a deterrent activity towards feeding and oviposition behavior. Transmission of plant lectins to the next trophic level has been investigated for several tritrophic interactions. Effects of lectins with different sugar specificities can vary substantially with the insect species under investigation and with the experimental setup. Lectin binding in the insect is an essential step in exerting a toxic effect. Attempts have been made to study the interactions of lectins in several insect tissues and to identify lectin-binding receptors. Ingested lectins generally bind to parts of the insect gut. Furthermore, some lectins such as the Galanthus nivalus agglutinin (GNA) cross the gut epithelium into the hemolymph and other tissues. Recently, several candidate lectin-binding receptors have been isolated from midgut extracts. To date little is known about the exact mechanism for insecticidal activity of plant lectins. However, insect glycobiology is an emerging research field and the recent technological advances in the analysis of lectin carbohydrate specificities and insect glycobiology will certainly lead to new insights in the interactions between plant lectins and insects, and to a better understanding of the molecular mechanisms involved.

摘要

许多植物凝集素有很强的抗虫潜力。虽然大多数凝集素的作用只是适度地影响昆虫的发育或种群增长,但有些凝集素有很强的杀虫特性。此外,一些研究报告称,这些凝集素有阻止取食和产卵行为的作用。已经研究了几种三营养级相互作用中植物凝集素向下一个营养级的传递。具有不同糖特异性的凝集素的作用在很大程度上因所研究的昆虫种类和实验设置而异。凝集素在昆虫中的结合是发挥毒性作用的一个必要步骤。人们试图在几种昆虫组织中研究凝集素的相互作用,并鉴定凝集素结合受体。摄入的凝集素通常与昆虫肠道的某些部位结合。此外,一些凝集素,如雪花莲凝集素(GNA),穿过肠上皮进入血淋巴和其他组织。最近,从中肠提取物中分离出了几个候选凝集素结合受体。迄今为止,人们对植物凝集素杀虫活性的确切机制知之甚少。然而,昆虫糖生物学是一个新兴的研究领域,目前在分析凝集素碳水化合物特异性和昆虫糖生物学方面的技术进步,必将为植物凝集素与昆虫之间的相互作用提供新的认识,并更好地了解所涉及的分子机制。

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