Triguéros V, Wang M, Père D, Paquereau L, Chavant L, Fournier D
Université Paul Sabatier, Laboratoire de Synthèse et Physicochimie des Molécules d'Intérêt Biologique, UMR CNRS 5068, Groupe de Biochimie des Protéines, Toulouse, France.
Arch Insect Biochem Physiol. 2000 Dec;45(4):175-9. doi: 10.1002/1520-6327(200012)45:4<175::AID-ARCH5>3.0.CO;2-3.
Lectins from plants present an insecticidal activity most probably through their carbohydrate binding properties; as a consequence, their toxicity should vary with the presence of a competitive sugar in the ingested food. In order to test this hypothesis, we performed competition experiments between insecticidal activity and carbohydrate binding. For this purpose, we used a lectin from Lathyrus ochrus and the specific carbohydrate for this protein, glucose. In toxicological tests with Drosophila melanogaster, we observed a decrease of lectin toxicity when glucose was added to the larva-rearing medium. This result suggests that the toxicity of the lectin is correlated to its ability to bind sugar in the insect digestive tract and stresses the importance of sugar composition of the nutriment used for toxicological testing of lectins or in genetically modified plants.
植物凝集素很可能通过其碳水化合物结合特性呈现出杀虫活性;因此,它们的毒性应会因摄入食物中竞争性糖类的存在而有所不同。为了验证这一假设,我们进行了杀虫活性与碳水化合物结合之间的竞争实验。为此,我们使用了来自山黧豆的一种凝集素以及该蛋白质的特异性碳水化合物——葡萄糖。在对黑腹果蝇进行的毒理学试验中,我们观察到当向幼虫饲养培养基中添加葡萄糖时,凝集素的毒性降低。这一结果表明,凝集素的毒性与其在昆虫消化道中结合糖类的能力相关,并强调了用于凝集素毒理学测试或转基因植物的营养物质中糖类组成的重要性。