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烟粉虱 MED 中的分泌型漆酶 1 参与粉虱-植物互作。

Secretory laccase 1 in Bemisia tabaci MED is involved in whitefly-plant interaction.

机构信息

Key Laboratory for Biology of Plant Disease and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

Key Lab of Integrated Crop Pest Management of Shandong Province, College of Agronomy and Plant Protection, Qingdao Agricultural University, Qingdao, 266109, China.

出版信息

Sci Rep. 2017 Jun 15;7(1):3623. doi: 10.1038/s41598-017-03765-y.

Abstract

The whitefly Bemisia tabaci is a phloem-feeding pest that lives predominantly on herbaceous species and causes serious damage to hosts. Whitefly saliva is thought to contain proteins that modulate plant defences and facilitate feeding. A predicted secreted protein, laccase 1 (LAC1), was found in the salivary gland transcriptome of B. tabaci and might be existed in the watery saliva of B. tabaci. As LAC1 has a potential role in detoxification of secondary plant compounds in insects, we speculated that it may participate in the insect's response to plant defences. Here, we cloned the complete cDNA of LAC1 and found that (1) LAC1 was highly expressed in the salivary gland (SG) and midgut; (2) LAC1 transcript level in head (containing SG) was 2.1 times higher in plant-fed than in diet-fed whiteflies and 1.6 times higher in the head and 23.8 times higher in the midgut of whiteflies that fed on jasmonic acid (JA)-sprayed plants than on control plants; and (3) silencing LAC1 decreased the survival rate of plant-fed whiteflies but had a marginal effect on whiteflies raised on an artificial diet. These results indicate that LAC1 enables whiteflies to overcome the chemical defences of host plants and might act as an effector in saliva.

摘要

烟粉虱是一种主要以草本植物为食的韧皮部取食害虫,对寄主造成严重损害。人们认为烟粉虱的唾液中含有调节植物防御和促进取食的蛋白质。在烟粉虱的唾液腺转录组中发现了一种预测的分泌蛋白漆酶 1(LAC1),它可能存在于烟粉虱的水样唾液中。由于 LAC1 在昆虫中对次生植物化合物的解毒可能具有潜在作用,我们推测它可能参与昆虫对植物防御的反应。在这里,我们克隆了 LAC1 的全长 cDNA,并发现(1)LAC1 在唾液腺(SG)和中肠中高度表达;(2)在植物喂养的烟粉虱中,头部(包含 SG)的 LAC1 转录水平比在饮食喂养的烟粉虱中高 2.1 倍,在头部和中肠中比在 JA 喷雾植物上喂养的烟粉虱中高 1.6 倍和 23.8 倍;(3)沉默 LAC1 降低了植物喂养的烟粉虱的存活率,但对在人工饲养的烟粉虱上的影响微不足道。这些结果表明,LAC1 使烟粉虱能够克服寄主植物的化学防御,并且可能作为唾液中的效应物发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfb2/5472608/afa6bae996ce/41598_2017_3765_Fig1_HTML.jpg

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