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Immunity of an insect herbivore to an entomovirus is affected by different host plants

文献类型: 外文期刊

作者: Wang, Jin-Yan 1 ; Zhang, Hao 1 ; Siemann, Evan 2 ; Ji, Xiang-Yun 1 ; Chen, Yi-Juan 1 ; Wang, Yi 3 ; Jiang, Jie-Xian 1 ; W 1 ;

作者机构: 1.Shanghai Acad Agr Sci, Shanghai Key Lab Protected Hort Technol, Shanghai Engn Res Ctr Low Carbon Agr, Ecoenvironm Protect Res Inst, Shanghai 201403, Peoples R China

2.Rice Univ, Dept Biosci, Houston, TX USA

3.Yunnan Univ, Lab Ecol & Evolutionary Biol, Kunming, Yunnan, Peoples R China

关键词: enzyme activity; gene expression; hemolymph; melanization enzymes; nucleopolyhedrovirus; plant-mediated effects; tritrophic interactions; virus production

期刊名称:PEST MANAGEMENT SCIENCE ( 影响因子:4.845; 五年影响因子:4.674 )

ISSN: 1526-498X

年卷期:

页码:

收录情况: SCI

摘要: BACKGROUND Interactions between herbivorous insects and entomoviruses may depend on host plant, perhaps mediated through changes in herbivore innate immunity. RESULTS Caterpillars (Spodoptera exigua) fed Glycine max had high viral loads and low melanization rates together with low melanization enzyme [PO, DDC, TH] activities and gene expressions. Caterpillars fed Ipomoea aquatica had low viral loads and high melanization, gene activities and gene expressions while those fed Brassica oleracea or artificial diet had intermediate levels of each. Melanization rates were negatively correlated with viral loads and positively correlated with activity and expression of each of the three enzymes. Some diet effects on enzymes were constitutive because the same diets led to low (G. max) or high (I. aquatica) melanization related gene activities and expressions without infection. CONCLUSION Diet influences the interactions between insect herbivores and viruses by shaping the innate immune response both at the onset of infection and afterwards as viral loads accumulate over a period of days. In addition, diets that lead to low viral loads are associated with high activities and gene expressions of a variety of melanization related enzymes suggesting a common causative mechanism. (c) 2019 Society of Chemical Industry

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