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Transcriptome-wide responses of adult melon thrips (Thrips palmi) associated with capsicum chlorosis virus infection

机译:成年瓜蓟马(蓟马蓟马)与辣椒绿化病毒感染相关的转录组反应

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摘要

Thrips palmi is a widely distributed major agricultural pest in the tropics and subtropics, causing significant losses in cucurbit and solanaceous crops through feeding damage and transmission of tospoviruses. Thrips palmi is a vector of capsicum chlorosis virus (CaCV) in Australia. The present understanding of transmission biology and potential effects of CaCV on T. palmi is limited. To gain insights into molecular responses to CaCV infection, we performed RNA-Seq to identify thrips transcripts that are differentially-abundant during virus infection of adults. De-novo assembly of the transcriptome generated from whole bodies of T. palmi adults generated 166,445 contigs, of which ~24% contained a predicted open reading frame. We identified 1,389 differentially-expressed (DE) transcripts, with comparable numbers up- (708) and down-regulated (681) in virus-exposed thrips compared to non-exposed thrips. Approximately 59% of these DE transcripts had significant matches to NCBI non-redundant proteins (Blastx) and Blast2GO identified provisional functional categories among the up-regulated transcripts in virus-exposed thrips including innate immune response-related genes, salivary gland and/or gut-associated genes and vitellogenin genes. The majority of the immune-related proteins are known to serve functions in lysosome activity and melanisation in insects. Most of the up-regulated oral and extra-oral digestion-associated genes appear to be involved in digestion of proteins, lipids and plant cell wall components which may indirectly enhance the likelihood or frequency of virus transmission or may be involved in the regulation of host defence responses. Most of the down-regulated transcripts fell into the gene ontology functional category of ‘structural constituent of cuticle’. Comparison to DE genes responsive to tomato spotted wilt virus in Frankliniella occidentalis indicates conservation of some thrips molecular responses to infection by different tospoviruses. This study assembled the first transcriptome in the genus Thrips and provides important data to broaden our understanding of networks of molecular interactions between thrips and tospoviruses.
机译:棕榈蓟马是在热带和亚热带广泛分布的主要农业害虫,通过饲喂损害和传播弓形病毒而在葫芦科和茄科作物中造成重大损失。棕榈蓟马是澳大利亚的辣椒绿化病毒(CaCV)的载体。目前对传播生物学的了解以及CaCV对棕榈棕的潜在影响有限。为了深入了解对CaCV感染的分子反应,我们进行了RNA-Seq鉴定,以鉴定成年人病毒感染过程中差异丰富的蓟马转录本。从棕榈棕榈成虫的全身产生的转录组的从头组装,产生了166,445个重叠群,其中约24%包含一个预测的开放阅读框。我们鉴定了1,389个差异表达(DE)转录本,与未暴露的蓟马相比,在暴露于病毒的蓟马中有相当数量的上调(708)和下调(681)。这些DE成绩单中约有59%与NCBI非冗余蛋白(Blastx)显着匹配,并且Blast2GO在病毒暴露的蓟马中上调的成绩单中鉴定出临时功能类别,包括先天免疫应答相关基因,唾液腺和/或肠道。相关基因和卵黄蛋白原基因。已知大多数与免疫有关的蛋白质在昆虫的溶酶体活性和黑色素化中发挥作用。大多数上调的口腔和口腔外消化相关基因似乎参与蛋白质,脂质和植物细胞壁成分的消化,这可能间接增加病毒传播的可能性或频率,或者可能参与宿主的调控。防御反应。大多数被下调的转录物属于“表皮的结构成分”的基因本体功能类别。与对西方Frankliniella occidentalis中的番茄斑萎病毒有反应的DE基因的比较表明,一些蓟马分子对不同的脊灰病毒感染具有分子反应。这项研究在蓟马属中组装了第一个转录组,并提供了重要的数据,以拓宽我们对蓟马和弓形病毒之间分子相互作用网络的理解。

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