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从自上而下的角度发现生物标志物:通过遗传与 2-D DIGE 相结合发现昆虫(同翅目:蚜科)高效传播病毒的蛋白生物标志物。

Biomarker discovery from the top down: Protein biomarkers for efficient virus transmission by insects (Homoptera: Aphididae) discovered by coupling genetics and 2-D DIGE.

机构信息

Robert W. Holley Center for Agriculture and Health, USDA-ARS, Cornell University, Ithaca, NY 14853, USA.

出版信息

Proteomics. 2011 Jun;11(12):2440-58. doi: 10.1002/pmic.201000519.

DOI:10.1002/pmic.201000519
PMID:21648087
Abstract

Yellow dwarf viruses cause the most economically important virus diseases of cereal crops worldwide and are vectored by aphids. The identification of vector proteins mediating virus transmission is critical to develop sustainable virus management practices and to understand viral strategies for circulative movement in all insect vectors. Previously, we applied 2-D DIGE to an aphid filial generation 2 population to identify proteins correlated with the transmission phenotype that were stably inherited and expressed in the absence of the virus. In the present study, we examined the expression of the DIGE candidates in previously unstudied, field-collected aphid populations. We hypothesized that the expression of proteins involved in virus transmission could be clinically validated in unrelated, virus transmission-competent, field-collected aphid populations. All putative biomarkers were expressed in the field-collected biotypes, and the expression of nine of these aligned with the virus transmission-competent phenotype. The strong conservation of the expression of the biomarkers in multiple field-collected populations facilitates new and testable hypotheses concerning the genetics and biochemistry of virus transmission. Integration of these biomarkers into current aphid-scouting methodologies will enable rational strategies for vector control aimed at judicious use and development of precision pest control methods that reduce plant virus infection.

摘要

黄矮病毒是全球范围内对谷类作物造成最严重经济损失的病毒病的病原体,其传播媒介是蚜虫。鉴定介导病毒传播的媒介蛋白对于制定可持续的病毒管理策略以及理解病毒在所有昆虫媒介中的循环运动策略至关重要。此前,我们应用 2-D DIGE 对蚜虫的第二代后代群体进行了分析,以鉴定与传播表型相关的、在没有病毒的情况下稳定遗传和表达的蛋白质。在本研究中,我们研究了以前未研究过的、从田间采集的蚜虫种群中 DIGE 候选物的表达情况。我们假设,与病毒传播相关的蛋白质的表达可以在无关联的、具有病毒传播能力的、从田间采集的蚜虫种群中进行临床验证。所有假定的生物标志物都在田间采集的生物型中表达,其中 9 种的表达与具有病毒传播能力的表型一致。这些生物标志物在多个田间采集的种群中的表达具有很强的保守性,这为病毒传播的遗传学和生物化学提供了新的、可测试的假说。将这些生物标志物整合到当前的蚜虫监测方法中,将能够制定合理的媒介控制策略,旨在明智地利用和开发精准害虫控制方法,以减少植物病毒感染。

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