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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Whole-genome expression analysis of Rice black-streaked dwarf virus in different plant hosts and small brown planthopper
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Whole-genome expression analysis of Rice black-streaked dwarf virus in different plant hosts and small brown planthopper

机译:水稻黑条矮缩病毒在不同植物寄主和小褐飞虱中的全基因组表达分析

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摘要

Rice black-streaked dwarf virus (RBSDV) can infect a number of gramineous plants and cause severe crop yield losses in southeast Asian countries. The virus is transmitted by small brown planthopper (SBPH) in a persistent circulative manner. The interactions between RBSDV and its different hosts remain unknown. Besides, how the virus adjusts itself to infect different hosts is unclear. In the present study, the relative RNA levels of the thirteen RBSDV genes in rice, maize, wheat, and SBPH were measured by real-time quantitative PCR. P7-1 and P10 genes were predominantly expressed whereas P8 and P7-2 genes were expressed at low levels in plant hosts. Similar to the expression in rice, P7-1 was the most abundantly expressed gene and P8 was expressed at the lowest level in SBPH, indicating that RBSDV adopts the same strategy to infect distinct hosts. The high expression levels of the P7-1 gene in both plants and insect suggest that it can be used as the target gene for disease diagnostics. However, the expression levels of some genes varied from host to host. P5-1, P6 and P9-1, the components of the RBSDV viroplasm, are differentially expressed in different hosts. Moreover, western blot analysis showed that the quantity of the P9-1 protein was more abundant in SBPH than in plant hosts. These data indicate that the virus may adjust its own gene expression to replicate in different hosts. Analysis of time course of gene expression revealed that P7-1 stands out as the only gene highly expressed at the earliest time point and its expression precedes all others throughout infection from 8 to 24 days post-inoculation. The high expression levels of the P7-1 gene suggest that it plays a significant role in RBSDV-host interactions. (C) 2015 Elsevier B.V. All rights reserved.
机译:水稻黑纹矮化病毒(RBSDV)可以感染许多禾本科植物,并在东南亚国家造成严重的农作物减产。该病毒由小褐飞虱(SBPH)以持续的循环方式传播。 RBSDV及其不同主机之间的交互仍然未知。此外,还不清楚病毒如何自我调节以感染不同的宿主。在本研究中,通过实时定量PCR测量了水稻,玉米,小麦和SBPH中13个RBSDV基因的相对RNA水平。 P7-1和P10基因主要在植物宿主中表达,而P8和P7-2基因则低表达。与水稻中的表达相似,在SBPH中P7-1是表达最丰富的基因,而P8则以最低的水平表达,这表明RBSDV采用相同的策略感染不同的宿主。 P7-1基因在植物和昆虫中的高表达水平表明它可以用作疾病诊断的靶基因。但是,某些基因的表达水平因宿主而异。 RBSDV病毒质的成分P5-1,P6和P9-1在不同宿主中差异表达。此外,蛋白质印迹分析表明SBPH中P9-1蛋白的量比植物宿主中丰富。这些数据表明该病毒可以调节其自身的基因表达以在不同宿主中复制。对基因表达的时间过程的分析显示,P7-1是最早出现的唯一高表达基因,在整个感染后8到24天,其表达在所有其他基因中都领先于其他基因。 P7-1基因的高表达水平表明它在RBSDV-宿主相互作用中起着重要作用。 (C)2015 Elsevier B.V.保留所有权利。

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