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A developmentally regulated lipocalin-like gene is overexpressed in Tomato yellow leaf curl virus-resistant tomato plants upon virus inoculation, and its silencing abolishes resistance

机译:接种病毒后,在番茄黄叶卷曲病毒抗性番茄植株中过表达受调控的脂钙素样基因,并且其沉默消除了抗性

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To discover genes involved in tomato resistance to Tomato yellow leaf curl virus (TYLCV), we previously compared cDNA libraries from susceptible (S) and resistant (R) tomato lines. Among the genes preferentially expressed in R plants and upregulated by TYLCV infection was a gene encoding a lipocalin-like protein. This gene was termed Solanum lycopersicum virus resistant/susceptible lipocalin (SlVRSLip). The SlVRSLip structural gene sequence of R and S plants was identical. SlVRSLip was expressed in leaves during a 15-day window starting about 40 days after sowing (20 days after planting). SlVRSLip was upregulated by Bemisia tabaci (the TYLCV vector) feeding on R plant leaves, and even more strongly upregulated following whitefly-mediated TYLCV inoculation. Silencing of SlVRSLip in R plants led to the collapse of resistance upon TYLCV inoculation and to a necrotic response along the stem and petioles accompanied by ROS production. Contrary to previously identified tomato lipocalin gene DQ222981, SlVRSLip was not regulated by cold, nor was it regulated by heat or salt. The expression of SlVRSLip was inhibited in R plants in which the hexose transporter gene LeHT1 was silenced. In contrast, the expression of LeHT1 was not inhibited in SlVRSLip-silenced R plants. Hence, in the hierarchy of the gene network conferring TYLCV resistance, SlVRSLip is downstream of LeHT1. Silencing of another gene involved in resistance, a Permease-I like protein, did not affect the expression of SlVRSLip and LeHT1; expression of the Permease was not affected by silencing SlVRSLip or LeHT1, suggesting that it does not belong to the same network. The triple co-silencing of SlVRSLip, LeHT1 and Permease provoked an immediate cessation of growth of R plants upon infection and the accumulation of large amounts of virus. SlVRSLip is the first lipocalin-like gene shown to be involved in resistance to a plant virus.
机译:为了发现与番茄对番茄黄叶卷曲病毒(TYLCV)的抗性有关的基因,我们先前比较了易感(S)和抗性(R)番茄品系的cDNA文库。在R植物中优先表达并受TYLCV感染上调的基因中,有一个编码脂环蛋白样蛋白的基因。该基因被称为抗番茄白粉病病毒/易感脂蛋白(SlVRSLip)。 R和S植物的SlVRSLip结构基因序列相同。在播种后约40天(种植后20天)开始的15天窗内,SlVRSLip在叶片中表达。以烟粉虱为食的烟粉虱(TYLCV载体)上调了SlVRSLip,在粉虱介导的TYLCV接种后,SlVRSLip上调甚至更高。 R植物中SlVRSLip的沉默导致接种TYLCV时抗性的崩溃,并导致沿茎和叶柄的坏死响应并伴随着ROS的产生。与先前鉴定的番茄脂钙素基因DQ222981相反,SlVRSLip不受冷调节,也不受热或盐调节。在其中己糖转运蛋白基因LeHT1被沉默的R植物中,SlVRSLip的表达被抑制。相反,在SlVRSLip沉默的R植物中LeHT1的表达未受到抑制。因此,在赋予TYLCV抗性的基因网络的层次结构中,SlVRSLip位于LeHT1的下游。沉默另一个与抗性有关的基因,一种类似Permease-I的蛋白质,不会影响SlVRSLip和LeHT1的表达。沉默SlVRSLip或LeHT1不会影响Permease的表达,表明它不属于同一网络。 SlVRSLip,LeHT1和Permease的三重共沉默使R植物在感染和大量病毒积累后立即停止生长。 SlVRSLip是第一个脂质运载蛋白样基因,显示与植物病毒抗性有关。

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