Laboratorio de Fitopatología, Centro de Investigaciones Biológicas del Noroeste, Instituto Politécnico Nacional 195, Col. Playa Palo de Santa Rita, La Paz, Baja California Sur, 23096, Mexico.
Viruses. 2013 Nov 28;5(12):2931-45. doi: 10.3390/v5122931.
ToChLPV and PepGMV are Begomoviruses that have adapted to a wide host range and are able to cause major diseases in agronomic crops. We analyzed the efficacy of induced resistance to PepGMV in Nicotiana benthamiana plants with two constructs: one construct with homologous sequences derived from PepGMV, and the other construct with heterologous sequences derived from ToChLPV. Plants protected with the heterologous construct showed an efficacy to decrease the severity of symptoms of 45%, while plants protected with the homologous construct showed an efficacy of 80%. Plants protected with the heterologous construct showed a reduction of incidence of 42.86%, while the reduction of incidence in plants protected with the homologous construct was 57.15%. The efficacy to decrease viral load was 95.6% in plants protected with the heterologous construct, and 99.56% in plants protected with the homologous construct. We found, in both constructs, up-regulated key components of the RNAi pathway. This demonstrates that the efficacy of the constructs was due to the activation of the gene silencing mechanism, and is reflected in the decrease of viral genome copies, as well as in recovery phenotype. We present evidence that both constructs are functional and can efficiently induce transient resistance against PepGMV infections. This observation guarantees a further exploration as a strategy to control complex Begomovirus diseases in the field.
ToChLPV 和 PepGMV 是贝科马番茄金黄病毒,它们已经适应了广泛的宿主范围,能够引起农业作物的重大疾病。我们分析了两种构建体在本氏烟植株上诱导 PepGMV 抗性的效果:一种构建体具有来自 PepGMV 的同源序列,另一种构建体具有来自 ToChLPV 的异源序列。用异源构建体保护的植物表现出 45%的症状严重度降低功效,而用同源构建体保护的植物表现出 80%的功效。用异源构建体保护的植物发病率降低了 42.86%,而用同源构建体保护的植物发病率降低了 57.15%。用异源构建体保护的植物病毒载量降低了 95.6%,而用同源构建体保护的植物病毒载量降低了 99.56%。我们在两种构建体中都发现了 RNAi 途径的关键组成部分的上调。这表明构建体的功效是由于基因沉默机制的激活,这反映在病毒基因组拷贝的减少,以及表型的恢复上。我们提供了证据表明,这两种构建体都是功能性的,可以有效地诱导对 PepGMV 感染的瞬时抗性。这一观察结果保证了进一步探索作为田间控制复杂贝科马番茄金黄病毒病的策略。