Instituto de Hortofruticultura Subtropical y Mediterránea "La Mayora" (IHSM-UMA-CSIC), Consejo Superior de Investigaciones Científicas, Estación Experimental "La Mayora". Av. Dr. Wienberg s/n, Algarrobo-Costa, 29750 Málaga, Spain.
Viruses. 2019 Jan 9;11(1):45. doi: 10.3390/v11010045.
The tomato leaf curl disease (TYLCD) is associated with infections of several species of begomoviruses (genus , family ) and causes severe damage to tomatoes throughout tropical and sub-tropical regions of the world. Among others, the (TYLCSV) species causes damage in the Mediterranean Basin since early outbreaks occurred. Nevertheless, scarce information is available about the diversity of TYLCSV. Here, we study this aspect based on the sequence information accessible in databases. Isolates of two taxonomically differentiated TYLCSV strains can be found in natural epidemics. Their evolution is mostly associated with mutation combined with selection and random genetic drift and also with inter-species recombination which is frequent in begomoviruses. Moreover, a novel putative inter-strain recombinant is reported. Although no significantly new biological behaviour was observed for this latter recombinant, its occurrence supports that as shown for other related begomoviruses, recombination continues to play a central role in the evolution of TYLCD-associated viruses and the dynamism of their populations. The confrontation of resistant tomatoes with isolates of different TYLCD-associated viruses including the novel recombinant demonstrates the existence of a variable virus x plant genotype interaction. This has already been observed for other TYLCD-associated viruses and is a challenge for the control of their impact on tomato production.
番茄黄曲叶病毒病(TYLCD)与几种曲叶病毒(属,科)的感染有关,在世界热带和亚热带地区对番茄造成严重损害。其中,(TYLCSV)物种自早期爆发以来就在地中海盆地造成损害。然而,关于 TYLCSV 的多样性的信息很少。在这里,我们基于数据库中可获得的序列信息研究了这一方面。在自然流行中可以发现两种在分类上有区别的 TYLCSV 菌株的分离物。它们的进化主要与突变结合选择和随机遗传漂变有关,并且在常发生在曲叶病毒中的种间重组中也很常见。此外,还报告了一种新的假定的株间重组。尽管对这种重组体没有观察到明显的新的生物学行为,但它的发生表明,正如其他相关的曲叶病毒所示,重组继续在 TYLCD 相关病毒的进化及其种群的动态中发挥核心作用。具有不同 TYLCD 相关病毒(包括新型重组体)的抗性番茄的对抗表明存在病毒 x 植物基因型相互作用的可变性。这已经在其他 TYLCD 相关病毒中观察到,这是控制其对番茄生产影响的挑战。