AlHudaib Khalid A, Almaghasla Mostafa I, El-Ganainy Sherif M, Arshad Muhammad, Drou Nizar, Sattar Muhammad N
Department of Arid Land Agriculture, College of Agricultural and Food Sciences, King Faisal University, P.O. Box 420, Al-Ahsa 31982, Saudi Arabia.
Pests and Plant Diseases Unit, College of Agriculture and Food Sciences, King Faisal University, P.O. Box 420, Al-Ahsa 31982, Saudi Arabia.
Plants (Basel). 2022 Dec 20;12(1):6. doi: 10.3390/plants12010006.
The studies on the prevalence and genetic diversity of begomoviruses in Saudi Arabia are minimal. In this study, field-grown symptomatic tomato and muskmelon plants were collected, and initially, begomovirus infection was confirmed by the core coat protein sequences. Four tomato and two muskmelon plants with viral infections were further evaluated for Illumina MiSeq sequencing, and twelve sequences (2.7-2.8 kb) equivalent to the full-length DNA-A or DNA-B components of begomoviruses were obtained along with eight sequences (~1.3-1.4 kb) equivalent to the begomovirus-associated DNA-satellite components. Four begomovirus sequences obtained from tomato plants were variants of tomato yellow leaf curl virus (TYLCV) with nt sequence identities of 95.3-100%. Additionally, two tomato plants showed a mixed infection of TYLCV and cotton leaf curl Gezira virus (CLCuGeV), okra yellow crinkle Cameroon alphasatellite (OYCrCMA), and okra leaf curl Oman betasatellite (OLCuOMB). Meanwhile, from muskmelon plants, two sequences were closely related (99-99.6%) to the tomato leaf curl Palampur virus (ToLCPalV) DNA-A, whereas two other sequences showed 97.9-100% sequence identities to DNA-B of ToLCPalV, respectively. Complete genome sequences of CLCuGeV and associated DNA-satellites were also obtained from these muskmelon plants. The nt sequence identities of the CLCuGeV, OYCrCMA, and OLCuOMB isolates obtained were 98.3-100%, 99.5-100%, and 95.6-99.7% with their respective available variants. The recombination was only detected in TYLCV and OLCuOMB isolates. To our knowledge, this is the first identification of a mixed infection of bipartite and monopartite begomoviruses associated with DNA-satellites from tomato and muskmelon in Saudi Arabia. The begomovirus variants reported in this study were clustered with Iranian isolates of respective begomovirus components in the phylogenetic dendrogram. Thus, the Iranian agroecological route can be a possible introduction of these begomoviruses and/or their associated DNA-satellites into Saudi Arabia.
关于沙特阿拉伯双生病毒的流行情况和遗传多样性的研究极少。在本研究中,采集了田间种植的有症状的番茄和甜瓜植株,最初通过核心衣壳蛋白序列确认了双生病毒感染。对4株感染病毒的番茄植株和2株感染病毒的甜瓜植株进一步进行Illumina MiSeq测序,获得了12个序列(2.7 - 2.8 kb),相当于双生病毒的全长DNA - A或DNA - B组分,以及8个序列(约1.3 - 1.4 kb),相当于双生病毒相关的DNA卫星组分。从番茄植株中获得的4个双生病毒序列是番茄黄化曲叶病毒(TYLCV)的变体,核苷酸序列同一性为95.3 - 100%。此外,2株番茄植株表现出TYLCV与棉花曲叶盖齐拉病毒(CLCuGeV)、秋葵黄皱喀麦隆α卫星(OYCrCMA)和秋葵曲叶阿曼β卫星(OLCuOMB)的混合感染。同时,从甜瓜植株中,2个序列与番茄曲叶帕拉姆布尔病毒(ToLCPalV)的DNA - A密切相关(99 - 99.6%),而另外2个序列与ToLCPalV的DNA - B的序列同一性分别为97.9 - 100%。还从这些甜瓜植株中获得了CLCuGeV及其相关DNA卫星的完整基因组序列。所获得的CLCuGeV、OYCrCMA和OLCuOMB分离株与各自可用变体的核苷酸序列同一性分别为98.3 - 100%、99.5 - 100%和95.6 - 99.7%。仅在TYLCV和OLCuOMB分离株中检测到重组。据我们所知,这是首次在沙特阿拉伯鉴定出与番茄和甜瓜中DNA卫星相关的双分体和单分体双生病毒的混合感染。本研究中报道的双生病毒变体在系统发育树状图中与伊朗各自双生病毒组分的分离株聚类。因此,伊朗的农业生态路线可能是这些双生病毒和/或其相关DNA卫星传入沙特阿拉伯的途径。