Nayaka S Naveen, Jailani A Abdul Kader, Ghosh Amalendu, Roy Anirban, Mandal Bikash
Division of Plant Pathology, Advanced Centre for Plant Virology, ICAR-Indian Agricultural Research Institute, New Delhi, India.
3 Biotech. 2023 Jun;13(6):209. doi: 10.1007/s13205-023-03630-y. Epub 2023 May 23.
Cucumber green mottle mosaic virus (CGMMV, genus ) is a widely occurring tobamovirus in cucurbits. The genome of CGMMV has been used previously for the expression of foreign genes in the plant. High throughput delivery and high viral titer are important requirements of foreign protein expression in plant through virus genome-based vector, in this study, containing infectious construct of CGMMV was infiltrated through syringe, vacuum and high-speed spray to cucumber and bottle gourd leaves. The success rate of systemic infection of CGMMV agro-construct through all three methods was higher (80-100%) in compared to the cucurbits (40-73.3%). To determine the high-throughput delivery of CGMMV in the plant system, four delivery methods viz. rubbing, syringe infiltration, vacuum infiltration and high-speed spray using the progeny virus derived through CGMMV agro-construct were compared in the three different plant species. Based on the rate of systemic infection and time required to perform delivery by different methods, vacuum infiltration was found most efficient for the high-throughput delivery of CGMMV. The quantification of CGMMV through qPCR revealed that CGMMV load varied considerably in leaf and fruit tissues depending with the time of infection. Immediately after expression of symptoms, a high load of CGMMV (~ 1 µg/100 mg of tissues) was noticed in young leaves of and cucumber. In bottle gourd leaves, the CGMMV load was far low compared to and cucumber plants. In the fruit tissues of cucumber and bottle gourd higher virus load was observed in mature fruit but not in immature fruit. The findings of the present study will serve as an important base line information to produce foreign protein through CGMMV genome-vector.
The online version contains supplementary material available at 10.1007/s13205-023-03630-y.
黄瓜绿斑驳花叶病毒(CGMMV,属 )是葫芦科中广泛存在的烟草花叶病毒。CGMMV的基因组此前已用于在植物中表达外源基因。高通量递送和高病毒滴度是通过基于病毒基因组的载体在植物中表达外源蛋白的重要要求,在本研究中,含有CGMMV感染性构建体的溶液通过注射器、真空和高速喷雾接种到甜瓜和瓠瓜叶片上。与葫芦科植物(40 - 73.3%)相比,通过这三种方法进行CGMMV农杆菌构建体系统感染的成功率在甜瓜中更高(80 - 100%)。为了确定CGMMV在植物系统中的高通量递送,在三种不同植物物种中比较了四种递送方法,即摩擦、注射器浸润、真空浸润和使用通过CGMMV农杆菌构建体获得的子代病毒进行高速喷雾。基于不同方法的系统感染率和递送所需时间,发现真空浸润对于CGMMV的高通量递送最为有效。通过qPCR对CGMMV进行定量分析表明,CGMMV的负载量在叶片和果实组织中因感染时间而异。症状出现后立即在甜瓜和黄瓜的幼叶中检测到高负载的CGMMV(约1 μg/100 mg组织)。在瓠瓜叶片中,CGMMV负载量远低于甜瓜和黄瓜植株。在黄瓜和瓠瓜的果实组织中,在成熟果实中观察到较高的病毒负载量,而在未成熟果实中则未观察到。本研究的结果将作为通过CGMMV基因组载体生产外源蛋白的重要基线信息。
在线版本包含可在10.1007/s13205 - 023 - 03630 - y获取的补充材料。