Virus-induced gene silencing for in planta validation of gene function in cucurbits
Authors and Affiliations
Authors and Affiliations
Sun-Ju Rhee, Yoon Jeong Jang, Jun-Young Park, Jisu Ryu, Gung Pyo Lee
Department of Plant Science and Technology, Chung-Ang University, Anseong, 17546, Republic of Korea
Author for correspondence: Gung Pyo Lee
Abstract
Virus-induced gene silencing (VIGS) is a powerful tool for high-throughput analysis of gene function. Here, we developed the VIGS vector pCF93, from which expression of the cucumber fruit mottle mosaic virus genome is driven by the cauliflower mosaic virus 35S promoter to produce viral transcripts in inoculated plants. To test the utility of the pCF93 vector, we identified candidate genes related to male sterility (MS) in watermelon (Citrullus lanatus), which is recalcitrant to genetic transformation. Specifically, we exploited previously reported reference-based and de novo transcriptome data to define 38 differentially expressed genes between a male-sterile line and its fertile near-isogenic line in the watermelon cultivar DAH. We amplified 200- to 300-bp fragments of these genes, cloned them into pCF93, and inoculated DAH with the resulting VIGS clones. The small watermelon cultivar DAH enabled high-throughput screening using a small cultivation area. We simultaneously characterized the phenotypes associated with each of the 38 candidate genes in plants grown in a greenhouse. Silencing of 8 of the 38 candidate genes produced male-sterile flowers with abnormal stamens and no pollen. We confirmed the extent of gene silencing in inoculated flowers using reverse transcription–qPCR. Histological analysis of stamens from male-fertile and male-sterile floral buds and mature flowers revealed developmental defects and shrunken pollen sacs. Based on these findings, we propose that the pCF93 vector and our VIGS system will facilitate high-throughput analysis for the study of gene function in watermelons.
1. 논문관련 분야의 소개, 동향, 전망을 설명, 연구과정에서 생긴 에피소드
식물의 기능유전체를 연구하기 위한 시스템을 구축하기 위한 시도는 오래전부터 계속되어왔는데, 이는 CRISPR-Cas9 system의 발견을 통해 큰 전환점을 맞이하게 됩니다. 연구계에 종사하지 않는 분들도 많이 인지하고 있을 정도로 식물 뿐 아니라 다양한 생물종과 연구분야에 걸쳐 연구자들에게 유용한 길을 열어주었습니다.
저는 그보다 훨씬 이전부터 다양한 식물에서의 유전자 기능을...