Wang Rong, Yang Xinxin, Wang Nian, Liu Xuedong, Nelson Richard S, Li Weimin, Fan Zaifeng, Zhou Tao
State Key Laboratory for Agro-Biotechnology and Department of Plant Pathology, China Agricultural University, Beijing, 100193, China.
Plant Biology Division, The Samuel Roberts Noble Foundation Inc., 2510 Sam Noble Parkway, Ardmore, OK 73401, USA.
Plant J. 2016 Apr;86(1):102-15. doi: 10.1111/tpj.13142.
Maize is a major crop whose rich genetic diversity provides an advanced resource for genetic research. However, a tool for rapid transient gene function analysis in maize that may be utilized in most maize cultivars has been lacking, resulting in reliance on time-consuming stable transformation and mutation studies to obtain answers. We developed an efficient virus-induced gene silencing (VIGS) vector for maize based on a naturally maize-infecting cucumber mosaic virus (CMV) strain, ZMBJ-CMV. An infectious clone of ZMBJ-CMV was constructed, and a vascular puncture inoculation method utilizing Agrobacterium was optimized to improve its utility for CMV infection of maize. ZMBJ-CMV was then modified to function as a VIGS vector. The ZMBJ-CMV vector induced mild to moderate symptoms in many maize lines, making it useful for gene function studies in critically important maize cultivars, such as the sequenced reference inbred line B73. Using this CMV VIGS system, expression of two endogenous genes, ZmPDS and ZmIspH, was found to be decreased by 75% and 78%, respectively, compared with non-silenced tissue. Inserts with lengths of 100-300 bp produced the most complete transcriptional and visual silencing phenotypes. Moreover, genes related to autophagy, ZmATG3 and ZmATG8a, were also silenced, and it was found that they function in leaf starch degradation. These results indicate that our ZMBJ-CMV VIGS vector provides a tool for rapid and efficient gene function studies in maize.
玉米是一种主要作物,其丰富的遗传多样性为遗传研究提供了先进资源。然而,一直缺乏一种可用于大多数玉米品种的玉米快速瞬时基因功能分析工具,这导致依赖耗时的稳定转化和突变研究来获取答案。我们基于一种自然感染玉米的黄瓜花叶病毒(CMV)株系ZMBJ-CMV,开发了一种高效的玉米病毒诱导基因沉默(VIGS)载体。构建了ZMBJ-CMV的感染性克隆,并优化了利用农杆菌的维管束穿刺接种方法,以提高其对玉米CMV感染的效用。然后将ZMBJ-CMV改造为VIGS载体。ZMBJ-CMV载体在许多玉米品系中诱导出轻度至中度症状,使其可用于重要玉米品种的基因功能研究,如测序参考自交系B73。使用这种CMV VIGS系统,发现与未沉默组织相比,两个内源基因ZmPDS和ZmIspH的表达分别降低了75%和78%。长度为100 - 300 bp的插入片段产生了最完整的转录和视觉沉默表型。此外,与自噬相关的基因ZmATG3和ZmATG8a也被沉默,并且发现它们在叶片淀粉降解中起作用。这些结果表明,我们的ZMBJ-CMV VIGS载体为玉米快速高效的基因功能研究提供了一种工具。