4.6 Article

A cassava common mosaic virus vector for virus-induced gene silencing in cassava

期刊

PLANT METHODS
卷 17, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s13007-021-00775-w

关键词

Cassava; Cassava common mosaic virus; Virus vector; Virus-induced gene silencing

资金

  1. National Natural Science Foundation of China [32000399]
  2. Central Public Interest Scientific Institution Basal Research Fund for Chinese Academy of Tropical Agricultural Sciences [,1630052019018, 1630052019019]

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Cassava is an important crop in least-developed and developing countries, and a CsCMV-based VIGS system was developed in this study, showing successful gene silencing in different cassava varieties and Nicotiana benthamiana, providing a new tool for gene function studies in cassava.
Background Cassava is an important crop for food security and industry in the least-developed and developing countries. The completion of the cassava genome sequence and identification of large numbers of candidate genes by next-generation sequencing provide extensive resources for cassava molecular breeding and increase the need for rapid and efficient gene function analysis systems in cassava. Several plant virus-induced gene silencing (VIGS) systems have been developed as reverse genetic tools for rapid gene function analysis in cassava. However, these VIGS vectors could cause severe viral symptoms or inefficient gene silencing. Results In this study, we constructed agroinfection-compatible infectious cDNA clones of cassava common mosaic virus isolate CM (CsCMV-CM, genus Potexvirus, family Alphaflexiviridae) that causes systemic infection with mild symptoms in cassava. CsCMV-CM was then modified to a viral vector carrying the Nimble cloning frame, which facilitates the rapid and high-throughput cloning of silencing fragments into the viral genome. The CsCMV-based vector successfully silenced phytoene desaturase (PDS) and magnesium chelatase subunit I (ChlI) in different cassava varieties and Nicotiana benthamiana. The silencing of the ChlI gene could persist for more than two months. Conclusions This CsCMV-based VIGS system provides a new tool for rapid and efficient gene function studies in cassava.

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