Silva Gonçalo, Bömer Moritz, Turaki Aliyu A, Nkere Chukwuemeka K, Kumar P Lava, Seal Susan E
Natural Resources Institute, University of Greenwich, Chatham Maritime, United Kingdom.
Kebbi State University of Science and Technology Aliero, Birnin Kebbi, Nigeria.
Front Plant Sci. 2022 May 10;13:846989. doi: 10.3389/fpls.2022.846989. eCollection 2022.
Viruses of the genus (family ) are double-stranded DNA-reverse transcribing (dsDNA-RT) plant viruses and have emerged as serious pathogens of tropical and temperate crops globally. Endogenous badnaviral sequences are found integrated in the genomes of several economically important plant species. Infection due to activation of replication-competent integrated copies of the genera , and has been described. Such endogenous badnaviral elements pose challenges to the development of nucleic acid-based diagnostic methods for episomal virus infections and decisions on health certification for international movement of germplasm and seed. One major food security crop affected is yam ( spp.). A diverse range of bacilliform viruses (DBVs), and endogenous DBV (eDBV) sequences have been found to be widespread in yams cultivated in West Africa and other parts of the world. This study outlines the development of multiplex PCR-dependent denaturing gradient gel electrophoresis (PCR-DGGE) to assist in the detection and analysis of eDBVs, through the example of analysing yam germplasm from Nigeria and Ghana. Primers targeting the three most prevalent DBV monophyletic species groups in West Africa were designed to improve DGGE resolution of complex eDBV sequence fingerprints. Multiplex PCR-DGGE with the addition of a tailor-made DGGE sequence marker enables rapid comparison of endogenous badnaviral sequence diversity across germplasm, as illustrated in this study for eDBV diversity in yam.
(科)属的病毒是双链DNA逆转录(dsDNA-RT)植物病毒,已成为全球热带和温带作物的严重病原体。在几种经济上重要的植物物种的基因组中发现了内源性杆状DNA病毒序列。已报道了由于属、属和属的具有复制能力的整合拷贝的激活而导致的感染。这种内源性杆状DNA病毒元件对基于核酸的游离病毒感染诊断方法的开发以及种质和种子国际流动的健康认证决策构成了挑战。受影响的一种主要粮食安全作物是山药(薯蓣属物种)。已发现多种杆状病毒(DBV)和内源性DBV(eDBV)序列在西非和世界其他地区种植的山药中广泛存在。本研究通过分析来自尼日利亚和加纳的山药种质的实例,概述了多重PCR依赖性变性梯度凝胶电泳(PCR-DGGE)的开发,以协助检测和分析eDBV。设计了针对西非三种最普遍的DBV单系物种组的引物,以提高复杂eDBV序列指纹的DGGE分辨率。如本研究中对山药中eDBV多样性的说明,添加特制的DGGE序列标记的多重PCR-DGGE能够快速比较种质间内源性杆状DNA病毒序列多样性。