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Biotechnological approaches to determine the impact of viruses in the energy crop plant Jatropha curcas

机译:确定病毒对能源作物植物麻风树的影响的生物技术方法

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Background Geminiviruses infect a wide range of plant species including Jatropha and cassava both belonging to family Euphorbiaceae. Cassava is traditionally an important food crop in Sub - Saharan countries, while Jatropha is considered as valuable biofuel plant with great perspectives in the future. Results A total of 127 Jatropha samples from Ethiopia and Kenya and 124 cassava samples from Kenya were tested by Enzyme-Linked Immunosorbent Assay (ELISA) for RNA viruses and polymerase chain reaction for geminiviruses. Jatropha samples from 4 different districts in Kenya and Ethiopia (analyzed by ELISA) were negative for all three RNA viruses tested: Cassava brown streak virus (CBSV), Cassava common mosaic virus, Cucumber mosaic virus, Three cassava samples from Busia district (Kenya) contained CBSV. Efforts to develop diagnostic approaches allowing reliable pathogen detection in Jatropha, involved the amplification and sequencing of the entire DNA A molecules of 40 Kenyan isolates belonging to African cassava mosaic virus (ACMV) and East African cassava mosaic virus - Uganda. This information enabled the design of novel primers to address different questions: a) primers amplifying longer sequences led to a phylogenetic tree of isolates, allowing some predictions on the evolutionary aspects of Begomoviruses in Jatrophia; b) primers amplifying shorter sequences represent a reliable diagnostic tool. This is the first report of the two Begomoviruses in J. curcas. Two cassava samples were co - infected with cassava mosaic geminivirus and CBSV. A Defective DNA A of ACMV was found for the first time in Jatropha. Conclusion Cassava geminiviruses occurring in Jatropha might be spread wider than anticipated. If not taken care of, this virus infection might negatively impact large scale plantations for biofuel production. Being hosts for similar pathogens, the planting vicinity of the two crop plants needs to be handled carefully.
机译:背景双子病毒感染包括大戟科的麻风树和木薯在内的多种植物。木薯传统上是撒哈拉以南国家的重要粮食作物,而麻风树被认为是有价值的生物燃料工厂,前景广阔。结果通过酶联免疫吸附试验(ELISA)对来自埃塞俄比亚和肯尼亚的127个麻风树样品和来自肯尼亚的124个木薯样品进行了RNA病毒检测和双歧杆菌病毒的聚合酶链反应。肯尼亚和埃塞俄比亚4个不同地区的麻风树样本(通过ELISA分析)对三种测试的所有RNA病毒均呈阴性:木薯褐条纹病毒(CBSV),木薯普通花叶病毒,黄瓜花叶病毒,来自Busia地区(肯尼亚)的三份木薯样品包含CBSV。开发能够在麻疯树中可靠检测病原体的诊断方法的工作涉及对属于非洲木薯花叶病毒(ACMV)和东非木薯花叶病毒-乌干达的40个肯尼亚分离株的整个DNA A分子进行扩增和测序。这些信息使得能够设计新颖的引物来解决不同的问题:a)扩增更长序列的引物导致了分离株的系统进化树,从而对麻风树中的秋海棠病毒的进化方面做出了一些预测; b)扩增较短序列的引物代表可靠的诊断工具。这是在J. curcas中两种Begomoviruses的首次报道。将两个木薯样品与木薯花叶双生病毒和CBSV共同感染。首次在麻疯树中发现了ACMV的缺陷DNAA。结论发生在麻疯树中的木薯双生病毒可能传播得比预期的更广泛。如果不加以注意,这种病毒感染可能会对大规模人工林生产生物燃料产生负面影响。作为类似病原体的寄主,这两种农作物的种植区域需要小心处理。

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