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首页> 外文期刊>Plant Cell, Tissue and Organ Culture (PCTOC) >Genetic engineering of Plum pox virus resistance: ‘HoneySweet’ plum—from concept to product
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Genetic engineering of Plum pox virus resistance: ‘HoneySweet’ plum—from concept to product

机译:李子痘病毒抗性的基因工程:“ HoneySweet”李子-从概念到产品

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摘要

Sharka disease, caused by Plum pox virus (PPV) was first recorded in Bulgaria during the early twentieth century and since that first report, the disease has progressively spread throughout Europe and more recently to Asia, Africa, North and South America. Few PPV resistance genes have been found to naturally occur in Prunus and this has led to the investigation of biotech approaches to the development of resistance through genetic engineering (GE). A notable example of the utility of this approach is ‘HoneySweet’ plum. PPV protection in this case is based on RNA interference (RNAi) and resistance has been shown to be highly effective, stable, durable, and heritable as a dominant trait. Extensive testing and risk assessment of ‘HoneySweet’ in laboratory, greenhouse and in the field for over 20 years has demonstrated not only the effectiveness but also the safety of the technology. ‘HoneySweet’ has been cleared for cultivation in the USA. By the appropriate regulatory agencies. The development and regulatory approval of ‘HoneySweet’ demonstrate the ability of RNAi technology to contribute to the sustainability of stone fruit production in regions impacted by PPV. Although it has taken almost 100 years since the identification of sharka, we are now able to effectively protect stone fruit species against this disease through the application of GE.
机译:由梅花痘病毒(PPV)引起的Sharka病最早是在20世纪初在保加利亚记录的,自该报告首次报道以来,该病已逐渐在整个欧洲传播,最近又传播到亚洲,非洲,北美洲和南美洲。很少有PPV抗性基因在李属中自然产生,这导致人们对通过基因工程(GE)开发抗性的生物技术方法进行了研究。这种方法实用性的一个著名例子是“ HoneySweet”李子。在这种情况下,PPV保护是基于RNA干扰(RNAi)的,并且抗性已被证明是有效,稳定,持久和可遗传的显性特征。经过20多年的实验室,温室和野外“ HoneySweet”的广泛测试和风险评估,证明了该技术的有效性和安全性。 “ HoneySweet”已获准在美国种植。由适当的监管机构。 “ HoneySweet”的开发和监管批准表明,RNAi技术有能力为受PPV影响的地区的核果生产可持续性做出贡献。尽管从sharka的鉴定开始已经花费了将近100年的时间,但是我们现在能够通过应用GE有效地保护核果类物种免受这种疾病的侵害。

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