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Conferred resistance to Botrytis cinerea in Lilium by overexpression of the RCH10 chitinase gene

机译:RCH10几丁质酶基因的过表达赋予百合中灰葡萄孢的抗性

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摘要

The production of ornamentals is an important global industry, with Lilium being one of the six major bulb crops in the world. The international trade in ornamentals is in the order of £60-75 billion and is expected to increase worldwide by 2-4 % per annum. The continued success of the floriculture industry depends on the introduction of new species/cultivars with major alterations in key agronomic characteristics, such as resistance to pathogens. Fungal diseases are the cause of reduced yields and marketable quality of cultivated plants, including ornamental species. The fungal pathogen Botrytis causes extreme economic losses to a wide range of crop species, including ornamentals such as Lilium. Agrobacterium-mediated transformation was used to develop Lilium oriental cv. ‘Star Gazer’ plants that ectopically overexpress the Rice Chitinase 10 gene (RCH10), under control of the CaMV35S promoter. Levels of conferred resistance linked to chitinase expression were evaluated by infection with Botrytis cinerea; sporulation was reduced in an in vitro assay and the relative expression of the RCH10 gene was determined by quantitative Reverse-Transcriptase PCR. The extent of resistance to Botrytis, compared to that of the wild type plants, showed a direct correlation with the level of chitinase gene expression. Transgenic plants grown to flowering showed no detrimental phenotypic effects associated with transgene expression. This is the first report of Lilium plants with resistance to Botrytis cinerea generated by a transgenic approach.
机译:观赏植物的生产是全球重要的产业,百合属世界六大主要鳞茎作物之一。观赏植物的国际贸易约为60-750亿英镑,预计全球每年将增长2-4%。花艺产业的持续成功取决于引入在关键农学特性(例如对病原体的抵抗力)方面有重大改变的新物种/品种。真菌病是导致包括观赏物种在内的栽培植物减产和适销质量的原因。真菌病原体葡萄孢菌会给包括百合属在内的观赏植物在内的多种农作物造成极大的经济损失。农杆菌介导的转化被用于开发东方百合。在CaMV35S启动子的控制下,异位表达水稻几丁质酶10基因(RCH10)的“ Star Gazer”植物。通过灰葡萄孢的感染来评估与几丁质酶表达相关的赋予的抗性水平。在体外测定中减少了孢子形成,并且通过定量逆转录酶PCR确定了R​​CH10基因的相对表达。与野生型植物相比,对葡萄孢的抗性程度与几丁质酶基因表达水平直接相关。生长到开花的转基因植物没有显示与转基因表达相关的有害表型作用。这是通过转基因方法产生的对灰葡萄孢具有抗性的百合属植物的首次报道。

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