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Application of antisense transformation of a barley chitinase in studies of arbuscule formation by a mycorrhizal fungus

机译:大麦几丁质酶反义转化在菌根真菌形成丛枝菌的研究中的应用

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摘要

Barley (Hordeum vulgare L.) plants of two commercial cultivars were transformed with sense and antisense constructs of a chitinase class II gene in order to develop a transformation system for this gene in barley. Transformation of embryos with the two antisense constructs resulted in ten regenerated plants, while no plants could be obtained using the sense construct. The presence of the inserted construct could be confirmed for six of the plants by PCR analysis. This system was used to study the role of class II chitinase in the regulation of mycorrhizal symbiosis. The colonization of two of the antisense transformants by the arbuscular mycorrhizal fungus Glomus intraradices was investigated microscopically and by use of signature fatty acids. The arbuscular incidence increased in transformed barley, and one transformant supported higher extraradical mycelium biomass. It is concluded that antisense transformation of barley could be a useful tool in investigations on the symbiosis between barley and mycorrhizal fungi.
机译:用几丁质酶II类基因的有义和反义构建体转化两个商业品种的大麦(Hordeum vulgare L.)植物,以便在大麦中开发该基因的转化系统。用两种反义构建体转化胚产生了十株再生植物,而使用有义构建体无法获得植物。通过PCR分析可以确认六株植物中插入的构建体的存在。该系统用于研究II类几丁质酶在调节菌根共生中的作用。显微镜下和使用特征性脂肪酸研究了丛枝菌根真菌Glomus intraradices对两个反义转化子的定殖。转化大麦中丛枝的发生率增加,并且一个转化体支持更高的自由基外菌丝体生物量。结论是,大麦的反义转化可能是研究大麦与菌根真菌共生的有用工具。

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