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Symbiotic in vitro seed propagation of Dendrobium: fungal and bacterial partners and their influence on plant growth and development

机译:石of的共生体外种子繁殖:真菌和细菌伙伴及其对植物生长发育的影响

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摘要

The genus Dendrobium is one of the largest genera of the Orchidaceae Juss. family, although some of its members are the most threatened today. The reason why many species face a vulnerable or endangered status is primarily because of anthropogenic interference in natural habitats and commercial overexploitation. The development and application of modern techniques and strategies directed towards in vitro propagation of orchids not only increases their number but also provides a viable means to conserve plants in an artificial environment, both in vitro and ex vitro, thus providing material for reintroduction. Dendrobium seed germination and propagation are challenging processes in vivo and in vitro, especially when the extreme specialization of these plants is considered: (1) their biotic relationships with pollinators and mycorrhizae; (2) adaptation to epiphytic or lithophytic life-styles; (3) fine-scale requirements for an optimal combination of nutrients, light, temperature, and pH. This review also aims to summarize the available data on symbiotic in vitro Dendrobium seed germination. The influence of abiotic factors as well as composition and amounts of different exogenous nutrient substances is examined. With a view to better understanding how to optimize and control in vitro symbiotic associations, a part of the review describes the strong biotic relations of Dendrobium with different associative microorganisms that form microbial communities with adult plants, and also influence symbiotic seed germination. The beneficial role of plant growth-promoting bacteria is also discussed.
机译:石end属是兰科菊科植物的最大属之一。家族,尽管其中一些成员是当今受威胁最大的家族。许多物种面临脆弱或濒危状态的原因主要是由于人为干扰自然栖息地和商业过度开发。针对兰花在体外繁殖的现代技术和策略的发展和应用不仅增加了兰花的数量,而且提供了一种在体外和离体的人工环境中保护植物的可行方法,从而为重新引入提供了材料。石种子的萌发和繁殖在体内和体外都是具有挑战性的过程,尤其是考虑到这些植物的极端专业化时:(1)它们与传粉媒介和菌根的生物关系; (2)适应附生或石生的生活方式; (3)对营养物,光照,温度和pH值进行最佳组合的精细尺度要求。这篇综述还旨在总结关于共生石D种子萌发的可用数据。检查了非生物因素的影响以及不同外源营养物质的组成和数量。为了更好地理解如何优化和控制体外共生关联,本文的一部分描述了石end与不同的缔合微生物之间的牢固的生物关系,这些微生物与成年植物形成了微生物群落,并且还影响了共生种子的发芽。还讨论了促进植物生长的细菌的有益作用。

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