菊科观赏属及其近缘科若干成员的体细胞胚胎发生:异同

A. Mujib, S. Banerjee, M. Maqsood, P. Ghosh
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引用次数: 17

摘要

体细胞胚胎发生已被广泛应用于植物的细胞分化、转基因的大量产生以及优质、濒危和观赏植物的大量繁殖等基础和应用研究中。对一些单子叶属植物(Eucharis, Hippeastrum, criinum, Caladium, Gloriosa和Allium)的研究表明,离体胚胎发生也可能有助于建立植物之间的关系,建立相似或不同历史的植物类群。所研究的植物是几个具有代表性的单子叶属,属于密切相关的科,对其进行了离体胚胎发生的研究。结果表明,香菊科成员属Eucharis和Hippeastrum在体外胚芽发生方面具有相似性,而同一科的crium在体外胚芽发生方面具有差异性。在这些单子叶植物中,未观察到初生胚形成次生胚。除了胚胎的个体发育、胚胎的结构和发育,对植物生长调节剂(PGR)的需求也有一定程度的相似性,特别是BAP在胚胎形成过程中的参与(2.22- 4.40µM),以及胚胚休眠的存在。进行了胚胎的扫描电镜检查,并在本通讯中进行了介绍。展望系统发育树上不同位置植物的类似离体胚胎发生研究将对包括离体胚胎发生在内的未来研究具有重要价值。
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Somatic Embryogenesis of Some Member Ornamental Genera of Amaryllidaceae and Allied Families: the Similarities and Differences
Somatic embryogenesis has been employed in various basic and applied studies such as cellular differentiation of plants, generating transgenic en masse and for mass propagation of elite, endangered and ornamental plants. The stud- ies undertaken in some monocot genera (Eucharis, Hippeastrum, Crinum, Caladium, Gloriosa and Allium) suggest that in vitro embryogeny may also help in establishing relationship among plants, plant groups of similar or dissimilar history. The investigated plants are a few representative monocotyledonous genera, belonging to closely-related families in which in vitro embryogenesis was studied. The observations indicated that Eucharis and Hippeastrum, member genera of the family Amaryllidaceae showed similarity, while Crinum of the same family showed dissimilarities in in vitro em- bryogeny. In these investigated monocot plants, secondary embryo formations were not observed on primary embryos. Beside embryo ontogeny, the structure and development of embryo, some degrees of similarities in the requirement of plant growth regulator (PGR), especially the BAP's participation (2.22- 4.40 µM) in embryo formation, presence of em- bryo dormancy was also noted. The scanning electron microscopy of embryo was conducted and has been presented in this communication. It is envisaged that similar in vitro embryogenesis studies involving plants belonging to different po- sitions in phylogenetic tree would be immensely valuable in future research including in vitro embryogenesis.
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