Orchids (Cymbidium spp., Oncidium, and Phalaenopsis).

Methods Mol Biol

Institute of BioAgricultural Sciences, ACADEMIA SINICA, 115 Academia Sinica Road, Taipei, Taiwan.

Published: February 2007

AI Article Synopsis

  • Recent advancements in genetic engineering have enabled effective transformation and regeneration techniques for improving orchids, particularly Oncidium and Phalaenopsis species.
  • A straightforward protocol using Agrobacterium tumefaciens for introducing foreign genes into protocorm-like bodies (PLBs) resulted in about 10% transformation efficiency for Oncidium and 11-12% for Phalaenopsis.
  • The chapter also details molecular screening methods, including GUS-staining, to verify successful integration of transgenic DNA into the orchid genome, which can be applied to other orchid species as well.

Article Abstract

Recent advances in genetic engineering have made the transformation and regeneration of plants into a powerful tool for orchid improvement. This chapter presents a simple and reproducible Agrobacterium tumefaciens-mediated transformation protocol and molecular screening technique of transgenics for two orchid species, Oncidium and Phalaenopsis. The target tissues for gene transfer were protocorm-like bodies (PLBs) derived from protocorms, into which constructed foreign genes were successfully introduced. To establish stable transformants, two stages of selection were applied on the PLBs co-cultivated with A. tumefaciens. About 10% transformation efficiency was achieved in Oncidium orchid, as 108 antibiotic resistant independent PLBs were proliferated from 1000 infected PLBs. In Phalaenopsis orchid about 11 to 12% of transformation efficiency was achieved by using the present protocol. Different molecular methods and GUS-staining used to screen putative transgenic plants to confirm the integration of foreign DNA into the orchid genome were also described in detail. The methods described would also be useful for transformation of desired genes into other orchid species.

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Source
http://dx.doi.org/10.1385/1-59745-131-2:331DOI Listing

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