Year: 2018 | Month: August | Volume 11 | Issue 4

Plastid Genome Engineering and its Potential Applications: A Review


DOI:10.30954/0974-1712.08.2018.2

Abstract:

Plastid genome engineering is a credible tool for the basic biotechnological research and various innovative techniques have led to the better understanding of the complex processes involved in the plastid transformation. Plastids in higher plants are the major biosynthetic centers for photosynthesis which is the main source of energy requirement. Plastids have their own genome i.e. plastome which is maternally inherited in most angiospermic plant species. Although production of transgenic plants has traditionally been through expression of transgene in the nucleus, but plastid transformation is considered more attractive and efficient target for genetic engineering due to several advantages over nuclear transformation including high level of foreign protein, eliminating the risk of cross pollination with weeds, absence of silencing mechanism and ability to engineer multiple genes rather than a single gene. The potential utility of plastid genome engineering has been explored in development of crops with various agronomic traits, development of vaccine, biopharmaceuticals, therapeutic proteins, biomaterials and industrial enzymes, which will definitely prove beneficial in near future. Plastid transformation is still to be fully utilized for product commercialization, because of the problems associated with protein purification and expression level control. This review article highlights the various possibilities and potential applications of plastid genome engineering for generation of marker free transplastomic plants, improvement in agronomic traits and role of plastids in the production of cost effective biopharmaceuticals and biomaterials.



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International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

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