The plastid transformation approach offers a number of unique advantages, including high-level transgene expression, multi-gene engineering, transgene containment, and a lack of gene silencing and position effects. The extension of plastid transformation technology to monocotyledonous cereal crops, including rice, bears great promise for the improvement of agronomic traits, and the efficient production of pharmaceutical or nutritional enhancement. Here, we report a promising step towards stable plastid transformation in rice. We produced fertile transplastomic rice plants and demonstrated transmission of the plastid-expressed green fluorescent protein (GFP) and aminoglycoside 3′-adenylyltransferase genes to the progeny of these plants. Tran...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
We report the development of an efficient and reproducible genetic transformation system for the rec...
The plastid transformation approach offers a number of unique advantages, including high-level trans...
Plastid transformation has been successfully employed in several dicotyledonous plants for genetic m...
Transgene expression from the plastid (chloroplast) genome offers unique attractions to plant biotec...
Plastid transformation has emerged as an alternative platform to generate transgenic plants. Attract...
Rice biotechnology has made rapid advances since the first transgenic rice plants were produced 15 y...
Since the first fertile transgenic rice was obtained during the late 1980s, studies on rice transfor...
In plant engineering, plastid transformation is more advantageous than nuclear transformation becaus...
Rice is one of the most successful monocots in regenerating fertile and genetically stable transgeni...
We compared rice transgenic plants obtained by #Agrobacterium$-mediated and particle bombardment tra...
Improving rice production is of current global concern so that food security is maintained especiall...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
We report the development of an efficient and reproducible genetic transformation system for the rec...
The plastid transformation approach offers a number of unique advantages, including high-level trans...
Plastid transformation has been successfully employed in several dicotyledonous plants for genetic m...
Transgene expression from the plastid (chloroplast) genome offers unique attractions to plant biotec...
Plastid transformation has emerged as an alternative platform to generate transgenic plants. Attract...
Rice biotechnology has made rapid advances since the first transgenic rice plants were produced 15 y...
Since the first fertile transgenic rice was obtained during the late 1980s, studies on rice transfor...
In plant engineering, plastid transformation is more advantageous than nuclear transformation becaus...
Rice is one of the most successful monocots in regenerating fertile and genetically stable transgeni...
We compared rice transgenic plants obtained by #Agrobacterium$-mediated and particle bombardment tra...
Improving rice production is of current global concern so that food security is maintained especiall...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
Chloroplast genetic engineering overcomes concerns of gene containment, low levels of transgene expr...
We report the development of an efficient and reproducible genetic transformation system for the rec...