The possibility of altering the unsaturation level of fatty acids in plant lipids by genetic transformation has implications for the stress tolerance of higher plants as well as for their nutritional value and industrial utilisation. While the integration and expression of transgenes in the plastome has several potential advantages over nuclear transformation, very few attempts have been made to manipulate fatty acid biosynthesis using plastid transformation. We produced transplastomic tobacco plants that express a Delta9 desaturase gene from either the wild potato species Solanum commersonii or the cyanobacterium Anacystis nidulans, using PEG-mediated DNA uptake by protoplasts. Incorporation of chloroplast antibioticinsensitive...
The manipulation of plant seed oil composition so as to deliver enhanced fatty acid compositions sui...
Plastid division, sustained by the equilibrium expression and coordination of plastid division genes...
Manipulation of biosynthetic pathways in transgenic plants offers a number of exciting opportunities...
The possibility of altering the unsaturation level of fatty acids in plant lipids by genetic transf...
A new cold-inducible genetic construct was cloned using a chloroplast-specific omega-3-fatty acid de...
Genetic modification of plastids in the model plant tobacco (Nicotiana tabacum) has demonstrated tha...
Two fatty acid desaturases were independently expressed in tobacco plants and freezing torelance of ...
Ácidos graxos de origem vegetal são as principais fontes de energia para a dieta humana, e configura...
The advent of plant genetic engineering over two decades ago hastened new thinking on breeding crops...
Although plastid transformation in higher plants was first demonstrated in the early 1990s it is onl...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
One of the distinguishing features of plants is the presence of membrane-bound organelles called pla...
Plant seed lipid metabolism is an area of intensive research, including many examples of transgenic ...
AbstractLeaves of transgenic tobacco plants with decreased levels of fatty acid unsaturation in phos...
The role of acyl-CoA-dependent Delta 6-desaturation in the heterologous synthesis of omega-3 long-ch...
The manipulation of plant seed oil composition so as to deliver enhanced fatty acid compositions sui...
Plastid division, sustained by the equilibrium expression and coordination of plastid division genes...
Manipulation of biosynthetic pathways in transgenic plants offers a number of exciting opportunities...
The possibility of altering the unsaturation level of fatty acids in plant lipids by genetic transf...
A new cold-inducible genetic construct was cloned using a chloroplast-specific omega-3-fatty acid de...
Genetic modification of plastids in the model plant tobacco (Nicotiana tabacum) has demonstrated tha...
Two fatty acid desaturases were independently expressed in tobacco plants and freezing torelance of ...
Ácidos graxos de origem vegetal são as principais fontes de energia para a dieta humana, e configura...
The advent of plant genetic engineering over two decades ago hastened new thinking on breeding crops...
Although plastid transformation in higher plants was first demonstrated in the early 1990s it is onl...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
One of the distinguishing features of plants is the presence of membrane-bound organelles called pla...
Plant seed lipid metabolism is an area of intensive research, including many examples of transgenic ...
AbstractLeaves of transgenic tobacco plants with decreased levels of fatty acid unsaturation in phos...
The role of acyl-CoA-dependent Delta 6-desaturation in the heterologous synthesis of omega-3 long-ch...
The manipulation of plant seed oil composition so as to deliver enhanced fatty acid compositions sui...
Plastid division, sustained by the equilibrium expression and coordination of plastid division genes...
Manipulation of biosynthetic pathways in transgenic plants offers a number of exciting opportunities...