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Most genetic modifications have pleiotropic effects, so the meaningful interpretation of any one behavior often critically depends on knowledge of other phenotypes.
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Most importantly, genetic modification requires insight into the genetic alterations needed to obtain a desired phenotype.
Expression of bacterial β-glucuronidase could be enhanced as well by most of the same genetic modifications.
The combination of such genetic modifications is most likely to be effective when combined with conventional treatments, thus robustly activating several pro-apoptotic pathways.
DOI: http://dx.doi.org/10.7554/eLife.00354.002 Rice is one of the world's most important food crops, and genetic modifications are extensively used for various purposes such as to increase yield and tolerate harsh environments.
The combination of such genetic modifications is most likely to be effective when combined with conventional treatments, thus robustly activating several pro-apoptotic pathways, and paving the way for the therapeutically beneficial application of pro-apoptotic gene therapy for cancer of the breast.
This information allowed us to investigate whether there are factors that control the recalcitrance of both grasses and legumes, which could help in identifying fractions of the plants that would most benefit from genetic modification or targeted growth.
Information from this study supports recommendations as to which plant types and species are more desirable for biological conversion in a mixture of prairie species, in addition to identifying fractions of the plants that would most benefit from genetic modification or targeted growth.
Some of the most productive metabolic engineering strategies involve genetic modifications that cause severe metabolic burden on the host cell.
CaMV P35S is among the most widely used genetic elements in genetic modifications of plants [ 25- 27], and its presence was thus used as a proxy to identify cloning vectors and other constructs likely to be relevant for plant transformations.
The most widely used methods for detection of genetic modifications in plants rely on real-time PCR.
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