Metabolic engineering of hydroxy fatty acid production in plants : RcDGAT2 drives dramatic increases in ricinoleate levels in seed oil /
Đã lưu trong:
| Príomhúdar: | Burgal, Julie. |
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| Údair Eile: | Browse, John., Dyer, John., Graham, Ian., Larson, Tony., Lu, Chaofu., Shockey, Jay. |
| Formáid: | Bài viết |
| Teanga: | English |
| Ábhair: | |
| Clibeanna: |
Cuir Clib Leis
Gan Chlibeanna, Bí ar an gcéad duine leis an taifead seo a chlibeáil!
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| Thư viện lưu trữ: | Thư viện Trường Đại học Đà Lạt |
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Míreanna Comhchosúla
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Cloning and characterization of an acyl-CoA-dependent diacylglycerol acyltransferase 1 (DGAT1) gene from Tropaeolum majus, and a study of the functional motifs of the DGAT protein using site-directed mutagenesis to modify enzyme activity and oil content /
le: Xu, Jingyu. -
The production of unusual fatty acids in transgenic plants /
le: Napier, Johnathan A. -
Application of cybernetic models to metabolic engineering : Investigation of storage pathways /
le: Varner, J. - Chloromethane metabolism by methylobacterium sp. strain CM4 /
- Application of mathematical tools for metabolic design of microbial ethanol production /