Difference between revisions of "Maeda Lab:Publications"
From Maeda Lab
Line 14: | Line 14: | ||
|-valign="top" | |-valign="top" | ||
|style="background:#ffffff"| | |style="background:#ffffff"| | ||
− | <h3><font>Publications | + | <h3><font>Publications</font></h3> |
# '''Maeda H.''', Yoo H., and Dudareva N. (2011) Prephenate Aminotransferase Directs Plant Phenylalanine Biosynthesis via Arogenate. [http://www.nature.com/nchembio/journal/vaop/ncurrent/abs/nchembio.485.html '''''Nature Chem. Biol.''''', DOI:10.1038/nchembio.485] | # '''Maeda H.''', Yoo H., and Dudareva N. (2011) Prephenate Aminotransferase Directs Plant Phenylalanine Biosynthesis via Arogenate. [http://www.nature.com/nchembio/journal/vaop/ncurrent/abs/nchembio.485.html '''''Nature Chem. Biol.''''', DOI:10.1038/nchembio.485] | ||
− | # '''Maeda H.''', Shasany A.K., Schnepp J., Orlova1 I., Taguchi G., Cooper B.R., Rhodes D., Pichersky E. and Dudareva N. (2010) RNAi Suppression of Arogenate Dehydratase1 Reveals That Phenylalanine Is Synthesized Predominantly via the Arogenate Pathway in Petunia Petals. [http://www.plantcell.org/cgi/content/abstract/22/3/832 '''''Plant Cell''''' 22, 832-849] *Described as a Research Highlight in [http://www.nature.com/nchembio/journal/v6/n5/full/nchembio.361.html '''''Nature | + | # '''Maeda H.''', Shasany A.K., Schnepp J., Orlova1 I., Taguchi G., Cooper B.R., Rhodes D., Pichersky E. and Dudareva N. (2010) RNAi Suppression of Arogenate Dehydratase1 Reveals That Phenylalanine Is Synthesized Predominantly via the Arogenate Pathway in Petunia Petals. [http://www.plantcell.org/cgi/content/abstract/22/3/832 '''''Plant Cell''''' 22, 832-849] *Described as a Research Highlight in [http://www.nature.com/nchembio/journal/v6/n5/full/nchembio.361.html '''''Nature Chem. Biology''''' 6, 310] |
# Song W., '''Maeda H.''', and DellaPenna D. (2010) Mutations of the ER to plastid lipid transporters (TGD1, 2, 3 and 4) and the ER oleate desaturase (FAD2) suppress the low temperature-induced phenotype of Arabidopsis tocopherol deficient mutant vte2. [http://onlinelibrary.wiley.com/doi/10.1111/j.1365-313X.2010.04212.x/abstract '''''Plant J.''''' 62, 1004-1018] | # Song W., '''Maeda H.''', and DellaPenna D. (2010) Mutations of the ER to plastid lipid transporters (TGD1, 2, 3 and 4) and the ER oleate desaturase (FAD2) suppress the low temperature-induced phenotype of Arabidopsis tocopherol deficient mutant vte2. [http://onlinelibrary.wiley.com/doi/10.1111/j.1365-313X.2010.04212.x/abstract '''''Plant J.''''' 62, 1004-1018] | ||
# Orlova I., Nagegowda D.A., Kish C.M., Gutensohn M., '''Maeda H.''', Varbanova M., Fridman E., Yamaguchi S., Hanada A., Kamiya Y., Krichevsky A., Citovsky V., Pichersky E., and Dudareva N. (2009) The Small Subunit Snapdragon Geranyl Diphosphate Synthase Modifies the Chain Length Specificity of Tobacco Geranylgeranyl Diphosphate Synthase in Planta. [http://www.plantcell.org/cgi/content/abstract/21/12/4002 '''''Plant Cell''''' 21, 4002-4017] | # Orlova I., Nagegowda D.A., Kish C.M., Gutensohn M., '''Maeda H.''', Varbanova M., Fridman E., Yamaguchi S., Hanada A., Kamiya Y., Krichevsky A., Citovsky V., Pichersky E., and Dudareva N. (2009) The Small Subunit Snapdragon Geranyl Diphosphate Synthase Modifies the Chain Length Specificity of Tobacco Geranylgeranyl Diphosphate Synthase in Planta. [http://www.plantcell.org/cgi/content/abstract/21/12/4002 '''''Plant Cell''''' 21, 4002-4017] |
Revision as of 17:07, 29 September 2011
Publications
|