Difference between revisions of "Maeda Lab:Publications"
From Maeda Lab
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− | <h3><font>Publications</font></h3> '''[http://scholar.google.com/citations?user=uQBb60kAAAAJ Google Scholar citations]''' | + | <h3><font>Publications</font></h3> '''[http://scholar.google.com/citations?user=uQBb60kAAAAJ Google Scholar citations]''' ('''*'''corresponding author) |
− | #Luby C., '''Maeda H.''', Goldman I. (2014) Genetic and Phenological Variation of Tocochromanol (Vitamin E) Content in Wild (''Daucus carota'' L. var. ''carota'') and Domesticated Carrot (''D. carota'' L. var. ''sativa'') [http://www.nature.com/articles/hortres201415 '''''Horticulture Research''''' 1:15] | + | #'''Dornfeld C.''', Weisberg A.J., Ritesh KC, Dudareva N., Jelesko J.G., '''Maeda H.A.*''' (2014) Phylobiochemical Characterization of Class-Ib Aspartate/Prephenate Aminotransferases Reveals Evolution of the Plant Arogenate Phenylalanine Pathway [http://www.plantcell.org/cgi/content/short/tpc.114.127407?keytype=ref&ijkey=2lzNDpqqYQx7ciD '''''Plant Cell''''' tpc.114.127407] |
+ | #Luby C., '''Maeda H.A.''', Goldman I. (2014) Genetic and Phenological Variation of Tocochromanol (Vitamin E) Content in Wild (''Daucus carota'' L. var. ''carota'') and Domesticated Carrot (''D. carota'' L. var. ''sativa'') [http://www.nature.com/articles/hortres201415 '''''Horticulture Research''''' 1:15] | ||
#'''Maeda H.''', Song W., Sage T.L., DellaPenna D. (2014) Role of Callose Synthases in Transfer Cell Wall Development in Tocopherol Deficient Arabidopsis Mutants. [http://journal.frontiersin.org/Journal/10.3389/fpls.2014.00046/abstract '''''Front. Plant Sci.''''' 5:46.] | #'''Maeda H.''', Song W., Sage T.L., DellaPenna D. (2014) Role of Callose Synthases in Transfer Cell Wall Development in Tocopherol Deficient Arabidopsis Mutants. [http://journal.frontiersin.org/Journal/10.3389/fpls.2014.00046/abstract '''''Front. Plant Sci.''''' 5:46.] | ||
#Yoo H., Widhalma J.R., Qiana Y., '''Maeda H.''', Cooperc B.R., Jannaschc A.S., Gondae I., Lewinsohne E., Rhodes D., Dudareva D. (2013) An Alternative Pathway Contributes to Phenylalanine Biosynthesis in Plants via a Cytosolic Tyrosine:Phenylpyruvate Aminotransferase. [http://www.nature.com/ncomms/2013/131125/ncomms3833/full/ncomms3833.html '''''Nature Commun.''''' 4:2833] | #Yoo H., Widhalma J.R., Qiana Y., '''Maeda H.''', Cooperc B.R., Jannaschc A.S., Gondae I., Lewinsohne E., Rhodes D., Dudareva D. (2013) An Alternative Pathway Contributes to Phenylalanine Biosynthesis in Plants via a Cytosolic Tyrosine:Phenylpyruvate Aminotransferase. [http://www.nature.com/ncomms/2013/131125/ncomms3833/full/ncomms3833.html '''''Nature Commun.''''' 4:2833] |
Revision as of 17:06, 28 July 2014
PublicationsGoogle Scholar citations (*corresponding author)
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