Agriculture Reference
In-Depth Information
[41] Liu, X. Q, Bai, X. Q, Qian, Q, et al. (2005). OsWRKY03, a rice transcriptional activator
that functions in defense signaling pathway upstream of OsNPR1. Cell Res., , 15,
593-603.
[42] Mao, X, Zhang, H, Qian, X, Li, A, Zhao, G, & Jing, R. (2012). TaNAC2, a NAC-type
wheat transcription factor conferring enhanced multiple abiotic stress tolerances in
Arabidopsis. J. Exp. Botany, doi:10.1093/jxb/err462. , 1-14.
[43] Mare, C, Mazzucotelli, E, Crosatti, C, Francia, E, Stanca, A. M, & Cattivelli, L. (2004).
Hv-WRKY38: a new transcription factor involved in cold and drought-response in
barley. Plant Mol Biol , 55, 399-416.
[44] Mauro-herrera, M, Meerow, A. W, Borrone, J, et al. (2006). Ten informative markers
developed from WRKY sequences in coconut (Cocos nucifera). Mol Ecol., , 6, 904-6.
[45] Mitsuda, N, & Ohme-takagi, M. (2009). Functional analysis of transcription factors in
Arabidopsis. Plant Cell Physiol., , 50, 1232-1248.
[46] Mott, I. W, & Wang, R. R. C. (2007). Comparative transcriptome analysis of salt-tolerant
wheat germplasm lines using wheat genome arrays. Plant Sci., , 173, 327-339.
[47] Nakashima, K, Tran, L. P, Nguyen, D. V, Fujita, M, Maruyama, K, Todaka, D, et al.
(2007). Functional analysis of a NAC-type transcription factor OsNAC6 involved in
abiotic and biotic stress responsive gene expression in rice. Plant J., 51:617e30.
[48] Nakashima, K, Takasaki, H, Mizoi, J, Shinozaki, K, & Yamaguchi-shinozaki, K. (2012).
NAC transcription factors in plant abiotic stress responses. Biochimica et Biophysica
Acta, , 1819, 97-103.
[49] Nakashima, K, Ito, Y, & Yamaguchi-shinozaki, K. (2009). Transcriptional regulatory
networks in response to abiotic stresses in Arabidopsis and grasses, Plant Physiol., ,
149, 88-95.
[50] Nelson, D. E, Repetti, P. P, Adams, T. R, et al. (2007). Plant nuclear factor Y (NF-Y) B
subunits confer drought tolerance and lead to improved corn yields on water-limited
acres. Proc. Natl. Acad. Sci. U.S.A., , 104, 16450-16455.
[51] Ogata, K, & Nishimura, Y. (1995). Specific DNA recognition by Myb protein. Tanpa‐
kushitsu Kakusan Koso, , 40, 1592-1597.
[52] Ogata, K. (1998). Structure and dynamics of the transcription factor, Myb, in DNA-
sequence recognition. Seikagaku, , 70, 1233-1250.
[53] Oh, S. J, Kim, Y. S, Kwon, C. W, Park, H. K, Jeong, J. S, & Kim, J. K. (2009). Overexpres‐
sion of the transcription factor AP37 in rice improves grain yield under drought
conditions. Plant Physiol., , 150, 1368-1379.
[54] Paz-ares, J, Ghosal, D, Wienand, U, Peterson, P. A, & Saedler, H. (1987). The regulatory
c1 locus of Zea mays encodes a protein with homology to myb proto-oncogene products
and with structural similarities to transcriptional activators. EMBO J., , 6, 3553-3558.
Search WWH ::




Custom Search