MPB-2015v6n20 - page 15

Molecular Plant Breeding 2015, Vol.6, No.20, 1
-
10
10
application of high-throughput AFLP's in assessing genetic diversity in
Fusarium oxysporum f. sp. cubense, Mycol Res, 110(Pt 3), 297-305
Gupta S.K., Rai A.K., Kanwar S.S., and Sharma T.R., 2012, Comparative
analysis of zinc finger proteins involved in plant disease resistance,
PLoS One, 7(8), e42578
Jayaraman A., Puranik S., Rai N.K., Vidapu S., Sahu P.P., Lata C., and
Prasad M., 2008, cDNA-AFLP analysis reveals differential gene
expression in response to salt stress in foxtail millet (Setaria italica L.),
Mol Biotechnol, 40(3), 241-251
Lee S.Y., Seo J.S., Rodriguez-Lanetty M., and Lee D.H., 2003, Comparative
analysis of superfamilies of NBS-encoding disease resistance gene
analogs in cultivated and wild apple species, Mol Genet Genomics,
269(1), 101-108
Li C.Y., Deng G.M., Yang J., Viljoen A., Jin Y., Kuang R.B., Zuo C.W., Lv
Z.C., Yang Q.S., Sheng O., Wei Y.R., Hu C.H., Dong T., and Yi G.J.,
2012, Transcriptome profiling of resistant and susceptible Cavendish
banana roots following inoculation with Fusarium oxysporum f. sp.
cubense tropical race 4, BMC Genomics, 13, 374
Liu X., Yang L., Zhou X., Zhou M., Lu Y., Ma L., Ma H., and Zhang Z.,
2013, Transgenic wheat expressing Thinopyrum intermedium MYB
transcription factor TiMYB2R-1 shows enhanced resistance to the
take-all disease, J Exp Bot, 64(8), 2243-2253
Lorenzo O., Chico J.M., Sanchez-Serrano J.J., and Solano R., 2004,
JASMONATE-INSENSITIVE1 encodes a MYC transcription factor
essential to discriminate between different jasmonate-regulated defense
responses in Arabidopsis, Plant Cell, 16(7), 1938-1950
Maheswaran M., Subudhi P.K., Nandi S., Xu J.C., Parco A., Yang D.C., and
Huang N., 1997, Polymorphism, distribution, and segregation of AFLP
markers in a doubled haploid rice population, Theor Appl Genet, 94(1),
39-45
Markson G., Kiel C., Hyde R., Brown S., Charalabous P., Bremm A.,
Semple J., Woodsmith J., Duley S., Salehi-Ashtiani K., Vidal M.,
Komander D., Serrano L., Lehner P., and Sanderson C.M., 2009,
Analysis of the human E2 ubiquitin conjugating enzyme protein
interaction network, Genome Res, 19(10), 1905-1911
Meng X., Xu J., He Y., Yang K.Y., Mordorski B., Liu Y., and Zhang S., 2013,
Phosphorylation of an ERF transcription factor by Arabidopsis
MPK3/MPK6 regulates plant defense gene induction and fungal
resistance, Plant Cell, 25(3), 1126-1142
Montero-Barrientos M., Hermosa R., Cardoza R.E., Gutierrez S., Nicolas C.,
and Monte E., 2010, Transgenic expression of the Trichoderma
harzianum hsp70 gene increases Arabidopsis resistance to heat and
other abiotic stresses, J Plant Physiol, 167(8), 659-665
Van Den Berg N., Berger D.K., Hein I., Birch P.R., Wingfield M.J., and
Viljoen A., 2007, Tolerance in banana to Fusarium wilt is associated
with early up-regulation of cell wall-strengthening genes in the roots,
Mol Plant Pathol, 8(3), 333-341
Ori N., Eshed Y., Paran I., Presting G., Aviv D., Tanksley S., Zamir D., and
Fluhr R., 1997, The I2C family from the wilt disease resistance locus
I2 belongs to the nucleotide binding, leucine-rich repeat superfamily of
plant resistance genes, Plant Cell, 9(4), 521-532
Raffaele S., Rivas S., and Roby D., 2006, An essential role for salicylic acid
in AtMYB30-mediated control of the hypersensitive cell death program
in Arabidopsis, FEBS Lett, 580(14), 3498-3504
Traut T.W., 1994, The functions and consensus motifs of nine types of
peptide segments that form different types of nucleotide-binding sites,
Eur J Biochem, 222(1), 9-19
Vailleau F., Daniel X., Tronchet M., Montillet J.L., Triantaphylides C., and
Roby D., 2002, A R2R3-MYB gene, AtMYB30, acts as a positive
regulator of the hypersensitive cell death program in plants in response
to pathogen attack, Proc Natl Acad Sci U S A, 99(15), 10179-10184
Wang W., Vinocur B., Shoseyov O., and Altman A., 2004, Role of plant
heat-shock proteins and molecular chaperones in the abiotic stress
response, Trends Plant Sci, 9(5), 244-252
Wang Z., Jia C., Li J., Huang S., Xu B., and Jin Z., 2015, Activation of
salicylic acid metabolism and signal transduction can enhance
resistance to Fusarium wilt in banana (Musa acuminata L. AAA group,
cv. Cavendish), Funct Integr Genomics, 15(1), 47-62
Yoshimura S., Yamanouchi U., Katayose Y., Toki S., Wang Z.X., Kono I.,
Kurata N., Yano M., Iwata N., and Sasaki T., 1998, Expression of Xa1,
a bacterial blight-resistance gene in rice, is induced by bacterial
inoculation, Proc Natl Acad Sci U S A, 95(4), 1663-1668
Zhang H., Jin J., Tang L., Zhao Y., Gu X., Gao G., and Luo J., 2011,
PlantTFDB 2.0: update and improvement of the comprehensive plant
transcription factor database, Nucleic Acids Res, 39(Database issue),
D1114-1117
1...,5,6,7,8,9,10,11,12,13,14 16
Powered by FlippingBook