[1] |
PITZSCHKE A, SCHIKORA A, HIRT H.MAPK cascade signalling networks in plant defence[J].Current Opinion in Plant Biology, 2009, 12 (4) 421-426. |
[2] |
MENG X Z, ZHANG S Q.MAPK cascades in plant disease resistance signaling[J].Annual Review of Phytopathology, 2013, 51:245-266. |
[3] |
FULING K, JIE W, LIN C, et al.Genome-wide analysis of the mitogen-activated protein kinase gene family in Solanum lycopersicum[J].Gene, 2012, 499 (1) 108-120. |
[4] |
NAKAGAMI H, PITZSCHKE A, HIRT H.Emerging MAP kinase pathways in plant stress signaling[J].Trends in Plant Science, 2005, 10 (7) 339-346. |
[5] |
DANQUAH A, ZELICOURT A, COLCOMBET J, et al.The role of ABA and MAPK signaling pathways in plant abiotic stress responses[J].Biotechnology Advances, 2014, 32 (1):40-52. |
[6] |
YANG T B, CHAUDHURI S, YANG L H, et al.A calcium/calmodulin-regulated member of the receptor-like kinase family confers cold tolerance in plants[J].JBC Papers in Press, 2009, 285 (10):7119-7126. |
[7] |
HAN S, WANG C W, WANG W L, et al.Mitogen-activated protein kinase 6 controls root growth in Arabidopsis by modulating Ca2+-based Na+ flux in root cell under salt stress[J].Journal of plant physiology, 2014, 171 (5):26-34. |
[8] |
SUN H K, DONG H W, JAE M K, et al.Arabidopsis MKK4 mediates osmotic-stress response via its regulation of MPK3 activity[J].Biochemical and Biophysical Research Communications, 2011, 412 (1):150-154. |
[9] |
LIU Y D, REN D T, SHARON P, et al.Chloroplast-generated reactive oxygen species are involved in hypersensitive response-like cell death mediated by a mitogen-activated protein kinase cascade[J].The Plant Journal, 2007, 51 (6):941-954. |
[10] |
MCDOWELL M J, JEFFERY L D.Signal transduction in the plant immune response[J].Trends in Biochemical Sciences, 2000, 25 (2):79-82. |
[11] |
KATHY M, DONG H, JÊRÔME G, et al.Transcript profiling in Vitis riparia during chilling requirement fulfillment reveals coordination of gene expression patterns with optimized bud break[J].Functional & Integrative Genomics, 2009, 9 (1):81-96. |
[12] |
JAI S.R, YANG Y N.Rice Mitogen-activated Protein Kinase Gene Family and Its Role in Biotic and Abiotic Stress Response[J].Journal of Integrative Plant Biology, 2007, 49 (6):751-759. |
[13] |
LEI G and CHENG B X.The genetic locus At1g73660 encodes a putative MAPKKK and negatively regulates salt tolerance in Arabidopsis[J].Plant Molecular Biology, 2008, 67 (1/2):125-134. |
[14] |
HAMEL L P, NICOLE M C, SRITUBTIM S, et al.Ancient signals:comparative genomics of plant MAPK and MAPKK gene families[J].Trends in Plant Science, 2006, 11 (4):192-198. |
[15] |
SONG Q M, LI D Y, DAI Y, et al.Characterization, expression patterns and functional analysis of the MAPK and MAPKK genes in watermelon (Citrullus lanatus) [J].BMC Plant Biology, 2015, 15 (1):298. |
[16] |
REN D, YANG K Y, LI G J, et al.Activation of Ntf4, a tobacco mitogen-activated protein kinase, during plant defense response and its involvement in hypersensitive response-like cell death[J].Plant Physiology, 2006, 141 (4):1482-1493. |
[17] |
WANG J, PAN C T, WANG Y, et al.Genome-wide identification of MAPK, MAPKK, and MAPKKK gene families and transcriptional profiling analysis during development and stress response in cucumber[J].BMC Genomics, 2015, 16 (1):386-402. |
[18] |
ASAI T, TENA G, PLOTNIKOVA J, et al.MAP kinase signaling cascade in Arabidopsis innate immunity[J].Nature, 2002, 415 (6875):977-983. |
[19] |
JIA W Y, LI B H, LI S J, et al.Mitogen-activated protein kinase cascade MKK7-MPK6 plays important roles in plant development and regulates shoot branching by phosphorylating PIN1 in Arabidopsis[J].PLoS Biology, 2016, 14 (9):e1002550. |
[20] |
ZHOU C J, CAI Z H, GUO Y F, et al.An arabidopsis mitogen-activated protein kinase cascade, MKK9-MPK6, plays a role in leaf senescence[J].Plant Physiology, 2009, 150 (1):167-177. |
[21] |
WANG H C, NGWENYAMA N, LIU Y D, et al.Stomatal development and patterning are regulated by environmentally responsive mitogen-activated protein kinases in Arabidopsis[J].The Plant Cell, 2007, 19 (1):63-73. |
[22] |
SUAREZ R M C, ADAMS P P L, LIU Y D, et al.MEKK1 is required for flg22-induced MPK4 activation in Arabidopsis plants[J].Plant Physiology, 2006, 143 (2):661-669. |
[23] |
ZHANG X T, CHENG T C, WANG G H, et al.Cloning and evolutionary analysis of tobacco MAPK gene family[J].Molecular Biology Reports, 2013, 40 (2):1407-1415. |
[24] |
ZHANG T, CHEN S X, HARMON A C.Protein-protein interactions in plant mitogen-activated protein kinase cascades[J].Journal of Experimental Botany, 2016, 67 (3):607-618. |
[25] |
KONG X P, PAN J W, ZHANG D, et al.Identification of mitogen-activated protein kinase kinase gene family and MKK-MAPK interaction network in maize[J].Biochemical and Biophysical Research Communications, 2013, 441 (4):964-969. |
[26] |
MARKUS T, ELISABETH S, THOMAS E, et al.The MKK2 pathway mediates cold and salt stress signaling in Arabidopsis[J].Molecular Cell, 2004, 15 (1):141-152. |
[27] |
KONG X P, PAN J W, ZHANG D, et al.Identification of mitogen-activated protein kinase kinase gene family and MKK-MAPK interaction network in maize[J].Biochemical and Biophysical Research Communications, 2013, 441 (4):964-969. |
[28] |
HAMEL L P, NICOLE M C, SRITUBTIM S, et al.Ancient signals:comparative genomics of plant MAPK and MAPKK gene families[J].Trends Plant Sci, 2006, 11 (4):192-198. |
[29] |
SINHA A K, JAGGI M, RAGHURAM B, et al.Mitogen-activated protein kinase signaling in plants under abiotic stress[J].Plant Signal Behav, 2011, 6 (2):196-203. |
[30] |
ZHAO L, WANG C, ZHU F, et al.Mild osmotic stress promotes 4-methoxy indolyl-3-methyl glucosinolate biosynthesis mediated by the MKK9-MPK3/MPK6 cascade in Arabidopsis[J].Plant Cell Rep, 2017, 36 (4):543-555. |
[31] |
LIU Z, LI Y, CAO H, et al.Comparative phospho-proteomics analysis of salt-responsive phosphoproteins regulated by the MKK9-MPK6 cascade in Arabidopsis[J].Plant Sci, 2015, 241:138-150. |
[32] |
WU D Y, JI J, WANG G, et al.LcMKK, a novel group A mitogen-activated protein kinase kinase gene in Lycium chinense, confers dehydration and drought tolerance in transgenic tobacco via scavenging ROS and modulating expression of stress-responsive genes[J].Plant Growth Regulation, 2015, 76 (3):269-279. |