[1] 陈晓亚,汤章城. 植物生理与分子生物学[M]. 北京:高等教育出版社,2007:533-540.
[2] Muchate N S,Nikalje G C,Rajurkar N S,et al. Plant salt stress:adaptive responses,tolerance mechanism and bioengineering for salt tolerance[J]. Botanical Review,2016,82(4):371-406.
[3] Guo Q,Meng L,Mao P C,et al. Salt tolerance in two tall wheatgrass species is associated with selective capacity for K+ over Na+[J]. Acta Physiologiae Plantarum,2015,37(1):1708.
[4] 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.
[5] Ahanger M A, Akram N A, Ashraf M, et al. Signal transduction and biotechnology in response to environmental stresses[J].Biologia Plantarum, 2017, 61(3):401-416.
[6] Rodriguez M C,Petersen M,Mundy J. Mitogenactivated protein kinase signaling in plants[J]. Annual Review of Plant Biology,2010,61(1):621-649.
[7] Peng L X,Gu L K,Li D Q,et al. Relations between MAPK phosphorylation and ABA level in Malus sieversii under water stress[J]. Russian Journal of Plant Physiology,2009,56(5):642-646.
[8] Guo Y M, Samans B, Chen S, et al. Drought-Tolerant Brassica rapa shows rapid expression of gene Networks for general stress responses and programmed cell death under simulated drought stress[J]. Plant Molecular Biology Reporter, 2017, 35(4):416-430.
[9] Parmar N, Singh K H, Sharma D, et al. Genetic engineering strategies for biotic and abiotic stress tolerance and quality enhancement in horticultural crops:a comprehensive review[J]. 3 Biotech, 2017, 7(4):239.
[10] Ali F, Bano A, Fazal A, et al. Recent methods of drought stress tolerance in plants[J]. Plant Growth Regulation, 2017(1):1-13.
[11] John R, Anjum N A, Sopory S K, et al. Some key physiological and molecular processes of cold acclimation[J]. Biologia Plantarum, 2016, 60(4):603-618.
[12] Hadiarto T,Nanmori T,Matsuoka D,et al. Activation of arabidopsis MAPK kinase kinase (AtMEKK1) and induction of AtMEKK1-AtMEK1 pathway by wounding[J]. Planta,2006,223(4):708-713.
[13] Covic L,Silva N F,Lew R R. Functional characterization of ARAKIN(ATMEKK1):a possible mediator in an osmotic stress response pathway in higher plants[J]. Biochimica et Biophysica acta,1999,1451(2/3):242-254.
[14] Dubouzet J G,Sakuma Y,Ito Y,et al. OsDREB genes in rice,Oryza sativa L.,encode transcription activators that function in drought-,high-salt-and cold-responsive gene expression[J]. Plant Journal,2003,33(4):751-763.
[15] Deokar A A, Kondawar V, Kohli D, et al. The CarERF genes in chickpea (Cicer arietinum L.) and the identification of CarERF116 as abiotic stress responsive transcription factor[J]. Functional & Integrative Genomics, 2015, 15(1):27-46.
[16] Wang C L, Lu G Q, Hao Y Q, et al. ABP9, a maize bZIP transcription factor, enhances tolerance to salt and drought in transgenic cotton[J]. Planta, 2017, 1-17. doi:10.1007/s00425-017-2704-x.
[17] Yu Y, Duan X B, Ding X D, et al. A novel AP2/ERF family transcription factor from Glycine soja, GsERF71, is a DNA binding protein that positively regulates alkaline stress tolerance in Arabidopsis[J]. Plant Molecular Biology, 2017, 94(4-5):509-530.
[18] Bing L,Feng C C,Li J L,et al. Overexpression of the AtSTK gene increases salt,PEG and ABA tolerance in Arabidopsis[J]. Journal of Plant Biology,2013,56(6):375-382.
[19] Rushton P J,Macdonald H,Huttly A K,et al. Members of a new family of DNA-binding proteins bind to a conserved cis-element in the promoters of alpha-Amy2 genes[J]. Plant Molecular Biology,1995,29(4):691-702.
[20] Liu Z,Fang H,Pei Y,et al. WRKY transcription factors down-regulate the expression of H2S-generating genes,LCD and DES in Arabidopsis thaliana[J]. Science Bulletin,2015,60(11):995-1001.
[21] Encinas-Villarejo S,Maldonado A M,Amil-Ruiz F,et al. Evidence for a positive regulatory role of strawberry(Fragaria×ananassa)FaWRKY1 and Arabidopsis AtWRKY75 proteins in resistance[J]. Journal of Experimental Botany,2009,60(11):3043-3065.
[22] Jiang L,Jian H Y,Qian J Z,et al. MAX4 gene is involved in the regulation of low inorganic phosphate stress responses in Arabidopsis thaliana[J]. Acta Physiologiae Plantarum,2011,33(3):867-875.
[23] Kim C Y,Zhang S. Activation of a mitogen-activated protein kinase cascade induces WRKY family of transcription factors and defense genes in tobacco[J]. Plant Journal,2004,38(1):142-151.
[24] Asai T,Tena G,Plotnikova J,et al. MAP kinase signalling cascade in Arabidopsis innate immunity[J]. Nature,2002,415(6875):977-983.
[25] Andreasson E,Jenkins T,Brodersen P,et al. The MAP kinase substrate MKS1 is a regulator of plant defense responses[J]. The EMBO Journal,2005,24(14):2579-2589. |