References:
[1]PAUL D,NAIR S.Stress adaptations in a plant growth promoting rhizobacterium(PGPR) with increasing salinity in the coastal agricultural soils[J].Journal of Basic Microbiology,2008,48:378-384.[2]李琬,刘淼,张必弦,等.植物根际促生菌的研究进展及其应用现状[J].中国农学通报,2014,30(24):1-5.
[3]丁琳琳,刘五星,孙剑英,等.产ACC脱氨酶植物根际促生菌的筛选及其对修复植物高羊茅生长的影响[J].土壤,2013,45(2):271-276.
[4]吉云秀,黄晓东.不同盐分条件下植物促生菌对燕麦和黑麦草幼苗的促生效应[J].中国土壤与肥料,2008(2):65-68.
[5]FASCIGLIONE G,CASANOVAS E M,YOMMI A,et al.Azospirillum improves lettuce growth and transplant under saline conditions[J].J Sci Food Agric,2012,92:2518-2523.
[6]RUIZ-LOZANO J M,AZCON R,GOMEZ M.Alleviation of salt stress by arbuscular-mycorrhizal Glomus species in Lactuca sativa plants[J].Physiol Plantarum,1996,98:767-772.
[7]QI W,ZHAO L.Study of the siderophore-producing Trichoderma asperellum Q1 on cucumber growth promotion under salt stress[J].J Basic Microbiol,2013,53:355-364.
[8]UPADHYAY S K,SINGH J S,SAXENA A K,et al.Impact of PGPR inoculation on growth and antioxidant status of wheat under saline conditions[J].Plant Biology,2012,14:605-611.
[9]FLOWERS T J,YEO A R.Breeding for salinity resistance in crop plants.Where next?〖KG-*3〗[J].Australian Journal of Plant Physiology,1995,22:875-884.
[10]杨春武,李长有,张美丽,等.盐、碱胁迫下小冰麦体内的pH及离子平衡[J].应用生态学报,2008,19(5):1000-1005.
[11]CHANG P C.The use of plant growth-promoting rhizobacteria (PGPR) and an arbuscular mycorrhizal fungus (AMF) to improve plant growth in saline soils for phytoremediation[D].Waterloo:University of Waterloo,2007.
[12]SAIRAM R K,TYAGI A.Physiology and molecular biology of salinity stress tolerance in plants[J].Current Science,2004,86:407-421.
[13]SHIBLI R A,KUSHAD M,YOUSEF G G,et al.Physiological and biochemical responses of tomato microshoots to induced salinity stress with associated ethylene accumulation[J].Plant Growth Regulation,2007,51:159-169.
[14]PARIDA A K,DAS A B.Salt tolerance and salinity effects on plants[J].Ecotoxicology and Environmental Safety,2005,60:324-349.
[15]WILLEY N.Phytoremediation:Methods and reviews[M].Totowa,NJ:Humana Press,2006.
[16]GOND S K,TORRES M S,BERGEN M S,et al.Induction of salt tolerance and up-regulation of aquaporin genes in tropical corn by rhizobacterium Pantoea agglomerans[J].Letters in Applied Microbiology,2015,60:392-399.
[17]GRATTAN S R,GRIEVE C M.Salinity-mineral nutrient relations in horticultural crops[J].Scientia Horticulturae,1999,78:127-157.
[18]黄晓东,季尚宁,GLICK B,等.植物促生菌及其促生机理[J].现代化农业,2002(9):7.
[19]李海宗,潘梅.土壤中植物根际促生菌研究进展[J].广州化工,2004,42(10):52-54.
[20]AHMAD F,AHMAD I,KHAN M S.Screening of free-living rhizospheric bacteria for their multiple plant growth promoting activities[J].Microbiological Research,2008,163(2):173-181.
[21]PATTEN C L,GLICK B R.Role of Pseudomonas putida indoleacetic acid in development of the host plant root system[J].Applied and Environmental Microbiology,2002,68:3795-3801.
[22]KHURRAM Z.番茄潘那利中两个〖STBX〗ERD15〖STBZ〗基因的功能鉴定[D].武汉:华中农业大学,2011.
[23]GLICK B R,PENROSE D M,LI J.A model for the lowering of plant ethylene concentrations by plant growth-promoting bacteria[J].Journal of Theoretical Biology,1998,190:63-68.
[24]GLICK B R,CHENG Z,CZARNY J C,et al.Promotion of plant growth by ACC deaminase-producing soil bacteria[J].European Journal of Plant Pathology,2007,119:329-339.
[25]BELIMOV A A,SAFRONOVA V I,MIMURA T Response of spring rape (Brassica napus var.oleifera L.) to inoculation with plant growth promoting rhizobacteria containing 1-aminocyclopropane-1-carboxylate deaminase depends on nutrient status of the plant[J].Can J Microbiol,2002,48:189-199.
[26]UPADHYAY S K,SINGH D P.Effect of salt-tolerant plant growth-promoting rhizobacteria on wheat plants and soil health in a saline environment[J].Plant Biology,2015,17:288-293.
[27]BACILIO M,RODRIGUEZ H,MORENO M,et al.Mitigation of salt stress in wheat seedlings by a gfp-tagged Azospirillum lipoferum[J].Biol Fert Soils,2004,40:188-193.
[28]MAYAK S,TIROSH T,GLICK B R.Plant growth-promoting bacteria confer resistance in tomato plants to salt stress[J].Plant Physiology and Biochemistry,2004,42:565-572.
[29]NADEEM S M,ZAHIR Z A,NAVEED M.Preliminary investigations on inducing salt tolerance in maize through inoculation with rhizobacteria containing ACC deaminase activity[J].Canadian Journal of Microbiology,2007,53:1141-1149.
[30]HAMDIA A B E,SHADDAD M A K,DOAA M M.Mechanisms of salt tolerance and interactive effects of Azospirillum brasilense inoculation on maize cultivars grown under salt stress conditions[J].Plant Growth Regulation,2004,44:165-174.
[31]DIMKPA C,WEINAND T,ASCH F.Plant-rhizobacteria interactions alleviate abiotic stress conditions[J].Plant,Cell and Environment,2009,32:1682-1694.
[32]CHENG Z,PARK E,GLICK B R.1-Aminocyclopropane-1-carboxylate deaminase from Pseudomonas putida UW4 facilitates the growth of canola in the presence of salt[J].Can J Microbiol,2007,53:912-918.
[33]SERGEEVA E,SHAH S,GLICK B R.Growth of transgenic canola (Brassica napus cv.Westar) expressing a bacterial 1-aminocyclopropane-1-carboxylate (ACC) deaminase gene on high concentrations of salt[J].World Journal of Microbiology & Biotechnology,2006,22:277-282.
[34]BARASSI C A,AYRAULT G,CREUS C M,et al.Seed inoculation with Azospirillum mitigates NaCl effects on lettuce[J].Scientia Horticulturae,2006,109:8-14.
[35]SARAVANAKUMAR D,SAMIYAPPAN R.ACC deaminase from Pseudomonas fluorescens mediated saline resistance in groundnut (Arachis hypogaea) plants[J].Journal of Applied Microbiology,2007,102:1283-1292.
[36]ZAHIR Z A,MUNIR A,ASGHAR H N,et al.Effectiveness of rhizobacteria containing ACC deaminase for growth promotion of peas (Pisum sativum) under drought conditions[J].J Microbiol Biotechnol,2008,18:958-963.
[37]高扬,辛树权,王贵,等.植物促生菌CS1,CS2和CC9对盐碱地种植水稻的促生效果[J].安徽农业科学,2011,39(4):2141-2142,2145.
[38]辛树权,王贵,高扬,等.植物促生菌CS2、CC9和草炭土添加量对盐碱土育秧的作用效果[J].广东农业科学,2011(7):82-84.
[39]JHA Y,SABLOK G,SUBBARAO N,et al.Bacterial-induced expression of RAB18 protein in Orzya sativa salinity stress and insights into molecular interaction with GTP ligand[J].J Mol Recognit,2014,27:521-527.
[40]SANTORO M V,CAPPELLARI L R,GIORDANO W,et al.Plant growth-promoting effects of native Pseudomonas strains on Mentha piperita (peppermint):An in vitro study[J].Plant Biology,2015,17:1218-1226.
[41]VESSEY J K.Plant growth-promoting rhizobacteria as biofertilizers[J].Plant and Soil,2003,255:571-586.