[1]温佳旭,陈雪丽,肖洋,等.土壤中主要溶磷菌种类及其作用机制[J].北方园艺,2023,(14):139-145.[doi:10.11937/bfyy.20224156]
 WEN Jiaxu,CHEN Xueli,XIAO Yang,et al.Major Phosphorus dissolving Bacteria Species in Soils and Mechanisms of Action[J].Northern Horticulture,2023,(14):139-145.[doi:10.11937/bfyy.20224156]
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土壤中主要溶磷菌种类及其作用机制

参考文献/References:

[1]王誉瑶,韦中,徐阳春,等.溶磷菌株组合的溶磷效应及对玉米生长的影响[J].植物营养与肥料学报,2017,23(1):262-268.[2]姜焕焕.耐盐碱解磷菌与磷石膏联用改良盐碱土的效果与机制[D].哈尔滨:哈尔滨工业大学,2019.[3]YU X,LIU X,ZHU T H,et al.Isolation and characterization of phosphatEsolubilizing bacteria from walnut and their effect on growth and phosphorus mobilization[J].Biology and Fertility of Soils,2011,47(4):437-446.[4]邢芳芳,高明夫,禚优优,等.大麦根际高效溶磷菌的筛选、鉴定及促生效果研究[J].华北农学报,2016,31(S1):252-257.[5]杨美英,王春红,武志海,等.大豆根际溶磷菌分离鉴定及溶磷过程中有机酸的分泌[J].华南农业大学学报,2016,37(5):38-44.[6]池景良,郝敏,王志学,等.解磷微生物研究及应用进展[J].微生物学杂志,2021,41(1):1-7.[7]李海云,孔维宝,达文燕,等.土壤溶磷微生物研究进展[J].生物学通报,2013,48(7):1-5.[8]BABALOLA O O,GLICK B R.The use of microbial inoculants in African agriculture:Current practice and future prospects[J].Food Agric Environ,2012(10):540-549.[9]SHARMA S B,SAYYED R Z,TRIVEDI M H,et al.Phosphate solubilizing microbes:Sustainable approach for managing phosphorus deficiency in agricultural soils[J].Springerplus,2013(2):587-600.[10]CHEN Y P,REKHA P D,ARUN A B,et al.Phosphate solubilizing bacteria from subtropical soil and their tricalcium phosphate solubilizing abilities[J].Applied Soil Ecology,2006,34(1):33-41.[11]李阜棣,胡正嘉.微生物学[M].5版.北京:中国农业出版社,2010.[12]KUCEY R M N.Phosphate solubilizing bacteria and fungi in various cultivated and virgin Alberta soils[J].Canadian Journal of Soil Science,1983(63):671-678.[13]KATZNELON H,PETERERON E,OUATT J.PhosphatEdissolving microorganisms on seed and in the rootzone of plants[J].Canadian Journal of Botany,1962,40(9):1181-1186.[14]JUHNKE M,MATHRE D,SANDS D.Identification and characterization of rhizopherEcompetent bacteria of wheat[J].Applied and Environmental Microbiology,1987,53(12):2793-2799.[15]de FREITAS J,BANERJEE M,GERMIDA J.PhosphatEsolubilizing rhizobacteria enhance the growth an dyield but not phosphorus up take of canola(Brassicanapus L.)[J].Biology and Fertility of Soils,1997,24(4):358-364.[16]赵小蓉,林启美,孙焱鑫,等.玉米根际与非根际解磷细菌的分布特点[J].生态学杂志,2001(6):62-64.[17]赵小蓉,林启美,孙焱鑫,等.小麦根际与非根际解磷细菌的分布[J].华北农学报,2001(1):111-115.[18]林启美,赵小蓉,孙焱鑫,等.四种不同生态系统的土壤解磷细菌数量及种群分布[J].土壤与环境,2000(1):34-37.[19]秦利均,杨永柱,杨星勇.土壤溶磷微生物溶磷、解磷机制研究进展[J].生命科学研究,2019,23(1):59-64,86.[20]王光华,赵英,周德瑞,等.解磷菌的研究现状与展望[J].生态环境,2003,12(1):96-101.[21]ASEA P,KUCEY R,STERART J.In organic phosphatEsolubilization by two Penicillium species in solution cultureand soil[J].Soil Biol Biochem,1988,20(4):459-464.[22]ILLMER P,BARBATO A,SCHINNER F.Solubilization of hardly soluble AlPO4 with P-solubilizing microorganisms[J].Soil Biol Biochem,1995,27(3):265-270.[23]OTHAMM R,PANHAR Q A.PhosphatEsolubilizing bacteria improves nutrient uptake in aerobic rice[M].Berlin:Springer,2014.[24]TORRIANI GORINI A,YAGIL E,SILVER S.Phosphate in microorganisms:Cellular and molecular biology[M].Washington:American Society for Microbiology,1994.[25]REILLY T J,BARON G S,NANO F,et al.Characterization and sequencing of inhibiting acidphosphatase from Francisel latularensis[J].Soil Biol Chem,1996,27(1):10973-10983.[26]SAITO M.Enzym eactivitie sof theinternal hyphae and germinated spore sofanar buscularmy corrhizal fungus,Gigaspora margari tabecher and hall[J].New Phytol,1995,129:425-431.[27]TISSERANT B,GIANINAZZIPEARSON V,GIANINAZZI S,et al.In planta histochemical staining offunga lalka line phosphatas eactivity for analysi sofefficientar buseularmy corrhizalin fectioms[J].Mycol Res,1993,97(2):245-250.[28]冯海艳,冯固,宋建兰,等.丛枝菌根真菌根内菌丝碱性磷酸酶活性与菌根共生效应的研究[J].中国生态农业学报,2004(2):129-132.[29]MARIA J,HARRISON,GARY R,et al.A phosphate transporter from Medicago truncatula involved in the acquisition of phosphatere leased by arbuscularmy corrhizal fungi[J].Plant Cell,2002(14):2413-2429.[30]陈哲,吴敏娜,秦红灵,等.土壤微生物溶磷分子机理研究进展[J].土壤学报,2009,46(5):925-931.[31]MUNTNER P,HE J,VUPPUTURI S,et al.Blood lead and chronic kidney disease in the general United States population:Results from NHANES Ⅲ[J].Kidney International,2003,63(3):1044-1050.[32]张艺灿,刘凤之,王海波.根际溶磷微生物促生机制研究进展[J].中国土壤与肥料,2020(2):1-9.[33]WANNER B L.Phosphorus assimilation and control of the phosphate regulon[M].Washington:American Society for Microbiology,1996.[34]SANE S A,MEHTA S K.Isolation and evaluation of rock phosphate solubilizing fungi as potential biofertilizer[J].Journal of Agricultural Science and Food Research,2015,6(2):156-160.[35]MARRA L M,de OLIVEIRA LONGATTI S M,SOARES C R F S,et al.Initial pH of medium affects organic acids production but do not affect phosphate solubilization[J].Brazilian Journal of Microbiology,2015,46(2):367-375.[36]王莉晶,高晓蓉,孙嘉怡,等.土壤解磷微生物作用机理及解磷菌肥对作物生长的影响[J].安徽农业科学,2008(14):5948-5950,5958.[37]管国强,李倩,季蓉蓉,等.1株溶磷细菌P0417的溶磷机制[J].江苏农业科学,2015,43(10):432-435.[38]LAN M,COMERFORD N B,FOX T R.Organic anions′ effect on phosphorus release from spodic horizons[J].Soil Science Society of America Journal,1995,59(6):1745-1749.[39]周克琴,王光华,金剑,等.土壤微生物对提高植物磷素营养的作用[J].农业系统科学与综合研究,2003(3):232-236.[40]LOUW H,WEBLEY D.A study of soil bacteria dissolving certain mineral phosphate fertilizers and related compounds[J].Journal of Applied Bacteriology,2008,22(2):227-233.[41]金晓丹.水体和表层沉积物不同形态磷分布及其迁移转化[D].上海:上海交通大学,2014.[42]蒋逸凡.解磷真菌Penicillium oxalicum溶解难溶性磷酸盐的代谢机制研究[D].湘潭:湘潭大学,2020.[43]边武英,何振立,黄昌勇.高效解磷菌对矿物专性吸附磷的转化及生物有效性的影响[J].浙江大学学报(农业与生命科学版),2000,26(4):461-464.[44]钟传青.解磷微生物溶解磷矿粉和土壤难溶磷的特性及其溶磷方式研究[D].南京:南京农业大学,2004.[45]KIM K Y,JORDAN D,MCDONALD G A.Effect of phosphate solubilizing bacteria and vesicular arbuscular mycorrhizae on tomato growth and soil microbial activity[J].Biology and Fertility of Soils,1997,26(2):79-87.[46]ILLMER P,SCHINNER R F.Solubilization of inorganic calcium phosphatessolubilization mechanisms[J].Soil Biology and Biochemistry,1995,27(3):257-263.[47]梅新兰,闪安琪,蒋益,等.适应玉米的溶磷细菌筛选及其对玉米生长的影响[J].土壤学报,2016,53(2):502-509.[48]李宁,王珊珊,马丽丽,等.两株高效溶磷菌的溶磷能力及其对玉米生长和红壤磷素形态的影响[J].植物营养与肥料学报,2021,27(2):275-283.[49]KANG S,CHOI M Y.Solid culture of phosphate solubilizing fungus, Penicillium sp.PS 113[J].Microbiology & Biotechnology Letters,1999,27(1):1-7.[50]朱培淼,杨兴明,徐阳春,等.高效解磷细菌的筛选及其对玉米苗期生长的促进作用[J].应用生态学报,2007(1):107-112.[51]蒋欣梅,夏秀华,于锡宏,等.微生物解磷菌肥对大棚茄子生长及土壤有效磷利用的影响[J].浙江大学学报(理学版),2012,39(6):685-688.[52]徐文凤,邢芳芳,宋涛,等.溶磷真菌PFK-1的解磷能力及其对油菜的促生作用[J].山东农业科学,2014,46(5):85-89.[53]NEW P B,MARTIN P M.Laboratory tests can predictbeneficial effects of phosphatEsolubilising bacteria on plants[J].Soil Biology and Biochemistry,2006,38(7):1521-1526.[54]王奎萍,郑颖,褚光耀,等.解磷、固氮、产吲哚乙酸微生物菌株的筛选及其对植物的促生效果[J].江苏农业学报,2013,29(6):1352-1359.[55]李益斌.解磷菌改良典型重金属污染土壤的应用研究[D].北京:北京有色金属研究总院,2018.[56]于海洋,周方园,李凤,等.解磷微生物及其在土壤污染防治中的应用研究进展[J].环境科学与技术,2020,43(S1):44-51.[57]史发超,殷中伟,江红梅,等.一株溶磷真菌筛选鉴定及其溶磷促生效果[J].微生物学报,2014,54(11):1333-1343.[58]范延辉,王君,尚帅,等.两株根际真菌的耐盐、溶磷、促生效果及其分类鉴定[J].土壤通报,2022,53(1):127-134.[59]于淼,吴红艳,冯健,等.解磷菌623-3的鉴定、培养条件优化及应用[J].四川农业大学学报,2020,38(5):572-579.[60]陈玲,马卫,许银,等.一株高效溶磷细菌MEC35的筛选鉴定及其多功能特性研究[J].绿色科技,2018(18):195-198.[61]丛新华,赵江华,温芳悦,等.溶磷放线菌Micromonospora nigra SY7的溶磷特性与抗病促生活性测定[J].吉林农业大学学报,2021,43(1):95-101.[62]周妍,王丽娜,张美珍,等.盐碱土加沙后接种溶磷菌对绿豆根际土壤细菌多样性的影响[J].山东农业科学,2022,54(6):73-81.[63]张昊鑫,王中华,牛兵,等.产IAA兼具溶磷解钾高效促生菌的筛选、鉴定及其广谱性应用[J].生物技术通报,2022,38(5):100-111.[64]吕俊,于存.一株高效溶磷伯克霍尔德菌的筛选鉴定及对马尾松幼苗的促生作用[J].应用生态学报,2020,31(9):2923-2934.[65]张建峰,王冠雄,黄佳,等.温度和干旱胁迫下绳状青霉菌P1的溶磷能力研究[J].西北农林科技大学学报(自然科学版),2021,49(3):86-92.[66]张静,白燕,普布贵吉,等.海螺沟冰川退缩区土壤溶磷型PGPR细菌的筛选及促生特性[J].应用与环境生物学报,2023,29(1):35-42.[67]李凌凌,杨进,孙妤婕,等.台湾假单胞菌的分离、鉴定及其对难溶性磷酸盐的溶解特性[J].武汉科技大学学报,2019,42(5):354-364.

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备注/Memo

第一作者简介:温佳旭(1998-),男,硕士研究生,研究方向为土壤微生物。Email:1487548236@qq.com.责任作者:陈雪丽(1980-),女,博士,副研究员,现主要从事土壤微生物生态等研究工作。Email:xuelichen99@ 163.com.基金项目:〖JP2〗黑龙江省重点研发资助项目 (2021ZXJ05B011);黑龙江省省属科研院所科研业务费资助项目(CZKYF2022-1-B014);黑龙江省农业科学院青年科学家资助项目(2021QKPY010);省级黑土地保护利用:典型地区耕地监测评价资助项目(2022-22-2)。收稿日期:2022-10-13

更新日期/Last Update: 2023-08-29