盐碱地土壤微生物生态特性研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Advances of Soil Microbial Ecological Characteristics in Saline-alkali Soil
  • 作者:汪顺义 ; 冯浩杰 ; 王克英 ; 高子登 ; 胡树文
  • 英文作者:WANG Shun-yi;FENG Hao-jie;WANG Ke-ying;GAO Zi-deng;HU Shu-wen;College of Resources and Environmental Science,China Agricultural University;Jining Technician College;
  • 关键词:微生物 ; 盐碱地 ; 土壤酶 ; 种质资源
  • 英文关键词:Microorganism;;Saline-alkali soil;;Soil enzyme;;Germplasm resource
  • 中文刊名:TRTB
  • 英文刊名:Chinese Journal of Soil Science
  • 机构:中国农业大学资源与环境学院;济宁技师学院;
  • 出版日期:2019-02-06
  • 出版单位:土壤通报
  • 年:2019
  • 期:v.50;No.298
  • 基金:重点研发计划(2016YFC0501205,2016YFC0501208,2017YFD0200706);; 国家自然基金(21775163)项目资助
  • 语种:中文;
  • 页:TRTB201901035
  • 页数:7
  • CN:01
  • ISSN:21-1172/S
  • 分类号:239-245
摘要
盐碱土遍布于全球100多国家,面积高达1×109 hm~2,作为重要的后备土地资源,将其合理的开发利用是目前的热点问题。盐碱土壤中蕴藏着丰富的微生物资源,微生物对土壤物质组分、理化性质和微环境表现出高度的响应特性,通过对土壤微生物进行系统、深入研究有助于揭示盐碱土的生物过程机制。本文回顾了国内外关于盐碱土特定环境中的微生物进展,从土壤微生物多样性分布格局、土壤改良过程中微生物群落变化、功能性微生物土壤修复机制及资源利用等角度进行综述,以期为盐碱土微生物生态功能研究提供借鉴。
        Saline-alkali soil, covering an area of 1×109 hectares, is widely distributed in more than 100 countries all over the world. As an important reserved land resource, how to develop and utilize it rationally is a hot issue at present. There are abundant microbial resources in saline-alkali soil. Microorganism showed a high degree of response to soil components, physical and chemical properties and micro-environment. The systematic and in-depth study of soil microorganisms would be helpful to reveal the biological process mechanism of saline-alkali soil. We reviewed the microbial progress in the special environment of saline-alkali soil. The distribution pattern of soil microbial diversity,and the change of microbial community, the mechanism of soil remediation by the functional microorganisms and the utilization of soil resources in the process of soil improvement were summarized in order to provide reference for the study of microbial ecological function in saline-alkali soil.
引文
[1]SETTER T L,WATERS I,STEFANOVA K,et al.Salt tolerance,date of flowering and rain affect the productivity of wheat and barley on rainfed saline land[J].Field Crops Research,2016,194:31-42.
    [2]CHERNOUSENKO G I,PANKOVA E I,KALININA N V,et al.Salt-affected soils of the Barguzin Depression[J].Eurasian Soil Science,2017,50(6):646-663.
    [3]乔正良,来航线,强郁荣,等.陕西主要盐碱土中微生物生态初步研究[J].西北农业学报,2006,15(3):60-64.
    [4]李新,焦燕,杨铭德.用磷脂脂肪酸(PLFA)谱图技术分析内蒙古河套灌区不同盐碱程度土壤微生物群落多样性[J].生态科学,2014,33(3):488-494.
    [5]KHAN KS,GATTINGER A,BUEGGER F,et al.Microbial use of organic amendments in saline soils monitored by changes in the13C/12C ratio[J].Soil Biology and Biochemistry,2008,40(5):1217-1 224.
    [6]康贻军,胡健,董必慧,等.滩涂盐碱土壤微生物生态特征的研究[J].农业环境科学学报,2007,26(s1):181-183.
    [7]王银山,张燕,谢辉,等.艾比湖湿地不同盐碱环境土壤微生物群落特征分析[J].干旱区资源与环境,2009,23(5):133-137.
    [8]贾晓宇,贺江舟,关统伟,等.新疆红井子盐碱土壤非培养放线菌多样性[J].微生物学通报,2012,39(5):606-613.
    [9]牛世全,杨建文,胡磊,等.河西走廊春季不同盐碱土壤中微生物数量、酶活性与理化因子的关系[J].微生物学通报,2012,39(3):416-427.
    [10]牛世全,景彩虹,廖世齐,等.河西走廊盐碱土细菌种群结构多样性的研究[J].西北师范大学学报(自然科学版),2013,49(2):90-95.
    [11]李海云,牛世全,孔维宝,等.河西走廊酒泉地区盐碱土未培养放线菌多样性[J].应用生态学报,2015,26(9):2817-2823.
    [12]黄明勇,杨剑芳,王怀锋,等.天津滨海盐碱土地区城市绿地土壤微生物特性研究[J].土壤通报,2007,38(6):1131-1135.
    [13]孙佳杰,尹建道,解玉红,等.天津滨海盐碱土壤微生物生态特性研究[J].南京林业大学学报(自然科学版),2010,34(3):057-61.
    [14]冯玉杰,张巍,陈桥,等.松嫩平原盐碱化草原土壤理化特性及微生物结构分析[J].土壤,2007,39(2):301-305.
    [15]SHI W,TAKANO T,LIU SK.Isolation and characterization of novel bacterial taxa from extreme alkali-saline soil[J].World Journal of Microbiology and Biotechnology,2012,28(5):2147-2157
    [16]ISHIDA TA,NARA K,MA SR,et al.Ectomycorrhizal fungal community in alkaline-saline soil in northeastern China[J].Mycorrhiza,2009,19(5):329-335.
    [17]VALENZUELA-ENCINAS C,NERIA-GONZ魣LEZ I,ALC?NTARA-HERN魣NDEZ RJ,et al.Changes in the bacterial populations of the highly alkaline saline soil of the former lake Texcoco(Mexico)following flooding[J].Extremophiles,2009,13(4):609-621.
    [18]VALENZUELA-ENCINAS C,NERIA-GONZ魣LEZ I,ALC?NTARA-HERN魣NDEZ RJ,et al.Phylogenetic analysis of the archaeal community in an alkaline-saline soil of the former lake Texcoco(Mexico)[J].Extremophiles,2008,12(2):247-254.
    [19]VALENZUELA-ENCINAS C,ALC魣NTARA-HERN魣NDEZ RJ,ESTRADA-ALVARADO I,et al.The archaeal diversity and population in a drained alkaline saline soil of the former lake Texcoco(Mexico)[J].Geomicrobiology Journal,2012,29(1):18-22.
    [20]俞冰倩,杨赛,朱琳,等.响应土壤阴离子类型的盐碱土古细菌群落多样性研究[J].中国环境科学.2018,38(7):2731-2739.
    [21]杨秀娟,胡玉昆,房飞,等.不同类型盐碱土有机碳及微生物生物量碳的垂直分布特征[J].生态学杂志,2013,32(5):1208-1214.
    [22]牛世全,杨婷婷,李君锋,等.盐碱土微生物功能群季节动态与土壤理化因子的关系[J].干旱区研究,2011,28(2):328-334.
    [23]ZHANG H,TANG J,LIANG S.Effects of snow cover plus straw mulching on microorganisms in paddy soil during winter[J].Applied Soil Ecology,2017,119:339-344.
    [24]TRIPATHI S,CHAKRABORTY A,CHAKRABARTI K,et al.Enzyme activities and microbial biomass in coastal soils of India[J].Soil Biology&Biochemistry,2007,39(11):2840-2848.
    [25]GARCíA C,HERNáNDEZ T.Influence of salinity on the biological and biochemical activity of a calciorthird soil[J].Plant and Soil,1996,178(2):255-263.
    [26]RIETZ D N,HAYNES R J.Effects of irrigation-induced salinity and sodicity on soil microbial activity[J].Soil Biology and Biochemistry,2003,35(6):845-854.
    [27]GARCIA C,HERNANDEZ T,COSTA F.Potential use of dehydrogenase activity as an index of microbial activity in degraded soils[J].Communications in Soil Science&Plant Analysis,1997,28(1-2):123-134.
    [28]岳中辉,王博文,王洪峰,等.松嫩草原盐碱土过氧化物酶活性及其与肥力因素的关系[J].草地学报,2009,17(3):294-297.
    [29]吴丽云,曹帮华,黄彦新,等.滨海盐碱地刺槐臭椿混交林土壤酶活性季节动态研究[J].林业科学研究,2010,23(6):889-894.
    [30]PATHAK H,RAO D L N.Carbon and nitrogen mineralization from added organic matter in saline and alkali soils[J].Soil Biology and Biochemistry,1998,30(6):695-702.
    [31]SINGH K.Microbial and Enzyme Activities of Saline and Sodic Soils[J].Land Degradation and Development,2016,27(3):706-718.
    [32]汤洁,赵晴,王思宁,等.吉林西部盐碱地水田水稻不同生长期土壤酶活性与有机碳含量的关系[J].生态环境学报,2016,25(9):1425-1430.
    [33]SINGH K,PANDEY V C,SINGH B,et al.Ecological restoration of degraded sodic lands through afforestation and cropping[J].Ecological Engineering,2012,43(3):70-80.
    [34]ALLISON V J,CONDRON L M,PELTZER D A,et al.Changes in enzyme activities and soil microbial community composition along carbon and nutrient gradients at the Franz Josef chronosequence,New Zealand[J].Soil Biology and Biochemistry,2007,39(7):1770-1781.
    [35]康贻军,杨小兰,沈敏,等.盐碱土壤微生物对不同改良方法的响应[J].江苏农业学报,2009,25(3):564-567.
    [36]范富,张庆国,马玉露,等.苏打盐碱地围堤养鱼改良土壤的生物性状[J].农业工程学报,2018,34(2):142-146.
    [37]范富,张庆国,邰继承,等.玉米秸秆夹层改善盐碱地土壤生物性状[J].农业工程学报,2015,31(8):1331-39.
    [38]汪成忠,胡永红,周翔宇,等.水稻秸秆还田对崇明盐碱地土壤酶活性和微生物数量的影响[J].干旱区资源与环境,2016,30(8):132-138.
    [39]何子建,史文娟,杨军强.膜下滴灌间作盐生植物棉田水盐运移特征及脱盐效果[J].农业工程学报,2017,33(23):129-138.
    [40]李文,叶旭红,韩冰,等.不同灌溉方式下3种土壤微生物活性测定方法比较[J].生态学报,2017,37(12):4084-4090.
    [41]沈婧丽,王彬,许兴.脱硫石膏改良盐碱地研究进展[J].农业科学研究,2016,37(1):65-69.
    [42]袁婉潼.生物腐殖酸对盐碱土壤微生物数量和酶活性的影响[J].安徽农业科学,2016(1):1-4.
    [43]JAYSHANKAR S,VIMALCHANDRA P,SINGH D P,et al.Influence of pyrite and farmyard manure on population dynamics of soil methanotroph and rice yield in saline rain-fed paddy field[J].Agriculture Ecosystems and Environment,2010,139(1-2):74-79.
    [44]WONG V N L,DALAL R C,GREENE R S B.Car bon dynamics of sodic and saline soils following gypsum and organic material additions:A laboratory incubation[J].Applied Soil Ecology,2009,41(1):29-40.
    [45]SUNG E H,HAN J S,AHN C M,et al.Biologi cal metal corrosion in saline systems by sulfur-reducing and iron-oxidizing bacteria[J].Water Quality Research Journal of Canada,2011,46(4):321.
    [46]刘艳,李波,隽英华,等.生物有机肥对盐碱地玉米渗透调节物质及土壤微生物的影响[J].西南农业学报,2018(5):1013-1018.
    [47]白璐,于大洋,张诗海,等.造纸废水灌溉对滨海盐碱退化湿地土壤中微生物的影响[J].环境工程,2015(s1):272-277.
    [48]宋玉珍.微生物肥料在松嫩平原盐碱地造林中的应用研究[D].东北林业大学,2009.
    [49]LYNCH J M,WHIPPS J M.LYNCH JM,Whipps J M.Substrate flow in the rhizosphere.Plant&Soil,1990,129(1):1-10.
    [50]Hinsinger P,Marschner P.Rhizosphere-perspectives and Challenges-a Tribute to Lorenz Hiltner 12-17 September2004-Munich,Germany[J].Plant&Soil,2006,283(1-2):vii-viii.
    [51]胡文革,赵亚东,闫平,等.盐碱地环境下芨芨草土壤微生物群落的初步分析[J].生态环境,2007,16(1):197-200.
    [52]肖克飚,吴普特,雷金银,等.不同类型耐盐植物对盐碱土生物改良研究[J].农业环境科学学报,2012,31(12):2433-2440.
    [53]伍玉鹏,吕丽媛,毕艳孟,等.接种蚯蚓对盐碱土养分、土壤生物及植被的影响[J].中国农业大学学报,2013(4):45-51.
    [54]ZHANG W,WANG C,LU T,et al.Cooperation between arbuscular mycorrhizal fungi and earthworms promotes the physiological adaptation of maize under a high salt stress[J].Plant&Soil,2018,423(1-2):1-16.
    [55]LANDWEHR M,HILDEBRANDT U,WILDE P,et al.The arbuscular mycorrhizal fungus Glomus geosporum in European saline,sodic and gypsum soils.Mycorrhiza,2002,12:199-211.
    [56]盛敏,唐明,迪丽努尔,等.西北盐碱土主要植物丛枝菌根研究.西北农林科技大学学报(自然科学版),2007,35:74-78
    [57]祝文婷,陈为京,陈建爱,等.丛枝菌根真菌提高植物抗盐碱胁迫能力的研究进展[J].安徽农业科学,2013,41(5):2061-2062.
    [58]任承钢,孔存翠,李岩,等.丛枝菌根真菌-植物共生体耐盐机制的研究进展.中国科学:生命科学,2016,46:1062-1068.
    [59]NAGA K,SUZUK K,OKADA G.Studies on the distribution of alkalophilic and alkali-tolerant soil fungi II:Fungal flora in two limestone caves in Japan[J].Mycoscience,1998,39(3):293-298.
    [60]石伟.极端盐碱土壤细菌的分离筛选及抗盐特性研究[D].东北林业大学,2011.
    [61]WANG S,YANG Q,LIU Z H,et al.Haloterrigena daqingensis sp.nov.an extremely haloalkaliphilic archaeon isolated from a saline-alkaline soil.[J].International Journal of Systematic&Evolutionary Microbiology,2010,60(Pt 10):2267.
    [62]燕红,钟方,高新亮,等.耐盐碱菌株的分离筛选及生物学特性和盐碱去除效率的研究[J].生态学杂志,2012,31(4):1000-1008.
    [63]崔西苓.耐盐碱木霉菌株的筛选鉴定、抗病促生及耐盐机理研究[D].中国农业科学院,2014.
    [64]刘彩霞.耐盐碱微生物的筛选及在盐碱土团聚体形成中的作用[D].南京农业大学,2009.
    [65]艾雪.沙漠结皮中耐盐碱细菌的分离及其固沙特性研究[D].兰州交通大学,2015.
    [66]CUI C,MA L,SHI J,et al.Metabolic pathway for degradation of anthracene by halophilic Martelella,sp.AD-3[J].International Biodeterioration and Biodegradation,2014,89(2):67-73.
    [67]BARUA S,TRIPATHI S,CHAKRABORTY A,et al.Characterization and crop production efficiency of diazotrophic bacterial isolates from coastal saline soils[J].Microbiological Research,2012,167(2):95-102.
    [68]杨剑芳,黄明勇,李杨,等.盐碱土硅酸盐细菌多样性初步研究[J].中国农学通报,2010,26(20):193-199.
    [69]胡磊,景彩虹,薄乐涛,等.盐碱土壤放线菌的研究概况[J].湖北农业科学,2012,51(13):2660-2665.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700