saline or alkaline soil,soil microorganism,high throughput sequencing,bacterium community,diversity,Xinjiang ,"/>
Diversity of Bacterium Communities in Saline or Alkaline Soil in Arid Area
Arid Zone Research ›› 2019, Vol. 36 ›› Issue (5): 1202-1211.doi: 10.13866/j.azr.2019.05.18
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Diversity of Bacterium Communities in Saline or Alkaline Soil in Arid Area
WANG Wei-qi, Li Bian-bian, ZHANG Jun, YANG Lei, ZHANG Feng-hua
Received:
2018-11-20
Revised:
2019-03-11
Online:
2019-09-15
Published:
2019-09-11
WANG Wei-qi, Li Bian-bian, ZHANG Jun, YANG Lei, ZHANG Feng-hua.
Diversity of Bacterium Communities in Saline or Alkaline Soil in Arid Area [J].Arid Zone Research, 2019, 36(5): 1202-1211.
”. Please open it by linking:http://azr.xjegi.com/EN/abstract/abstract9596.shtml" name="neirong">
saline or alkaline soil; soil microorganism; high throughput sequencing; bacterium community; diversity; Xinjiang
">[1] | Shaw R J,Coughlan K J,Beli L C.Sodic soils:Distribution,properties,management and environmental consequences[C]//Sumner M E,Naidu R.Root Zone Sodicity,1998:95-106. |
[2] | 俞仁培,陈德明.我国盐渍土资源及其开发利用[J].土壤通报,1999,30(4):158-159.[Yu Renpei,Chen Deming.Saline soil resources and utilization in China[J].Chinese Journal of Soil Science,1999,30(4):158-159.] |
[3] | 熊毅.中国盐渍土分区[J].土壤学报,1957,5(1):50-60.[Xiong Yi.China salt soil zoning[J].Acta Pedologica Sinica,1957,5(1):50-60.] |
[4] | 文振旺.新疆盐渍土改良问题[J].新疆农业科学,1960(6):211-215.[Wen Zhenwang.The problem of salt soil improvement in Xinjiang[J].Xingjiang Agricultural Science,1960(6):211-215.] |
[5] | 毛培宏,金湘,王芸,等.新疆特殊环境微生物资源的研究与发展[J].生物技术,2006(5):88-91.[Mao Peihong,Jin Xiang,Wang Yun,et al.Research and development on research of microorganism in Xinjiang[J].Special Environment Biotechnology,2006(5):88-91.] |
[6] | 孙慧,张建锋,许华森,等.余姚滨海不同盐碱度土壤微生物群落组成及土壤酶活性的变化[J].应用生态学报,2016,27(10):3 361-3 370.[Sun Hui,Zhang Jianfeng,Xu Huasen,et al.Variations of soil microbial community composition and enzyme activities with different salinities on Yuyao coast[J].Chinese Journal of Applied Ecology,2016,27(10):3 361-3 370.] |
[7] | 李新.不同盐碱程度盐碱土壤微生物多样性研究[D].呼和浩特:内蒙古师范大学,2015.[Li Xin.Studies on Soil Microbial Community Structure Diversity in Different Degrees of Saline-Alkaline Soil[D].Hohhot:Inner Mongolia Normal University,2015.] |
[8] | 许芳芳.荒漠植物耐盐碱PGPR的分离筛选及其对盐胁迫下三种植物的促生效应和机理[D].呼和浩特:内蒙古农业大学,2017.[Xu Fangfang.Solation of Saline-Alkaline Tolerant PGPR of Desert Plant and Their Effect of Growth Promotion and Mechanism on Three Plants under Salt Stress[D].Hohhot:Inner Mongolia Agricultural University,2017.] |
[9] | 龚佳.四种灌木对盐碱胁迫的生理响应及其对土壤主要肥力指标的影响[D].银川:宁夏大学,2017.[Gong Jia.Physiological Responses of Four Shrubs to Saline-Alkali Stress and Its Effect on Soil Fertility[D].Yinchuan:Ningxia University,2017.] |
[10] | 张慧敏,郭慧娟,侯振安.不同盐碱胁迫对土壤细菌群落结构的影响[J].新疆农业科学,2018,55(6):1 074-1 084.[Zhang Huimin,Guo Huijuan,Hou Zhenan.Effects of saline and alkaline stress on soil bacterial community structure[J].Xijiang Agricultural Science,2018,55(6):1 074-1 084.] |
[11] | 牛世全,龙洋,李海云,等.应用Illumina MiSeq高通量测序技术分析河西走廊地区盐碱土壤微生物多样性[J].微生物学通报,2017,44(9):2 067-2 078.[Niu Shiquan,Long Yang,Li Haiyun,et al.Microbial diversity in saline alkali soil from Hexi Corridor analyzed by Illumina Mi Seq high-throughput sequencing system[J].Microbiology China,2017,44(9):2 067-2 078.] |
[12] | 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):2 731-2 739.[Yu Bingqian,Yang Sai,Zhu Ling,et al.Diversity characteristic of archaeal community responding to soil anion in saline-alkali soil[J].China Environmental Science,2018,38(7):2 731-2 739.] |
[13] | 柳梅英,包安明,陈曦,等.近30年玛纳斯河流域土地利用/覆被变化对植被碳储量的影响[J].自然资源学报,2010,25(6):926-938.[Liu Meiying,Bao Anming,Chen Xi,et al.Impact of land use/cover change on the vegetation carbon storage in the Manas river basin between 1976 and 2007[J].Journal of Natural Resources,2010,25(6):926-938.] |
[14] | 张添佑,王玲,罗冲,等.玛纳斯河流域土壤盐渍化时空动态变化[J].水土保持研究,2016,23(1):228-233.[Zhang Tianyou,Wang Ling,Luo Chong,et al.Spatiotemporal change of soil salinization in Manasi River Basin[J].Research of Soil and Water Conservation,2016,23(1):228-233.] |
[15] | 王海江.玛纳斯河流域土壤盐渍化过程和格局特征及盐渍土改良模式探讨[D].北京:中国农业大学,2014.[Wang Haijiang.Processes,Patterns and Reclamation of Soil Salinization at Manas River Basin[D].Beijing:China Agricultural University,2014.] |
[16] | 鲍士旦.土壤农化分析[M].3版.北京:中国农业出版社,2000.[Bao Shidan.Soil Agrochemical Analysis[M].3rd.Beijing:China Agricultural Press,2000.] |
[17] | Xiong J B,Liu Y Q,Lin X G,et al.Geographic distance and pH drive bacterial distribution in alkaline lake sediments across Tibetan Plateau[J].Environmental Microbiology,2012,14(9):2 457-2 466. |
[18] | Edgar R C,Haas B J,Clemente J C,et al.UCHIME improves sensitivity and speed of chimera detection[J].Bioinformatics,2011,27(16):2 194. |
[19] | Quast C,Pruesse E,Yilmaz P,et al.The SILVA ribosomal RNA gene database project:Improved data processing and web-based tools[J].Nucleic Acids Research,2013,41(D1):D590-D596. |
[20] | Schloss P D,Gevers D,Westcott S L.Reducing the effects of PCR amplification and sequencing artifacts on 16S rRNAbased studies[J].Plos One,2013,6(12):e27310. |
[21] | Wang Z Q,Zhu S Q,Yu R P.SoilAffected Soils in China[M].Beijing:Science Press,1991. |
[22] | Li X G,Li F M,Ma Q F,et al.Interactions of NaCl and Na2SO4 on soil organic C mineralization after addition of maize straws[J].Soil Biology & Biochemistry,2006,38(8):2 328-2 335. |
[23] | 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.[Qiao Zhengliang,Lai Hangxian,Qiang Yurong,et al.Primary study on microorganism ecology in saline-alkali soil of Shaanxi Province[J].Acta Agriculturae Boreali-Occidentalis Sinica,2006,15(3):60-64.] |
[24] | Dilfuza E,Giancarlo R,Stephan W,et al.Secondary salinity effects on soil microbial biomass[J].Biology & Fertility of Soils,2010,46(5):445-449. |
[25] | 王飞.盐分对土壤微生物多样性及土壤有机物转化的影响[D].石河子:石河子大学,2011.[Wang Fei.Study on Soil Microbial Molecular Diversity and Organic Matter Transformation under Soil Salinization Condition[D].Shihezi:Shihezi University,2011.] |
[26] | Li T,Wang P,Wang P.Bacterial and archaeal diversity in surface sediment from the south slope of the south China sea[J].Acta Microbiologica Sinica,2008,48(3):323. |
[27] | Orlando J,Alfaro M,Bravo L,et al.Bacterial diversity and occurrence of ammonia oxidizing bacteria in the Atacama Desert soil during a “desert bloom” event[J].Soil Biology & Biochemistry,2010,42(7):1 183-1 188. |
[28] | Nagy M L,Alejandro Pérez,GarciaPichel F.The prokaryotic diversity of biological soil crusts in the Sonoran Desert (Organ Pipe Cactus National Monument,AZ)[J].Fems Microbiology Ecology,2010,54(2):233-245. |
[29] | Angélique Chanal,Chapon V,Benzerara K,et al.The desert of Tataouine:An extreme environment that hosts a wide diversity of microorganisms and radiotolerant bacteria[J].Environmental Microbiology,2006,8(3):514-525. |
[30] | Liu W,Zhang W,Liu G,et al.Microbial diversity in the salinealkali soil of a coastal Tamarix chinensis woodland at Bohai Bay,China[J].Journal of Arid Land,2016,8(2):284-292. |
[31] | Oren A.Diversity of halophilic microorganisms:Environments,phylogeny,physiology,and applications[J].Journas of Industrial Microbiology & Biotechnology,2002,28(1):56-63. |
[32] | Margesin R,Schinner F.Potential of halotolerant and halophilic microorganisms for biotechnology[J].Extremophiles,2001,5(2):73-83. |
[33] | 田晓亮.微生物肥料改良大庆盐碱地作用及效果研究[D].哈尔滨:东北林业大学,2010.[Tian Xiaoliang.Micro-Ganisms Fertilizer and Its Effectiveness Evaluation Improvement Saline-Alkali Soil in Daqing[D].Harbin:Innner Northeast Forestry University,2010.] |
[34] | 崔曾杰,耿艳秋,范丽丽,等.生物菌肥对盐碱地水稻生长发育及产量的影响[J].东北农业科学,2013,38(5):32-35.[Cui Cengjie,Geng Yanqiu,Fan Lili,et al.Effects of bacterial manure on the growth and yield of rice growing in saline-alkali land[J].Journal of Jilin Agricultural Sciences,2013,38(5):32-35.] |
[35] | 王纶,王星玉,王树红,等.GPIT生物制剂对盐碱地玉米的增产效果[J].山西农业科学,2011,39(9):963-965.[Wang Lun,Wang Xinyu,Wang Shuhong,et al.Yield improvement effect of GPIT biological agents for Maize saline-alkali soil[J].Journal of Shanxi Agricultural Sciences,2011,39(9):963-965.] |
[36] | 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):1 001-1 008.[Yan Hong,Zhong Fang,Gao Xinliang,et al.Isolation and screening of saline-alkali tolerant bacterial strains and the biological chanracteristics and salt-alkail removal efficiency of the strain screened[J].Chinese Journal of Ecology,2012,31(4):1 001-1 008.] |
[37] | 曹军卫,沈萍,李朝阳.嗜极微生物[M].武汉:武汉大学出版社,2004.[Cao Junwei,Sheng Ping,Li Chaoyang.Extremophile [M].Wuhan:Wuhan University Press,2004.] |
[38] | Arahal D R .Phylogeny of the family Halomonadaceae based on 23S and 16S rDNA sequence analyses[J].International Journal of Systematic and Evolutionary Microbiology,2002,52(1):241-249. |
[39] | Lei Z,Qiu P,Ye R,et al.Bacillus shacheensis sp nov.a moderately halophilic bacterium isolated from a saline-alkali soil[J].The Journal of General and Applied Microbiology,2014,60(3):101-105. |
[40] | Kroll R G.Alkaliphiles[M].New York:Mc Graw-Hill,1990. |
[41] | 赵媛,何彩霞,杨国柱,等.青海湖耐盐微生物分离及对盐碱降解率的研究[J].黑龙江畜牧兽医,2018(13):16-19,240.[Zhao Yuan,He Caixia,Yang Guozhu,et al.Isolation of salt tolerant microorganisms from Qinghai lake and the effect ofdegradation rate on salt-alkali[J].Heilongjiang Animal Science and Veterinary Medicine,2018(13):16-19,240.] |
[42] | 潘媛媛,黄海鹏,孟婧,等.松嫩平原盐碱地中耐(嗜)盐菌的生物多样性[J].微生物学报,2012,52(10):1 187-1 194.[Pan Yuanyuan,Huang Haipeng,Meng Jin,et al.Biodiversity of culturable halotolerant and halophilic bacteria from saline-alkali soils in Songnen plain[J].Acta Microbiologica Sinica,2012,52(10):1 187-1 194.] |
[43] | Ishibashi M,Arakawa T,Philo J S,et al.Secondary and quaternary structural transition of the halophilic archaeon nucleoside diphosphate kinase under high-and low-salt conditions[J].Fems Microbiology Letters,2002,216(2):235-241. |
[44] | Madern D,Zaccai G.Molecular adaptation:The malate dehydrogenase from the extreme halophilic bacterium Salinibacter ruber behaves like a non-halophilic protein[J].Biochimie (Paris),2004,86(4-5):295-303. |
[45] | Mevarech M,Frolow F,Gloss L M .Halophilic enzymes:Proteins with a grain of salt[J].Biophysical Chemistry,2000,86(2):155-164. |
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