1. 西北农林科技大学 水土保持研究所, 陕西 杨凌,712100
2. 西北农林科技大学 林学院, 陕西 杨凌,712100
3. 中国科学院 水利部 水土保持研究, 陕西 杨凌,712100
纸质出版:2018
移动端阅览
张超, 马亚亚, 刘国彬, 等. 黄土高原植被恢复过程中土壤微生物的演变特征[J]. 水土保持通报, 2018,38(6):240-247.
ZHANG Chao, MA Yaya, LIU Guobin, et al. Evolution of Soil Microbial Community During Vegetation Restoration in Loess Plateau[J]. Bulletin of Soiland Water Conservation, 2018, 38(6): 240-247.
张超, 马亚亚, 刘国彬, 等. 黄土高原植被恢复过程中土壤微生物的演变特征[J]. 水土保持通报, 2018,38(6):240-247. DOI: 10.13961/j.cnki.stbctb.2018.06.037.
ZHANG Chao, MA Yaya, LIU Guobin, et al. Evolution of Soil Microbial Community During Vegetation Restoration in Loess Plateau[J]. Bulletin of Soiland Water Conservation, 2018, 38(6): 240-247. DOI: 10.13961/j.cnki.stbctb.2018.06.037.
[目的] 探究黄土高原植被恢复过程中土壤微生物的演变特征,为黄土高原生态恢复重建工作提供科学参考。[方法] 以Web of Science 数据库和CNKI 数据库中的期刊论文为数据源,运用CiteSpace文献计量工具对黄土高原植被恢复过程中土壤微生物演变的研究概况及研究热点进行分析。[结果] 2002—2018年黄土高原植被恢复过程中土壤微生物演变特征相关文献的发表数量随时间呈增长趋势;国内外研究热点主要围绕土壤微生物量、微生物群落结构以及酶活性展开,且对于微生物量的关注度比较高;在植被演替过程中,微生物生物量和酶活性总体增加,微生物群落从贫营养型向富营养型转变,土壤微生物群落结构和功能的进一步改善。不同植被类型对土壤生物质量改善效果不同,总体来说,混交林作用效果最好,刺槐和柠条纯林次之,荒草地和油松纯林最低。[结论] 黄土高原植被恢复土壤微生物今后的研究应注重微生物关键种的识别、参与碳氮磷循环的功能微生物以及全球变化对微生物群落影响等方面。
[Objective] The evolution characteristics of soil microorganism in the process of vegetation restoration in Loess Plateau were studied in order to which provided scientific reference for the ecological restoration and reconstruction of the loess plateau.[Methods] The present study focused on the vegetation restoration in the Loess Plateau and made a systematic analysis of soil microorganism evolution based on the literature data from the database of "Web of Science" and the "China National Knowledge Infrastructure" using CiteSpace bibliometrics tools.[Results] The number of literatures related to soil microorganism during the vegetation restoration of Loess Plateau during 2002-2018 presented an increasing trend. The related works mainly focuses on the soil microbial biomass
microbial community structure
enzyme activities
and especially on the microbial biomass. Vegetation succession caused an increase in microbial biomass and enzyme activities and led to a succession from oligotrophic microbial community to eutrophic community. In general
soil microbial community structure and function was improved during the vegetation succession. Vegetation types had different effects on soil biological quality. The mixed forest had the best quality
followed by the Robinia pseudoacacia and Caragana korshinskii pure forest
abandoned grassland
and Pinus tabuliformis pure forest.[Conclusion] Research on the soil microorganisms in the vegetation restoration of Loess Plateau in the future should focus on the key identification of soil microbial taxa in microbes involved in the carbon
nitrogen and phosphorus cycling
and the impact of global changes on the microbial community.
张超,刘国彬,薛萐,等.黄土丘陵区不同植被根际土壤微量元素含量特征[J].应用生态学报, 2012,23(3):645-650.
Hu Hangwei, Xu Zhihong, He Jizheng. Ammonia-Oxidizing Archaea Play a Predominant Role in Acid 3Soil Nitrification[M]. Elsevier Science & Technology, 2014.
邢肖毅,黄懿梅,安韶山,等.黄土丘陵区不同植被土壤氮素转化微生物生理群特征及差异[J].生态学报,2013,33(18):5608-5614.
Fierer N, Jackson R B. The diversity and biogeography of soil bacterial communities[J]. Proceedings of the National Academy of Sciences of the United States of America, 2006, 103(3):626-31.
Liu Junjie, Sui Yueyu, Yu Zhenhua, et al. High throughput sequencing analysis of biogeographical distribution of bacterial communities in the black soils of northeast China[J]. Soil Biology & Biochemistry, 2014, 70(2):113-122.
Liu Wenhui, Zhu Jiaojun, Jia Quanquan, et al. Carbon sequestration effects of shrublands in Three-North Shelterbelt Forest region, China[J]. Chinese Geographical Science, 2014, 24(4):444-453.
Walker T S, Bais H P, Grotewold E, et al. Root exudation and rhizosphere biology[J]. Plant Physiology, 2003, 132(1):44.
胡婵娟,郭雷,刘国华.黄土丘陵沟壑区不同植被恢复格局下土壤微生物群落结构[J].生态学报,2014,34(11):2986-2995.
刘桂婷,程林,王保莉,等.长期不同施肥对黄土旱塬黑垆土氨氧化细菌多样性的影响[J]. 中国农业科学,2010,43(13):2706-2714.
安韶山,张扬,郑粉莉.黄土丘陵区土壤团聚体分形特征及其对植被恢复的响应[J].中国水土保持科学,2008,1(2):66-70.
Zhang Chao, Liu Guobin, Song Zilin, et al. Natural succession on abandoned cropland effectively decreases the soil erodibility and improves the fungal diversity[J]. Ecological Applications, 2017, 27(7):2142-2154.
温仲明,焦峰,刘宝元,等.黄土高原森林草原区退耕地植被自然恢复与土壤养分变化[J]. 应用生态学报,2005,16(11):2025-2029.
杨亚辉,赵文慧,木热提江·阿不拉,等.不同植被对土壤理化性质影响:以王东沟小流域为例[J].水土保持通报,2016,36(1):249-252.
Zhang Tong, Shao Mingfei, Ye Lin. 454 pyrosequencing reveals bacterial diversity of activated sludge from 14 sewage treatment plants[J]. Isme Journal, 2012, 6(6):1137-1147.
张影,巩杰,马学成,等.基于文献计量的近20多年来土地利用对土壤有机碳影响研究进展与热点[J].土壤通报,2016,47(2):480-488.
祝薇,向雪琴,侯丽朋,等.基于Citespace软件的生态风险知识图谱分析[J].生态学报,2018,38(12):4504-4515.
荆延德,樊蕊.基于CNKI和WOS的非点源污染模型的研究热点及趋势分析[J].生态学报,2017,38(11):4077-4087.
曲国辉,郭继勋.松嫩平原不同演替阶段植物群落和土壤特性的关系[J].草业学报,2003, 12(1):18-22.
欧阳学军,黄忠良,周国逸,等.鼎湖山南亚热带森林群落演替对土壤化学性质影响的累积效应研究[J].水土保持学报,2003,17(4):51-54.
杨宁,邹冬生,杨满元,等.紫色土丘陵坡地植被恢复过程中土壤微生物生物量碳、微生物熵的变化[J].水土保持通报,2014,34(5):39-43.
吴建峰,林先贵.土壤微生物在促进植物生长方面的作用[J].土壤,2003,35(1):18-21.
赵彤,闫浩,蒋跃利,等.黄土丘陵区植被类型对土壤微生物量碳氮磷的影响[J].生态学报,2013,33(18):5615-5622.
Zhang Chao, Liu Guobin, Xue Sha, et al. Soil bacterial community dynamics reflect changes in plant community and soil properties during the secondary succession of abandoned farmland in the Loess Plateau[J].Soil Biology & Biochemistry, 2016, 97:46-49.
Heinze S, Oltmanns M, Joergensen R G, et al. Changes in microbial biomass indices after 10 years of farmyard manure and vegetal fertilizer application to a sandy soil under organic management[J]. Plant & Soil, 2011, 343(1/2):221-234.
从怀军,成毅,安韶山,等.黄土丘陵区不同植被恢复措施对土壤养分和微生物量C,N,P的影响[J].水土保持学报,2010,24(4):217-221.
Hu Yufu, Peng Jiajia, Yuan Shu, et al. Influence of ecological restoration on vegetation and soil microbiological properties in Alpine-cold semi-humid desertified land[J]. Ecological Engineering, 2016, 94(1):88-94.
Arunachalam A, Pandey H N. Ecosystem restoration of Jhum fallows in Northeast India:Microbial C and N along altitudinal and successional gradients[J]. Restoration Ecology, 2003, 11(2):168-173.
薛萐,刘国彬,戴全厚,等.不同植被恢复模式对黄土丘陵区侵蚀土壤微生物量的影响[J].自然资源学报,2007,22(1):20-27.
胡婵娟,刘国华,陈利顶,等.黄土丘陵沟壑区坡面上土壤微生物生物量碳、氮的季节变化[J].生态学杂志,2011,30(10):2227-2232.
赵彤,闫浩,蒋跃利,等.黄土丘陵区植被类型对土壤微生物量碳氮磷的影响[J].生态学报,2013,33(18):5615-5622.
吴建平,韩新辉,许亚东,等.黄土丘陵区不同植被类型下土壤与微生物C,N,P化学计量特征研究[J].草地学报,2016,24(4):783-792.
胡婵娟,傅伯杰,靳甜甜,等.黄土丘陵沟壑区植被恢复对土壤微生物生物量碳和氮的影响[J].应用生态学报,2009,20(1):45-50.
向泽宇,王长庭,宋文彪,等.草地生态系统土壤酶活性研究进展[J].草业科学,2011,28(10):1801-1806.
Boerner R E J, Brinkman J A, Smith A. Seasonal variations in enzyme activity and organic carbon in soil of a burned and unburned hardwood forest[J]. Soil Biology & Biochemistry, 2015, 37(8):1419-1426.
罗蓉,杨苗,余旋,等.沙棘人工林土壤微生物群落结构及酶活性的季节变化[J].应用生态学报,2018,29(4):1163-1169.
姬秀云,李玉华.黄土高原植被恢复对不同粒径土壤团聚体中酶活性的影响[J].水土保持通报,2018,38(1):24-28,35.
张笑培,杨改河,王得祥,等.黄土高原沟壑区不同植被恢复模式对土壤生物学特性的影响[J].西北农林科技大学学报:自然科学版,2008,36(5):149-154.
赵燕娜,廖超英,李晓明,等.毛乌素沙地不同林龄樟子松人工林土壤酶活性变化特征[J].西北林学院学报,2014,29(2):1-5.
李林海,邱莉萍,梦梦.黄土高原沟壑区土壤酶活性对植被恢复的响应[J].应用生态学报,2012,23(12):3355-3360.
黄懿梅,安韶山,曲东,等.黄土丘陵区植被恢复过程中土壤酶活性的响应与演变[J].水土保持学报,2007,21(1):152-155.
张超,刘国彬,薛萐,等.黄土丘陵区不同植被类型根际微生物群落功能多样性研究[J].草地学报,2015,23(4):710-717.
阚尚,李福春,田智宇,等.陕西靖边花豹湾聚湫坝地土壤微生物群落结构特征及其影响因子[J].土壤,2016,48(2):291-297.
淡静雅,梁健,王静,等.子午岭土壤可培养微生物对植被演替的响应[J].水土保持通报,2011,31(2):82-87.
Zhang Chao, Liu Guobin, Song Zilin, et al. Interactions of soil bacteria and fungi with plants during long-term grazing exclusion in semiarid grasslands[J]. Soil Biology & Biochemistry, 2018, 124:47-58.
Zeng Quanchao, Dong Yanghong, An Shaoshan. Bacterial community responses to soils along a latitudinal and vegetation gradient on the Loess Plateau, China[J]. Plos One, 2016, 11(4):e0152894.
Ren Chengjie, Chen Ji, Lu Xingjie, et al. Responses of soil total microbial biomass and community compositions to rainfall reductions[J]. Soil Biology & Biochemistry, 2018, 116:4-10.
Cui Yongxing, Fang Linchuan, Guo Xiaobin, et al. Responses of soil microbial communities to nutrient limitation in the desert-grassland ecological transition zone[J]. Science of the Total Environment, 2018, 642:45-55.
Youfeng N, Weiguo L, Zhisheng A. A 130-ka reconstruction of precipitation on the Chinese Loess Plateau from organic carbon isotopes[J]. Palaeogeography Palaeoclimatology Palaeoecology, 2008, 270(1):59-63.
党亚爱,李世清,王国栋,等.黄土高原典型土壤有机碳和微生物碳分布特征的研究[J].自然资源学报,2007,22(6):936-945.
党亚爱,李世清,王国栋,等.黄土高原典型土壤全氮和微生物氮剖面分布特征研究[J].植物营养与肥料学报,2007,13(6):1020-1027.
李静,蔚晓燕,唐明.黄土高原纸坊沟流域不同植物对土壤微生物生物量和土壤酶活性的影响[J].西北植物学报,2013,33(2):387-393.
蒋跃利,赵彤,闫浩,等.黄土丘陵区不同土地利用方式对土壤微生物量碳氮磷的影响[J].水土保持通报,2013,33(6):62-68.
曾全超,李鑫,董扬红,等.黄土高原不同乔木林土壤微生物量碳氮和溶解性碳氮的特征[J].生态学报,2015,35(11):3598-3605.
董莉丽,郑粉莉,安娟.黄土丘陵区不同土地利用类型下土壤微生物生物量特征[J].土壤通报,2010(6):1370-1375.
翟辉,张海,邱梅,等.黄土高原退耕坡地不同类型林分土壤生物学活性的研究[J].西北林学院学报,2016,31(4):33-38.
Deng Lei, Shangguan Zhouping, Rui Li. Effects of the grain-for-green program on soil erosion in China[J]. International Journal of Sediment Research, 2012, 27(1):120-127.
姚小萌,周正朝,王凯博,等.黄土丘陵沟壑区天然植被恢复类型对土壤微生物碳的影响[J].干旱区研究,2016,33(6):1287-1293.
Hu Chanjuan, Fu Bojie, Liu Guohua, et al. Vegetation patterns influence on soil microbial biomass and functional diversity in a hilly area of the Loess Plateau, China[J]. Journal of Soils & Sediments, 2010, 10(6):1082-1091.
杨晓娟,廖超英,李晓明,等.榆林沙区樟子松林土壤酶活性与土壤化学性质的通径分析[J].干旱区资源与环境,2013,27(9):109-112.
景宇鹏,李跃进,年佳乐,等.土默川平原不同盐渍化土壤酶活性特征的研究[J].生态环境学报,2013(9):1538-1543.
曹永昌,谭向平,和文祥,等.秦岭地区不同林分土壤微生物群落代谢特征[J].生态学报,2016,36(10):2978-2986.
刘洋,黄懿梅,曾全超.黄土高原不同植被类型下土壤细菌群落特征研究[J].环境科学,2016,37(10):3931-3938.
封晔,唐明,陈辉,等.黄土高原六道沟流域8种植物根际细菌与AMF群落多样性研究[J]. 环境科学,2012,33(1):314-322.
赵婷,张义,赵伟,等.退耕还林还草工程对土壤微生物和土壤酶影响的研究进展[J].江苏农业科学,2018,46(1):9-14.
0
浏览量
1201
下载量
9
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621