[1] 潘庆民,孙佳美,杨元合,等.我国草原恢复与保护的问题与对策[J].中国科学院院刊,2021,36(6):666-674 [2] 董世魁,汤琳,张相锋,等.高寒草地植物物种多样性与功能多样性的关系[J].生态学报,2016,37,1472-1483 [3] 秦大河.三江源区生态保护与可持续发展[M].北京:科学出版社,2014:25-26 [4] 赵新全,马玉寿,周华坤.三江源区退化生态系统恢复及可持续管理化[M].北京:科学出版社,2011:34-37 [5] 刘玉,马玉寿,施建军,等.大通河上游高寒草甸植物群落的退化特征[J].草业科学,2013,30(7):1082-1088 [6] 陈乐乐,施建军,王彦龙,等.高寒地区不同退化程度草地群落结构特征研究[J].草地学报,2016,24(1):210-213 [7] 左小安,赵学勇,赵哈林,等.科尔沁沙质草地群落物种多样性、生产力与土壤特性的关系[J].环境科学,2007,28(5):945-951 [8] 李双雄,姚拓,王理德,等.祁连山东段退化高寒草地修复过程中土壤微生物生物量变化[J].草地学报,2023,31(12):3668-3675 [9] 王慧颖,徐明岗,马想,等.长期施肥下我国农田土壤微生物及氨氧化菌研究进展[J].中国土壤与肥料,2018(2):1-12 [10] 任玉连,陆梅,范方喜,等.高原湿地沼泽化草甸土壤真菌与理化性质的关系[J].生态科学,2019,38(1):42-49 [11] 孙倩,吴宏亮,陈阜,等.宁夏中部干旱带不同作物根际土壤真菌群落多样性及群落结构[J].微生物学通报,2019,46(11):2963-2972 [12] CHE R,WANG Y,LI K,et al. Degraded patch formation significantly changed microbial community composition in alpine meadow soils[J]. Soil Tillage Research,2019,195,104426 [13] LI Y,WANG S,JIANG L,et al. Changes of soil microbial community under different degraded gradients of alpine meadow[J]. Agriculture Ecosystems and Environment,2016,222,213-222 [14] ZHOU H,ZHAO X,TANG Y,et al. Alpine grassland degradation and its control in the source region of the Yangtze and yellow Rivers,China[J]. Grassland Science,2005,51(3),191-203 [15] KOLASA J,ROLLO C. Introduction:the heterogeneity of heterogeneity:a glossary[J]. Ecological Heterogeneity,1991,86:1-23 [16] 周慧珍,龚子同.土壤空间变异性研究[J]. 土壤学报,1996,33(3):222-241 [17] 褚海燕,王艳芬,时玉,等.土壤微生物生物地理学研究现状与发展态势[J].中国科学院院刊,2017,32(6):585-592 [18] 牟晓明,于应文,王先之,等.青藏高原火绒草斑块群落空间格局分析[J].生态学报,2015,35(16):5306-5315 [19] 王英成,姚世庭,金鑫,等.三江源区高寒退化草甸土壤细菌多样性的对比研究[J].生态环境学报,2022,31(4):695-703 [20] WANG Y C,LU G X,YU H,et al. Meadow degradation increases spatial turnover rates of the fungal community through both niche selection and dispersal limitation[J]. Science of the Total Environmental,2021,843:149362 [21] DONG S,SHERMAN R. Enhancing the resilience of coupled human and natural systems of alpine rangelands on the Qinghai-tibetan plateau[J]. The Rangeland Journal,2015,37(1):i-iii [22] 姚世庭,芦光新,邓晔,等.模拟增温对土壤真菌群落组成及多样性的影响[J].生态环境学报,2021,30(7):1404-1411 [23] FENG K,ZHANG Z J,CAI W,et al. Biodiversity and species competition regulate the resilience of microbial biofilm community[J]. Molecular Ecology,2017,26(21),6170-6182 [24] SHADE A,DUNN R,BLOWES S A,et al. Macroecology to unite all life,large and small[J]. Trends in Ecology & Evolution,2018,33(10):731-744 [25] O'BRIEN S L,GIBBONS S M,OWENS S M,et al. Spatial scale drives patterns in soil bacterial diversity[J]. Environmental Microbiology,2016,18(6),2039-2051 [26] SHEN C C,SHI Y,NI Y Y,et al. Dramatic increases of soil microbial functional gene diversity at the treeline ecotone of Changbai Mountain[J]. Frontiers in Microbiology,2016,7:1184 [27] SINGH D,TAKAHASHI K,KIM M,et al. A hump-backed trend in bacterial diversity with elevation on Mount Fuji,Japan[J]. Microbial Ecology,2012,63,429-437 [28] YANG T,ADAMS J M,SHI Y,et al. Soil fungal diversity in natural grasslands of the Tibetan Plateau:associations with plant diversity and productivity[J]. New Phytologist,2017,215(2):756-765 [29] ZAK D R,HOLMES W E,WHITE D C,et al. Plant diversity,soil microbial communities,and ecosystem function:are there any links[J]? Ecology,2003,84(8):2042-2050 [30] YANG Y,DOU Y X,HUANG Y M,et al. Links between soil fungal diversity and plant and soil properties on the Loess Plateau[J]. Frontiers in Microbiology,2017,8:2198 [31] 张晶,张惠文,李新宇,等.土壤真菌多样性及分子生态学研究进展[J].应用生态学报,2004(10):1958-1962 [31] LIU D,LIU G H,CHEN L,et al. Soil pH determines fungal diversity along an elevation gradient in Southwestern China[J]. Science China Life Sciences,2018,61(6):718-726 [32] WANG J T,ZHENG Y M,HU H W,et al. Soil pH determines the alpha diversity but not beta diversity of soil fungal community along altitude in a typical Tibetan forest ecosystem[J]. Journal of Soils and Sediments,2015,15(5):1224-1232 [34] YANG T,WEISENHORN P,GILBERT J A,et al. Carbon constrains fungal endophyte assemblages along the timberline[J]. Environmental Microbiology,2016,18(8):2455-2469 [35] SHEN C C,XIONG J B,ZHANG H Y,et al. Soil pH drives the spatial distribution of bacterial communities along elevation on Changbai Mountain[J]. Soil Biology & Biochemistry,2013,57:204-211 |