Bardgett R D, Bullock J M, Lavorel S, Manning P, Schaffner U, Ostle N, Chomel M, Durigan G, Fry E L, Johnson D, Lavallee J M, Le Provost G, Luo S, Png K, Sankaran M, Hou X Y, Zhou H K, Ma L, Ren W B, Li X L, Ding Y, Li Y H, Shi H X. Combatting global grassland degradation. Nature Reviews Earth & Environment, 2021, 2(10): 720-735.
[2]Scurlock J M O, Johnson K, Olson R J. Estimating net primary productivity from grassland biomass dynamics measurements. Global Change Biology, 2002, 8(8): 736-753. DOI:10.1046/j.1365-2486.2002.00512.x
[3]Yang Y H, Fang J Y, Tang Y H, Ji C J, Zheng C Y, He J S, Zhu B. Storage, patterns and controls of soil organic carbon in the Tibetan grasslands. Global Change Biology, 2008, 14(7): 1592-1599. DOI:10.1111/j.1365-2486.2008.01591.x
[4]O'Mara F P. The role of grasslands in food security and climate change. Annals of Botany, 2012, 110(6): 1263-1270. DOI:10.1093/aob/mcs209
[5]Chen Y Z, Mu S J, Sun Z G, Gang C C, Li J L, Padarian J, Groisman P, Chen J M, Li S W. Grassland carbon sequestration ability in China: a new perspective from terrestrial aridity zones. Rangeland Ecology & Management, 2016, 69(1): 84-94.
[6]Gang C C, Zhou W, Chen Y Z, Wang Z Q, Sun Z G, Li J L, Qi J G, Odeh I. Quantitative assessment of the contributions of climate change and human activities on global grassland degradation. Environmental Earth Sciences, 2014, 72(11): 4273-4282. DOI:10.1007/s12665-014-3322-6
[7]Wang X G, Han J G, Dong Y P. Recent grassland policies in China: an overview. Outlook on Agriculture, 2005, 34(2): 105-110. DOI:10.5367/0000000054224319
[8]Kang L, Han X G, Zhang Z B, Sun O J. Grassland ecosystems in China: review of current knowledge and research advancement. Philosophical Transactions of the Royal Society B: Biological Sciences, 2007, 362(1482): 997-1008. DOI:10.1098/rstb.2007.2029
[9] [10]Wang Z Q, Zhang YZ, Yang Y, Zhou W, Gang C C, Zhang Y, Li J L, An R, Wang K, Odeh I, Qi J G. Quantitative assess the driving forces on the grassland degradation in the Qinghai-Tibet Plateau, in China. Ecological Informatics, 2016, 33: 32-44. DOI:10.1016/j.ecoinf.2016.03.006
[11]尚占环, 董全民, 施建军, 周华坤, 董世魁, 邵新庆, 李世雄, 王彦龙, 马玉寿, 丁路明, 曹广民, 龙瑞军. 青藏高原"黑土滩"退化草地及其生态恢复近10年研究进展——兼论三江源生态恢复问题. 草地学报, 2018, 26(1): 1-21.
[12] [13]Yuan Z Q, Jiang X J, Liu G J, Jin H J, Chen J, Wu Q B. Responses of soil organic carbon and nutrient stocks to human-induced grassland degradation in a Tibetan alpine meadow. CATENA, 2019, 178: 40-48. DOI:10.1016/j.catena.2019.03.001
[14] [15]Conrad M K, Tischew S. Grassland restoration in practice: do we achieve the targets? A case study from Saxony-Anhalt/Germany. Ecological Engineering, 2011, 37(8): 1149-1157. DOI:10.1016/j.ecoleng.2011.02.010
[16]Waldén E, Lindborg R. Long term positive effect of grassland restoration on plant diversity-success or not?. PLoS One, 2016, 11(5): e0155836. DOI:10.1371/journal.pone.0155836
[17]Jackson L L, Lopoukhine N, Hillyard D. Ecological restoration: a definition and comments. Restoration Ecology, 1995, 3(2): 71-75. DOI:10.1111/j.1526-100X.1995.tb00079.x
[18]Balensiefer M, Rossi R, Ardinghi N, Cenni M, Ugolini M. SER International Primer on Ecological Restoration, 2004.
[19] [20]Ruiz-Jaen M C, Aide T M. Restoration success: how is it being measured?. Restoration Ecology, 2005, 13(3): 569-577. DOI:10.1111/j.1526-100X.2005.00072.x
[21]Hobbs R J. Setting effective and realistic restoration goals: key directions for research. Restoration Ecology, 2007, 15(2): 354-357. DOI:10.1111/j.1526-100X.2007.00225.x
[22]Tilman D, Isbell F, Cowles J M. Biodiversity and ecosystem functioning. Annual Review of Ecology, Evolution, and Systematics, 2014, 45: 471-493. DOI:10.1146/annurev-ecolsys-120213-091917
[23]Engst K, Baasch A, Erfmeier A, Jandt U, May K, Schmiede R, Bruelheide H. Functional community ecology meets restoration ecology: assessing the restoration success of alluvial floodplain meadows with functional traits. Journal of Applied Ecology, 2016, 53(3): 751-764. DOI:10.1111/1365-2664.12623
[24]Aavik T, Helm A. Restoration of plant species and genetic diversity depends on landscape-scale dispersal. Restoration Ecology, 2018, 26(S2): S92-S102.
[25]Brandt A J, Seabloom E W, Cadotte M W. Nitrogen alters effects of disturbance on annual grassland community diversity: implications for restoration. Journal of Ecology, 2019, 107(5): 2054-2064. DOI:10.1111/1365-2745.13245
[26]Liu S B, Zamanian K, Schleuss P M, Zarebanadkouki M, Kuzyakov Y. Degradation of Tibetan grasslands: consequences for carbon and nutrient cycles. Agriculture, Ecosystems & Environment, 2018, 252: 93-104.
[27]Rosenzweig S T, Carson M A, Baer S G, Blair J M. Changes in soil properties, microbial biomass, and fluxes of C and N in soil following post-agricultural grassland restoration. Applied Soil Ecology, 2016, 100: 186-194. DOI:10.1016/j.apsoil.2016.01.001
[28]Graham E B, Knelman J E, Schindlbacher A, Siciliano S, Breulmann M, Yannarell A, Beman J M, Abell G, Philippot L, Prosser J, Foulquier A, Yuste J C, Glanville H C, Jones D L, Angel R, Salminen J, Newton R J, Bürgmann H, Ingram L J, Hamer U, Siljanen H M P, Peltoniemi K, Potthast K, Bañeras L, Hartmann M, Banerjee S, Yu R Q, Nogaro G, Richter A, Koranda M, Castle S C, Goberna M, Song B, Chatterjee A, Nunes O C, Lopes A R, Cao Y P, Kaisermann A, Hallin S, Strickland M S, Garcia-Pausas J, Barba J, Kang H, Isobe K, Papaspyrou S, Pastorelli R, Lagomarsino A, Lindström E S, Basiliko N, Nemergut D R. Microbes as engines of ecosystem function: when does community structure enhance predictions of ecosystem processes?. Frontiers in Microbiology, 2016, 7: 214.
[29]Luong J C, Turner P L, Phillipson C N, Seltmann K C. Local grassland restoration affects insect communities. Ecological Entomology, 2019, 44(4): 471-479. DOI:10.1111/een.12721
[30]Casimiro M S, Sansevero J B B, Queiroz J M. What can ants tell us about ecological restoration? A global meta-analysis. Ecological Indicators, 2019, 102: 593-598. DOI:10.1016/j.ecolind.2019.03.018
[31]Atkinson J, Bonser S P. "Active" and "passive" ecological restoration strategies in meta-analysis. Restoration Ecology, 2020, 28(5): 1032-1035. DOI:10.1111/rec.13229
[32]Batchelor J L, Ripple W J, Wilson T M, Painter L E. Restoration of riparian areas following the removal of cattle in the Northwestern Great Basin. Environmental Management, 2015, 55(4): 930-942. DOI:10.1007/s00267-014-0436-2
[33]Auestad I, Austad I, Rydgren K. Nature will have its way: local vegetation trumps restoration treatments in semi-natural grassland. Applied Vegetation Science, 2015, 18(2): 190-196. DOI:10.1111/avsc.12138
[34]Hough-Snee N, Roper B B, Wheaton J M, Budy P, Lokteff R L. Riparian vegetation communities change rapidly following passive restoration at a northern Utah stream. Ecological Engineering, 2013, 58: 371-377. DOI:10.1016/j.ecoleng.2013.07.042
[35]Acosta A T R, Jucker T, Prisco I, Santoro R. Passive recovery of Mediterranean coastal dunes following limitations to human trampling//Martínez M L, Gallego-Fernández J B, Hesp P A, eds. Restoration of Coastal Dunes. Berlin: Springer, 2013: 187-198.
[36]Beechie T J, Sear D A, Olden J D, Pess G R, Buffington J M, Moir H, Roni P, Pollock M M. Process-based principles for restoring river ecosystems. BioScience, 2010, 60(3): 209-222. DOI:10.1525/bio.2010.60.3.7
[37] [38] [39]Scotton M. Establishing a semi-natural grassland: effects of harvesting time and sowing density on species composition and structure of a restored Arrhenatherum elatius meadow. Agriculture, Ecosystems & Environment, 2016, 220: 35-44.
[40]Koyama A, Koyanagi T F, Akasaka M, Takada M, Okabe K. Combined burning and mowing for restoration of abandoned semi-natural grasslands. Applied Vegetation Science, 2017, 20(1): 40-49. DOI:10.1111/avsc.12268
[41]Sengl P, Magnes M, Weitenthaler K, Wagner V, Erdös L, Berg C. Restoration of lowland meadows in Austria: a comparison of five techniques. Basic and Applied Ecology, 2017, 24: 19-29. DOI:10.1016/j.baae.2017.08.004
[42] [43] [44]刘延斌, 张典业, 张永超, 石明明, 尚振艳, 贺磊, 宗文杰, 傅华, 牛得草. 不同管理措施下高寒退化草地恢复效果评估. 农业工程学报, 2016, 32(24): 268-275. DOI:10.11975/j.issn.1002-6819.2016.24.036
[45]李以康, 杜岩功, 张正芝, 林丽, 郭小伟, 张法伟, 李茜, 周华坤, 曹广民. 种子补播恢复退化草地研究进展. 草地学报, 2017, 25(6): 1171-1177.
[46] [47] [48] [49]Koziol L, Bever J D. The missing link in grassland restoration: arbuscular mycorrhizal fungi inoculation increases plant diversity and accelerates succession. Journal of Applied Ecology, 2017, 54(5): 1301-1309. DOI:10.1111/1365-2664.12843
[50]Neuenkamp L, Prober S M, Price J N, Zobel M, Standish R J. Benefits of mycorrhizal inoculation to ecological restoration depend on plant functional type, restoration context and time. Fungal Ecology, 2019, 40: 140-149. DOI:10.1016/j.funeco.2018.05.004
[51] [52] [53]冯云飞, 李猛, 李少伟, 邸迎伟, 沈振西, 张宪洲, 余成群, 严俊, 席永士, 武建双. 2010-2017年藏北高寒退化草地禁牧恢复效果评价. 草业科学, 2019, 36(4): 1148-1162.
[54]Martin L M, Moloney K A, Wilsey B J. An assessment of grassland restoration success using species diversity components. Journal of Applied Ecology, 2005, 42(2): 327-336. DOI:10.1111/j.1365-2664.2005.01019.x
[55]武胜男, 张曦, 高晓霞, 许驭丹, 吴晓慧, 单席凯, 刘世梁, 董全民, 董世魁, 温璐. 三江源区"黑土滩"型退化草地人工恢复植物群落的演替动态. 生态学报, 2019, 39(7): 2444-2453.
[56]Trowbridge C C, Stanley A, Kaye T N, Dunwiddie P W, Williams J L. Long-term effects of prairie restoration on plant community structure and native population dynamics. Restoration Ecology, 2017, 25(4): 559-568. DOI:10.1111/rec.12468
[57] [58]Montalvo A M, Williams S L, Rice K J, Buchmann S L, Cory C, Handel S N, Nabhan G P, Primack R, Robichaux R H. Restoration biology: a population biology perspective. Restoration Ecology, 1997, 5(4): 277-290. DOI:10.1046/j.1526-100X.1997.00542.x
[59]Kollmann J, Meyer S T, Bateman R, Conradi T, Gossner M M, de Souza Mendonça Jr M, Fernandes G W, Hermann J M, Koch C, Müller S C, Oki Y, Overbeck G E, Paterno G B, Rosenfield M F, Toma T S P, Weisser W W. Integrating ecosystem functions into restoration ecology—recent advances and future directions. Restoration Ecology, 2016, 24(6): 722-730. DOI:10.1111/rec.12422
[60] [61]任继周. 草地资源的属性、结构与健康评价//中国草地科学进展: 第四届第二次年会暨学术讨论会文集. 厦门: 中国草学会, 1996.
[62]Chen L R, Li Q, Ding Y. The evaluation of household pasture's sustainable development based on PSR frame//Proceedings of 2007 International Conference on Convergence Information Technology. Gwangju: IEEE, 2007.
[63] [64] [65]Erdös L, Bátori Z, Penksza K, Dénes A, Kevey B, Kevey D, Magnes M, Sengl P, Tölgyesi C. Can naturalness indicator values reveal habitat degradation? A test of four methodological approaches. Polish Journal of Ecology, 2017, 65(1): 1-13. DOI:10.3161/15052249PJE2017.65.1.001
[66]Sengl P, Magnes M, Erdös L, Berg C. A test of naturalness indicator values to evaluate success in grassland restoration. Community Ecology, 2017, 18(2): 184-192. DOI:10.1556/168.2017.18.2.8
[67]Harzé M, Monty A, Boisson S, Pitz C, Hermann J M, Kollmann J, Mahy G. Towards a population approach for evaluating grassland restoration—a systematic review. Restoration Ecology, 2018, 26(2): 227-234. DOI:10.1111/rec.12663
[68]Cosentino B J, Schooley R L, Bestelmeyer B T, McCarthy A J, Sierzega K. Rapid genetic restoration of a keystone species exhibiting delayed demographic response. Molecular Ecology, 2015, 24(24): 6120-6133. DOI:10.1111/mec.13469
[69]González E, Rochefort L, Boudreau S, Poulin M. Combining indicator species and key environmental and management factors to predict restoration success of degraded ecosystems. Ecological Indicators, 2014, 46: 156-166. DOI:10.1016/j.ecolind.2014.06.016
[70]Martin L M, Wilsey B J. Assessing grassland restoration success: relative roles of seed additions and native ungulate activities. Journal of Applied Ecology, 2006, 43(6): 1098-1109. DOI:10.1111/j.1365-2664.2006.01211.x
[71]Cox R D, Allen E B. The roles of exotic grasses and forbs when restoring native species to highly invaded southern California annual grassland. Plant Ecology, 2011, 212(10): 1699-1707. DOI:10.1007/s11258-011-9942-y
[72]Vanden Broeck A, Ceulemans T, Kathagen G, Hoffmann M, Honnay O, Mergeay J. Dispersal constraints for the conservation of the grassland herb Thymus pulegioides L. in a highly fragmented agricultural landscape. Conservation Genetics, 2015, 16(4): 765-776. DOI:10.1007/s10592-015-0698-0
[73]Delaney J T, Baack E J. Intraspecific chromosome number variation and prairie restoration—A case study in Northeast Iowa, U.S.A. Restoration Ecology, 2012, 20(5): 576-583. DOI:10.1111/j.1526-100X.2011.00825.x
[74]Aavik T, Holderegger R, Edwards P J, Billeter R. Patterns of contemporary gene flow suggest low functional connectivity of grasslands in a fragmented agricultural landscape. Journal of Applied Ecology, 2013, 50(2): 395-403. DOI:10.1111/1365-2664.12053
[75]Harzé M, Mahy G, Bizoux J P, Piqueray J, Monty A. Specialist plant species harbour higher reproductive performances in recently restored calcareous grasslands than in reference habitats. Plant Ecology and Evolution, 2015, 148(2): 181-190. DOI:10.5091/plecevo.2015.1013
[76]Rotchés-Ribalta R, Winsa M, Roberts S P M, Öckinger E. Associations between plant and pollinator communities under grassland restoration respond mainly to landscape connectivity. Journal of Applied Ecology, 2018, 55(6): 2822-2833. DOI:10.1111/1365-2664.13232
[77]Jamison S L, Robertson M, Engelbrecht I, Hawkes P. An assessment of rehabilitation success in an African grassland using ants as bioindicators. Koedoe, 2016, 58(1): a1383.
[78]Tölgyesi C, Török P, Kun R, Csathó A I, Bátori Z, Erdös L, Vadász C. Recovery of species richness lags behind functional recovery in restored grasslands. Land Degradation & Development, 2019, 30(9): 1083-1094.
[79] [80] [81] [82] [83] [84] [85]Costanza R. Toward an operational definition of ecosystem health//Costanza R, Norton B G, Haskell B D, eds. Ecosystem Health: New Goals for Environmental Management. Washington: Island Press, 1992: 239-256.
[86] [87] [88] [89] [90] [91] [92] [93] [94] [95] [96]Aronson J, Le Floc'h E. Vital landscape attributes: missing tools for restoration ecology. Restoration Ecology, 1996, 4(4): 377-387.
[97]Radeloff V C, Mladenoff D J, Boyce M S. A historical perspective and future outlook on landscape scale restoration in the northwest Wisconsin pine barrens. Restoration Ecology, 2000, 8(2): 119-126.
[98]Lengyel S, Varga K, Kosztyi B, Lontay L, Déri E, Török P, Tóthmérész B. Grassland restoration to conserve landscape-level biodiversity: a synthesis of early results from a large-scale project. Applied Vegetation Science, 2012, 15(2): 264-276.
[99]Volk X K, Gattringer J P, Otte A, Harvolk-Schöning S. Connectivity analysis as a tool for assessing restoration success. Landscape Ecology, 2018, 33(3): 371-387.
[100]Borhidi A. Social behaviour types, the naturalness and relative ecological indicator values of the higher plants in the Hungarian flora. Acta Botanica Hungarica, 1995, 39: 97-181.
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