[1] VALIELA I,FOX S E. Managing coastal wetlands[J]. Science,2008,319(5861):290-291 [2] 张剑,王利平,谢建平,等. 敦煌阳关湿地土壤有机碳分布特征及其影响因素[J]. 生态学杂志,2017,36(9):2455-2464 [3] 郑姚闽,张海英,牛振国,等. 中国国家级湿地自然保护区保护成效初步评估[J]. 科学通报,2012,57(4):207-230 [4] 祝惠,武海涛,邢晓旭,等. 中国湿地保护修复成效及发展策略[J]. 中国科学院院刊,2023,38(3):365-375 [5] ZHANG L G,HU Q,HAYES M, et al. Evaluating Nebraska's local comprehensive plans to achieve the national wetland conservation missions in the USA[J]. Ecosystem Health and Sustainability,2022,8(1):2070550 [6] 缑倩倩,屈建军,王国华,等. 中国干旱半干旱地区湿地研究进展[J]. 干旱区研究,2015,32(2):213-220 [7] SCHNEIDER N,EUGSTER W. Climatic impacts of historical wetland drainage in Switzerland[J]. Climatic Change,2007,80(3):301-321 [8] 刘迺发,黄族豪,文陇英. 西部荒漠地区的湿地和水禽多样性[J]. 湿地科学,2004,2(4):259-266 [9] HECTOR A,BAGCHI R. Biodiversity and ecosystem multifunctionality[J]. Nature,2007,448(7150):188-190 [10] MAESTRE F T,BOWKER M A,PUCHE M D, et al. Shrub encroachment can reverse desertification in semi-arid Mediterranean grasslands[J]. Ecology Letters,2009,12(9):930-941 [11] CARDINALE B J,MATULICH K L,HOOPER D U, et al. The functional role of producer diversity in ecosystems[J]. American Journal of Botany,2011,98(3):572-592 [12] LIU M,HUANG H Q,BAO S X, et al. Microbial community structure of soils in Bamenwan mangrove wetland[J]. Scientific Reports,2019,9(1):8406 [13] TANG Y S,WANG L,JIA J W, et al. Response of soil microbial community in Jiuduansha wetland to different successional stages and its implications for soil microbial respiration and carbon turnover[J]. Soil Biology and Biochemistry,2011,43(3):638-646 [14] EMMETT DUFFY J. Why biodiversity is important to the functioning of real-world ecosystems[J]. Frontiers in Ecology and the Environment,2009,7(8):437-444 [15] WOOD S A,BRADFORD M A,GILBERT J A, et al. Agricultural intensification and the functional capacity of soil microbes on smallholder African farms[J]. Journal of Applied Ecology,2015,52(3):744-752 [16] GARLAND G,BANERJEE S,EDLINGER A, et al. A closer look at the functions behind ecosystem multifunctionality:a review[J]. Journal of Ecology,2021,109(2):600-613 [17] GAMFELDT L,HILLEBRAND H,JONSSON P R. Multiple functions increase the importance of biodiversity for overall ecosystem functioning[J]. Ecology,2008,89(5):1223-1231 [18] 王凯,王聪,冯晓明,等. 生物多样性与生态系统多功能性的关系研究进展[J]. 生态学报,2022,42(1):11-23 [19] 熊定鹏,赵广帅,武建双,等. 羌塘高寒草地物种多样性与生态系统多功能关系格局[J]. 生态学报,2016,36(11):3362-3371 [20] ROBROEK B J M, JASSEY V E J,BELTMAN B, et al. Diverse Fen plant communities enhance carbon-related multifunctionality, but do not mitigate negative effects of drought[J]. Royal Society Open Science,2017,4(10):170449 [21] DELGADO-BAQUERIZO M,MAESTRE F T,ELDRIDGE D J, et al. Biocrust-forming mosses mitigate the negative impacts of increasing aridity on ecosystem multifunctionality in drylands[J]. New Phytologist,2016,209(4):1540-1552 [22] 郝珉辉,代莹,岳庆敏,等. 阔叶红松林功能多样性与森林碳汇功能关系[J]. 北京林业大学学报,2022,44(10):68-76 [23] 郑佳华,赵萌莉,王琪,等. 不同利用方式对大针茅草原生态系统多功能性的影响[J]. 草地学报,2022,30(5):1054-1062 [24] LUCAS-BORJA M E,DELGADO-BAQUERIZO M. Plant diversity and soil stoichiometry regulates the changes in multifunctionality during pine temperate forest secondary succession[J]. Science of the Total Environment,2019,697:134204 [25] 付亚康. 青藏高原草地植物物种多样性与生产力的关系及其对极端干旱的响应[D]. 兰州:兰州大学,2022:10-21 [26] 马文静,张庆,牛建明,等. 物种多样性和功能群多样性与生态系统生产力的关系——以内蒙古短花针茅草原为例[J]. 植物生态学报,2013,37(7):620-630 [27] 刘亚军,蔡润发,李赟璟,等. 湿地土壤微生物碳源代谢活性对不同水分条件的动态响应——以鄱阳湖为例[J]. 土壤,2018,50(4):705-711 [28] JANOUSEK C N,FOLGER C L. Variation in tidal wetland plant diversity and composition within and among coastal estuaries:assessing the relative importance of environmental gradients[J]. Journal of Vegetation Science,2014,25(2):534-545 [29] CHENCHOUNI H. Edaphic factors controlling the distribution of inland halophytes in an ephemeral salt lake "Sabkha ecosystem" at North African semi-arid lands[J]. Science of the Total Environment,2017,575:660-671 [30] 王湘,焦菊英,曹雪,等. 柴达木盆地尕海湖区白刺灌丛沙堆剖面土壤养分的分布和富集特征[J]. 应用生态学报,2022,33(3):765-774 [31] 王水献,董新光,刘磊. 新疆焉耆盆地绿洲水盐双梯度下天然植被多样性分异特征[J]. 冰川冻土,2010,32(5):999-1006 [32] 张雪妮,吕光辉,杨晓东,等. 基于盐分梯度的荒漠植物多样性与群落、种间联接响应[J]. 生态学报,2013,33(18):5714-5722 [33] 张雪妮,杨晓东,吕光辉. 水盐梯度下荒漠植物多样性格局及其与土壤环境的关系[J]. 生态学报,2016,36(11):3206-3215 [34] MAGNAGO L F S,EDWARDS D P,EDWARDS F A, et al. Functional attributes change but functional richness is unchanged after fragmentation of Brazilian Atlantic forests[J]. Journal of Ecology,2014,102(2):475-485 [35] 李善家,王子濠,苏培玺,等. 荒漠植物性状权衡策略及功能多样性研究进展[J]. 生态学报,2022,42(18):7308-7320 [36] 王军强,刘彬,常凤,等. 博斯腾湖湖滨带水盐梯度下植物功能性状及生态化学计量特征分析[J]. 植物生态学报,2022,46(8):961-970 [37] 蔡艳. 水盐梯度下荒漠植物多样性与生态系统多功能性的关系[D]. 乌鲁木齐:新疆大学,2019:61 [38] 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,2017,37(5):1472-1483 [39] 潘妮,闵钰婷,赵娟娟,等. 城市建成区自生草本植物群落的物种多样性与功能多样性——以深圳市为例[J]. 生态学报,2024,44(9):3759-3774 [40] 张磊. 典型荒漠植物多样性对生态系统功能的影响机制[D]. 乌鲁木齐:新疆大学,2019:53-54 [41] 周宸宇. 不同退化程度高寒草甸生物多样性与生态系统多功能性的研究[D]. 西宁:青海师范大学,2023:5-6 [42] 李静鹏,郑志荣,赵念席,等. 刈割、围封、放牧三种利用方式下草原生态系统的多功能性与植物物种多样性之间的关系[J]. 植物生态学报,2016,40(8):735-747 [43] VALENCIA E,MAESTRE F T,LE BAGOUSSE-PINGUET Y,et al. Functional diversity enhances the resistance of ecosystem multifunctionality to aridity in Mediterranean drylands[J]. New Phytologist,2015,206(2):660-671 [44] 寇欣. 岱海湖泊湖滨带湿地生态系统多功能性维持机理研究[D]. 呼和浩特:内蒙古大学,2022:43 [45] WEI W,FENG X R,YANG L,et al. The effects of terracing and vegetation on soil moisture retention in a dry hilly catchment in China[J]. Science of the Total Environment,2019,647:1323-1332 [46] 赵晓英,何学敏,杨晓东,等. 艾比湖流域水盐变化对荒漠植物多样性的影响[J]. 干旱区资源与环境,2017,31(6):76-82 [47] 刘广明,杨劲松,姚荣江. 影响土壤浸提液电导率的盐分化学性质要素及其强度研究[J]. 土壤学报,2005,42(2):247-252 [48] 王艳,王正祥,廉晓娟,等. 天津滨海地区土壤电导率的测定及其与含盐量的关系[J]. 天津农业科学,2011,17(2):18-21 [49] 张建旗,张继娜,杨虎德,等. 兰州地区土壤电导率与盐分含量关系研究[J]. 甘肃林业科技,2009,34(2):21-24,30 [50] 张洁,吕光辉,王恒方,等. 艾比湖流域不同水盐环境植物多样性对生态系统多功能性的影响[J]. 植物资源与环境学报,2021,30(4):22-30 [51] RATCLIFFE S,WIRTH C,JUCKER T, et al. Biodiversity and ecosystem functioning relations in European forests depend on environmental context[J]. Ecology Letters,2017,20(11):1414-1426 [52] BRICCA A,BONARI G,PADULLÉS CUBINO J, et al. Effect of forest structure and management on the functional diversity and composition of understorey plant communities[J]. Applied Vegetation Science,2023,26(1):e12710 [53] GUO C,YAN E R,CORNELISSEN J H C. Size matters for linking traits to ecosystem multifunctionality[J]. Trends in Ecology & Evolution,2022,37(9):803-813 [54] HUANG X B,SU J R,LI S F, et al. Functional diversity drives ecosystem multifunctionality in a Pinus yunnanensis natural secondary forest[J]. Scientific Reports,2019,9(1):6979 [55] HAGAN J G,VANSCHOENWINKEL B,GAMFELDT L. We should not necessarily expect positive relationships between biodiversity and ecosystem functioning in observational field data[J]. Ecology Letters,2021,24(12):2537-2548 [56] FOX J W. Interpreting the 'selection effect' of biodiversity on ecosystem function[J]. Ecology Letters,2005,8(8):846-856 [57] 井新,贺金生. 生物多样性与生态系统多功能性和多服务性的关系:回顾与展望[J]. 植物生态学报,2021,45(10):1094-1111 [58] MAESTRE F T,QUERO J L,GOTELLI N J, et al. Plant species richness and ecosystem multifunctionality in global drylands[J]. Science,2012,335(6065):214-218 [59] HU A,WANG J J,SUN H,et al. Mountain biodiversity and ecosystem functions:interplay between geology and contemporary environments[J]. The ISME Journal,2020,14(4):931-944 |