[1] 杨国靖,肖笃宁. 森林景观格局分析及破碎化评价——以祁连山西水自然保护区为例[J]. 生态学杂志,2003,22(5):56-61 [2] Porensky L M,Mueller K E,Augustine D J,et al. Thresholds and gradients in a semi-arid grassland:long-term grazing treatments induce slow,continuous and reversible vegetation change[J]. Journal of Applied Ecology,2016,53(4):1013-1022 [3] Irisarri J G. Grazing intensity differentially regulates ANPP response to precipitation in North American semiarid grasslands[J].Ecological Applications A Publication of the Ecological Society of America,2016,26(5):1370-1380 [4] Grigulis K,Lavorel S,Krainer U,et al. Relative contributions of plant traits and soil microbial properties to mountain grassland ecosystem services[J]. Journal of Ecology,2013,101(1):47-57 [5] Pathak K,Nath A J,Sileshi G W,et al. Annual Burning Enhances Biomass Production and Nutrient Cycling in Degraded Imperata Grasslands[J]. Land Degradation and Development,2017,28(5):1763-1771 [6] 陈宁,张扬建,朱军涛,等. 高寒草甸退化过程中群落生产力和物种多样性的非线性响应机制研究[J]. 植物生态学报,2018,42(01):50-65 [7] 吴建波,王小丹. 围封年限对藏北退化高寒草原植物群落特征和生物量的影响[J]. 草地学报,2017,25(02):261-266 [8] 张蕊,马红彬,贾希洋,等. 不同生态恢复措施下宁夏黄土丘陵区典型草原土壤种子库特征[J]. 草业学报,2018,27(01):32-41 [9] 吴林坤,林向民,林文雄. 根系分泌物介导下植物-土壤-微生物互作关系研究进展与展望[J]. 植物生态学报,2014,38(3):298-310 [10] 张福锁,申建波,冯固,等. 根际生态学——过程与调控[M]. 北京:中国农业大学出版社,2009:178-185 [11] Bing H,Wu Y,Zhou J,et al. Stoichiometric variation of carbon,nitrogen,and phosphorus in soils and its implication for nutrient limitation in alpine ecosystem of Eastern Tibetan Plateau[J]. Journal of Soils and Sediments,2016,16(2):405-416 [12] 张义凡,陈林,李学斌,等. 不同荒漠草原植被根际与非根际土壤养分及碳库管理指数特征[J]. 草业学报,2017,26(8):24-34 [13] 苏大学,张自和,陈佐忠. GB 19733-2003天然草地退化、沙化、盐渍化的分级指标[S]. 北京:中国标准出版社,2003:3-6 [14] Chaudhary D R,Gautam R K,Yousuf B,et al. Nutrients,microbial community structure and functional gene abundance of rhizosphere and bulk soils of halophytes[J]. Applied Soil Ecology,2015,91:16-26 [15] 全国农业技术推广服务中心. 土壤分析技术规范[M]. 中国农业出版社,2006 [16] 张德罡,马玉秀. 草原土壤速效磷测定方法的比较[J]. 草业科学,1995(3):70-72 [17] 鲍士旦. 土壤农化分析.3版[M]. 中国农业出版社,2000 [18] 王笛,逄焕成,李达,等. 苜蓿栽培草地微生物C、N及呼吸特性对不同播种量的响应[J]. 草业学报,2018,27(03):135-143 [19] Adam G,Duncan H. Development of a sensitive and rapid method for the measurement of total microbial activity using fluorescein diacetate (FDA) in a range of soils[J]. Soil Biology & Biochemistry,2001,33(7):943-951 [20] 詹媛媛,薛梓瑜,任伟,周志宇. 干旱荒漠区不同灌木根际与非根际土壤氮素的含量特征[J]. 生态学报,2009,29(01):59-66 [21] Sardans J,Rivasubach A,Pe? 倞uelas J. The C:N:P stoichiometry of organisms and ecosystems in a changing world:A review and perspectives[J]. Perspectives in Plant Ecology Evolution & Systematics,2012,14(1):33-47 [22] Mcgroddy M E,Daufresne T,Hedin L O. Scaling of C:N:P stoichiometry in forest worldwide:implications of terrestrial Redfield-type ratios[J]. Ecology,2004,85(9):2390-2401 [23] 杨元武,李希来,周旭辉,等. 高寒草甸植物群落退化与土壤环境特征的关系研究[J]. 草地学报,2016,24(06):1211-1217 [24] Zhang C,Liu G,Xue S,et al. Rhizosphere soil microbial activity under different vegetation types on the Loess Plateau,China[J]. Geoderma,2011,161(3-4):0-125 [25] Shen J,Li H,Neumann G,et al. Nutrient uptake,cluster root formation and exudation of protons and citrate in Lupinusalbus as affected by localized supply of phosphorus in a split-root system[J]. Plant Science,2005,168(3):837-845 [26] Sarkar A N,Wynjones R G. Effect of rhizosphere pH on the availability and uptake of Fe,Mn and Zn[J]. Plant & Soil,1982,66(3):361-372 [27] Haichar F E Z,Santaella C,Heulin T,et al. Root exudates mediated interactions belowground[J]. Soil Biology & Biochemistry,2014,77(7):69-80 [28] Garcia C,Hernandez T,Roldan A,et al. Effect of plan cover decline on chemical and microbiological parameters under Mediterranean climate[J]. Soil Biology & Biochemistry,2002,34(5):635-642 [29] Zhang C,Liu G,Xue S,et al. Rhizosphere soil microbial properties on abandoned croplands in the Loess Plateau,China during vegetation succession[J]. European Journal of Soil Biology,2012,50(none):0-136 [30] M. A. Sánchez-Monedero,Mondini C,Cayuela M L,et al. Fluorescein diacetate hydrolysis,respiration and microbial biomass in freshly amended soils[J]. Biology and Fertility of Soils,2008,44(6):885-890 [31] Guo D,Li X,Li X,et al. Conventional tillage increases soil microbial biomass and activity in the Loess Plateau,China[J]. Acta Agriculturae Scandinavica,Section B-Soil & Plant Science,2013,63(6):489-496 [32] Sanaullah M,Blagodatskaya E,Chabbi A,et al. Drought effects on microbial biomass and enzyme activities in the rhizosphere of grasses depend on plant community composition[J]. Applied Soil Ecology,2011,48(1):38-44 [33] Elser J J,Bracken M E S,Cleland E E,et al. Global analysis of nitrogen and phosphorus limitation of primary producers in freshwater,marine and terrestrial ecosystems[J]. Ecology Letters,2007,10(12):1135-1142 [34] Neumann G,Römheld V. Root excretion of carboxylic acids and protons in phosphorus-deficient plants[J]. Plant & Soil,1999,211(1):121-130 [35] Shaw L J,Morris P,Hooker J E. Perception and modification of plant flavonoid signals by rhizosphere microorganisms[J]. Environmental microbiology,2006,8(11):1867-1880 [36] Zhan S,Wang Y,Zhu Z,et al. Nitrogen enrichment alters plant N:P stoichiometry and intensifies phosphorus limitation in a steppe ecosystem[J]. Environmental & Experimental Botany,2017,134:21-32 |