[1] LUO W,ELSER J J,LYV X T,et al. Plant nutrients do not covary with soil nutrients under changing climatic conditions[J]. Global Biogeochemical Cycles,2015,29(8):1298-1308 [2] DE SCHRIJVER A,VESTERDAL L,HANSEN K,et al. Four decades of post-agricultural forest development have caused major redistributions of soil phosphorus fractions[J]. Oecologia,2012,169(1):221-234 [3] SHEN J,YUAN L,ZHANG J,et al. Phosphorus Dynamics:From Soil to Plant[J]. Plant Physiology,2011,156(3):997-1005 [4] WEI W,ZHANG S,WU L,et al. Biochar and phosphorus fertilization improved soil quality and inorganic phosphorus fractions in saline-alkaline soils[J]. Archiv für Acker-und Pflanzenbau und Bodenkunde,2021,67(9):1177-1190 [5] 谢高地,鲁春霞,冷允法,等.青藏高原生态资产的价值评估[J].自然资源学报,2003,18(2):189-196 [6] ZHOU T,LIU M,SUN J,et al. The patterns and mechanisms of precipitation use efficiency in alpine grasslands on the Tibetan Plateau[J]. Agriculture,Ecosystems&Environment,2020(292):106833 [7] 翟珈莹.氮磷添加对青藏高原高寒草地土壤微生物及化学计量特征的影响[D].北京:中国科学院水利部水土保持研究所(中国科学院教育部水土保持与生态环境研究中心),2020:68 [8] 李文宇,张扬建,沈若楠,等.氮磷共限制青藏高原高寒草甸生态系统碳吸收[J].应用生态学报,2022,33(1):51-58 [9] ZHAO Z,HE J,GEISEN S,et al. Protist communities are more sensitive to nitrogen fertilization than other microorganisms in diverse agricultural soils[J]. Microbiome,2019(7):33 [10] DENG Q,HUI D,DENNIS S,et al. Responses of terrestrial ecosystem phosphorus cycling to nitrogen addition:A meta-analysis[J]. Global Ecology and Biogeography,2017,26(6):713-728 [11] ZHOU J,LI X L,PENG F,et al. Mobilization of soil phosphate after 8 years of warming is linked to plant phosphorus-acquisition strategies in an alpine meadow on the Qinghai-Tibetan Plateau[J]. Global Change Biology,2021,27(24):6578-6591 [12] LI F,LIU L,LIU J,et al. Abiotic and biotic controls on dynamics of labile phosphorus fractions in calcareous soils under agricultural cultivation[J]. Science of The Total Environment,2019(681):163-174 [13] RUSTAD L E,FERNANDEZ I J,FULLER R D,et al. Soil solution response to acidic deposition in a northern hardwood forest[J]. Agriculture,Ecosystems&Environment,1993,47(2):117-134 [14] ROBLES-AGUILAR A A,PANG J,POSTMA J A,et al. The effect of pH on morphological and physiological root traits of Lupinus angustifolius treated with struvite as a recycled phosphorus source[J]. Plant and Soil,2019,434(1-2):65-78 [15] CARREIRA J A,GARCIÍA-RUIZ R,LIETOR J,et al. Changes in soil phosphatase activity and P transformation rates induced by application of N-and S-containing acid-mist to a forest canopy[J]. Soil Biology&biochemistry,2000,32(13):1857-1865 [16] LUPWAYI N Z,CLAYTON G W,O DONOVAN J T,et al. Phosphorus release during decomposition of crop residues under conventional and zero tillage[J]. Soil and Tillage Research,2007,95(1-2):231-239 [17] CHEN X,JIANG N,CONDRON L M,et al. Soil alkaline phosphatase activity and bacterial phoD gene abundance and diversity under long-term nitrogen and manure inputs[J]. Geoderma,2019(349):36-44 [18] SUN R,ZHANG X,GUO X,et al. Bacterial diversity in soils subjected to long-term chemical fertilization can be more stably maintained with the addition of livestock manure than wheat straw[J]. Soil Biology and Biochemistry,2015(88):9-18 [19] ZONG N,SHI P,ZHENG L,et al. Restoration effects of fertilization and grazing exclusion on different degraded alpine grasslands:Evidence from a 10-year experiment[J]. Ecological Engineering,2021(170):106361 [20] 王长庭,王根绪,刘伟,等.施肥梯度对高寒草甸群落结构、功能和土壤质量的影响[J].生态学报,2013,33(10):3103-3113 [21] 代迪,字洪标,杨有芳,等.高寒草甸土壤微生物功能多样性对氮肥添加的响应[J].水土保持研究,2018,25(2):137-144 [22] AHMAD M,AHMAD M,EL-NAGGAR A H,et al. Aging effects of organic and inorganic fertilizers on phosphorus fractionation in a calcareous sandy loam soil[J]. Pedosphere,2018,28(6):873-883 [23] HEDLEY M,STEWART J,CHAUHAN B. Changes in inorganic and organic soil phosphorus fractions induced by cultivation practices and by laboratory incubations[J]. Soil Science Society of America Journal,1982(46):970-976 [24] TIESSEN H,MOIR J. Characterization of available P by sequential extraction[J]. Soil Sampling and Methods of Analysis,1993(7):215-229 [25] JOHNSON A H,FRIZANO J,VANN D R. Biogeochemical implications of labile phosphorus in forest soils determined by the Hedley fractionation procedure[J]. Oecologia,2003,135(4):487-499 [26] NIEDERBERGER J,KOHLER M,BAUHUS J. The relevance of different soil phosphorus fractions for short-term tree nutrition:results from a mesocosm bioassay[J]. Forestry,2016,90(2):258-267 [27] LIU Y,BING H,WU Y,et al. Nitrogen addition promotes soil phosphorus availability in the subalpine forest of eastern Tibetan Plateau[J]. Journal of Soils and Sediments,2022,22(1):1-11 [28] CUI H,SUN W,DELGADO BAQUERIZO M,et al. Cascading effects of N fertilization activate biologically driven mechanisms promoting P availability in a semi-arid grassland ecosystem[J]. Functional Ecology,2021,35(4):1001-1011 [29] FAN Y,ZHONG X,LIN F,et al. Responses of soil phosphorus fractions after nitrogen addition in a subtropical forest ecosystem:Insights from decreased Fe and Al oxides and increased plant roots[J]. Geoderma,2019(337):246-255 [30] 范跃新.氮沉降对中亚热带米槠天然林土壤磷组分的影响及其调控机理[D].福州:福建师范大学,2019:27-33 [31] WANG R,YANG J,LIU H,et al. Nitrogen enrichment buffers phosphorus limitation by mobilizing mineral-bound soil phosphorus in grasslands[J]. Ecology,2022,3(103):3616 [32] 田沐雨,于春甲,汪景宽,等.氮添加对草地生态系统土壤pH、磷含量和磷酸酶活性的影响[J].应用生态学报,2020,31(9):2985-2992 [33] TOUHAMI D,MCDOWELL R W,CONDRON L M,et al. Nitrogen fertilization effects on soil phosphorus dynamics under a grass-pasture system[J]. Nutrient Cycling in Agroecosystems,2022:10191 [34] WANG R,LIU H,SARDANS J,et al. Interacting effects of urea and water addition on soil mineral-bound phosphorus dynamics in semi-arid grasslands with different land-use history[J]. European Journal of Soil Science,2021,72(2):946-962 [35] ZAPPA S,ROLLAND J,FLAMENT D,et al. Characterization of a Highly Thermostable Alkaline Phosphatase from the EuryarchaeonPyrococcus abyssi[J]. Applied and Environmental Microbiology,2001,67(10):4504-4511 [36] ZHU X,LIU M,KOU Y,et al. Differential effects of N addition on the stoichiometry of microbes and extracellular enzymes in the rhizosphere and bulk soils of an alpine shrubland[J]. Plant and Soil,2020,449(1-2):285-301 [37] SPOHN M. Element cycling as driven by stoichiometric homeostasis of soil microorganisms[J]. Basic and Applied Ecology,2016,17(6):471-478 [38] SCHLEUSS P M,WIDDIG M,HEINTZ-BUSCHART A,et al. Interactions of nitrogen and phosphorus cycling promote P acquisition and explain synergistic plant-growth responses[J]. Ecology,2020,101(5):3003 [39] YANG K,ZHU J,GU J,et al. Changes in soil phosphorus fractions after 9 years of continuous nitrogen addition in a Larix gmelinii plantation[J]. Annals of Forest Science,2015,72(4):435-442 [40] CHEN S,YAN Z,ZHANG S,et al. Nitrogen application favors soil organic phosphorus accumulation in calcareous vegetable fields[J]. Biology and Fertility of Soils,2019,55(5):481-496 [41] MAGALLON-SeERVIN P,ANTOUN H,TAKTEK S,et al. The maize mycorrhizosphere as a source for isolation of arbuscular mycorrhizae-compatible phosphate rock-solubilizing bacteria[J]. Plant and Soil,2020,451(1-2):169-186 [42] DONG Y,YANG J,ZHAO X,et al. Seasonal dynamics of soil pH and N transformation as affected by N fertilization in subtropical China:An in situ 15 N labeling study[J]. Science of the Total Environment,2022(816):151596 [43] KAFLE A,COPE K,RATHS R,et al. Harnessing soil microbes to Improve plant phosphate efficiency in cropping systems[J]. Agronomy,2019,9(3):127 [44] HAN J,SHI J,ZENG L,et al. Effects of nitrogen fertilization on the acidity and salinity of greenhouse soils[J]. Environmental Science and Pollution Research,2015,22(4):2976-2986 [45] TURNER B L,BLACKWELL M S A. Isolating the influence of pH on the amounts and forms of soil organic phosphorus[J]. European Journal of Soil Science,2013,64(2):249-259 [46] ZHALNINA K,DIAS R,DE QUADROS P D,et al. Soil pH determines microbial diversity and composition in the park grass experiment[J]. Microbial Ecology,2015,69(2):395-406 [47] NANNIPIERI P,GIAGNONI L,LANDI L,et al. Role of phosphatase enzymes in soil. In:Bunemann EK,Oberson A,Frossard E (Eds) Phosphorus in action,biological processes in soil phosphorus cycling[M]. Berlin:Springer-Verlag,2011:215-241 |