[1] SCHLESINGER W H, ANDREWS J A. Soil respiration and the global carbon cycle [J].Biogeochemistry, 2000,48(1): 7 − 20.
[2] CROWTHER T W, VAN DEN HOOGEN J, WAN J,et al. The global soil community and its influence on biogeochemistry[J].Science, 2019,365(6455): 722. doi: 10.1126/science.aav0550.
[3] HASHIMOTO S. A new estimation of global soil greenhouse gas fluxes using a simple data-oriented model[J].Plos One, 2012,7(8): E41962. doi: 10.1371/journal.pone.0041962.
[4] BOND-LAMBERTY B, THOMSON A. Temperature-associated increases in the global soil respiration record [J].Nature, 2010,464(7288): 579 − 582.
[5] SPONSELLER R A. Precipitation pulses and soil CO2flux in a Sonoran Desert Ecosystem [J].Glob Change Biol, 2007,13(2): 426 − 436.
[6] BAE K, FAHEY T J, YANAI R D,et al. Soil nitrogen availability affects belowground carbon allocation and soil respiration in northern hardwood forests of new hampshire [J].Ecosystems, 2015,18(7): 1179 − 1191.
[7] BUTLE A, MEIR P, SAIZ G,et al. Annual variation in soil respiration and its component parts in two structurally contrasting woody Savannas in central Brazil [J].Plant Soil, 2012,352(1): 129 − 142.
[8] JANSSENS I, DIELEMAN W, LUYSSAERT S,et al. Reduction of forest soil respiration in response to nitrogen deposition [J].Nat Geosci, 2010,3(5): 315 − 322.
[9] MOYANO F E, LUYSSAERT N,et al. The moisture response of soil heterotrophic respiration: interaction with soil properties [J].Biogeosciences, 2012,9(3): 1173 − 1182.
[10] FANG C, MONCRIEFF J B. The dependence of soil CO2efflux on temperature [J].Soil Biol Biochem, 2001,33(2): 155 − 165.
[11] LIU Xiaozhong, WAN Shiqiang, SU Bo,et al. Response of soil CO2efflux to water manipulation in a tallgrass prairie ecosystem [J].Plant Soil, 2002,240(2): 213 − 223.
[12] QI Ye, XU Ming, WU Jianguo. Temperature sensitivity of soil respiration and its effects on ecosystem carbon budget: nonlinearity begets surprises [J].Ecol Modelling, 2002,153(1/2): 131 − 142.
[13] WANG Yuesi, HU Yuqiong, JI Baoming,et al. An investigation on the relationship between emission uptake of greenhouse gases and environmental factors in semiarid grassland [J].Adv Atmos Sci, 2003,20(1): 119 − 127.
[14] GRACE J, JOS J S, MEIR P,et al. Productivity and carbon fluxes of tropical Savannas [J].J Biogeogr, 2006,33(3): 387 − 400.
[15] PEEL M C, FINLAYSON B L, MCMAHON T A. Updated world map of the köppen-geiger climate classification [J].Hydrol Earth Syst Sci Discuss, 2007,4(2): 439 − 473.
[16] BOUSQUET P, CIAIS P, MILLER J,et al. Contribution of anthropogenic and natural sources to atmospheric methane variability [J].Nature, 2006,443(7110): 439 − 443.
[17] LIVESLEY S J, GROVER S, HUTLEY L B,et al. Seasonal variation and fire effects on CH4, N2O and CO2exchange in savanna soils of northern australia [J].Agric For Meteorol, 2011,151(11): 1440 − 1452.
[18] MILLARD P, MIDWOOD A J, HUNT J E,et al. Partitioning soil surface CO2efflux into autotrophic and heterotrophic components using natural gradients in soil Δ13C in an undisturbed Savannah soil [J].Soil Biol Biochem, 2008,40(7): 1575 − 1582.
[19] 何永彬, 卢培泽, 朱彤. 横断山——云南高原干热河谷形成原因研究[J]. 资源科学, 2000,22(5): 69 − 72.

HE Yongbin, LU Peize, ZHU Tong. Causes for formation of dry-hot valleys in Hengduan mountain-Yunnan plateau [J].Resour Sci, 2000,22(5): 69 − 72.
[20] 金振洲. 云南元江干热河谷半萨王纳植被的植物群落学研究[J]. 广西植物, 1999,19(4): 289 − 302.

JIN Zhenzhou. A phytosociological study on the semi-savanna vegetation in the dry-hot valleys of Yuanjiang River, Yunnan [J].Guihaia, 1999,19(4): 289 − 302.
[21] 刘方炎, 李昆. 萨王纳群落研究进展[J]. 世界林业研究, 2008,21(6): 25 − 30.

LIU Fangyan, LI Kun. Research advances in Savanna community [J].World For Res, 2008,21(6): 25 − 30.
[22] 张一平, 段泽新, 窦军霞. 岷江上游干暖河谷与元江干热河谷的气候特征比较研究[J]. 长江流域资源与环境, 2005,14(1): 76 − 82.

ZHANG Yiping, DUAN Zexin, DOU Junxia. Comparison of climate characteristics between a dry-warm valley in upper reaches of Min River and a dry-hot valley of Yuanjiang River [J].Resour Environ Yang Basin, 2005,14(1): 76 − 82.
[23] 沈蕊, 张建利, 何彪, 等. 元江流域干热河谷草地植物群落结构特征与相似性分析[J]. 生态环境学报, 2010,19(12): 2821 − 2825.

SHEN Rui, ZHANG Jianli, HE Biao,et al. The structure characteristic and analysis on similarity of grassland community in dry-hot valley of Yuanjiang River [J].Ecol Environ Sci, 2010,19(12): 2821 − 2825.
[24] 张树斌, 张教林, 曹坤芳. 季节性干旱对白皮乌口树(Tarenna depauperataHutchins)水分状况、叶片光谱特征和荧光参数的影响[J]. 植物科学学报, 2016,34(1): 117 − 126.

ZHANG Shubin, ZHANG Jiaolin, CAO Kunfang. Effects of seasonal drought on water status, leaf spectral traits and pluoescence parameters inTarenna depauperataHutchins, a Chinese savanna evergreen species [J].Plant Sci J, 2016,34(1): 117 − 126.
[25] ZHOU Wenjun, JI Hongli, ZHU Jing,et al. The effects of nitrogen fertilization on N2O emissions from a rubber plantation [J].Sci Rep, 2016,6: 28230.
[26] 竹万宽, 陈少雄, ARNOLD R, 等. 不同种桉树人工林土壤呼吸速率时空动态及其影响要素[J]. 浙江农林大学学报, 2018,35(3): 412 − 421.

ZHU Wankuan, CHEN Shaoxiong, ARNOLD R,et al. Temproal and spatial dynamics of soil respiration and influencing factors in eucalyptus plantations [J].J Zhejiang A&F Univ, 2018,35(3): 412 − 421.
[27] 徐睿, 姜春前, 白彦锋, 等. 杉木纯林和混交林土壤温室气体通量的差异[J]. 浙江农林大学学报, 2019,36(2): 307 − 317.

XU Rui, JIANG Chunqian, BAI Yanfeng,et al. Soli greenhouse gas fluxes in pure and mixed stands of Chinese fir[J].J Zhejiang A&F Univ, 2019,36(2): 307 − 317.
[28] 冯文婷, 邹晓明, 沙丽清, 等. 哀牢山中山湿性常绿阔叶林土壤呼吸季节和昼夜变化特征及影响因子比较[J]. 植物生态学报, 2008,32(1): 31 − 39.

FENG Wenting, ZOU Xiaoming, SHA Liqing,et al. Comparisons between seasonal and diurnal patterns of soil respiration in a montane evergreen broad-leaved forest of Ailaomoutains, China [J].Chin J Plant Ecol, 2008,32(1): 31 − 39.
[29] ZHANG Xiang, ZHANG Yiping, SHA Liqing,et al. Effects of continuous drought stress on soil respiration in a tropical rain forest in southwest China [J].Plant Soil, 2015,394(1/2): 343 − 353.
[30] JIANG H, DENG Q, ZHOU G,et al. Responses of soil respiration and its temperature moisture sensitivity to precipitation in three subtropical forests in southern China [J].Biogeosciences, 2013,10(6): 3963 − 3982.
[31] TALMON Y, STERNBERG M, GRÜNZWEI J M. Impact of rainfall manipulations and biotic controls on soil respiration in Mediterranean and desert ecosystems along an aridity gradient [J].Glob Change Biol, 2011,17(2): 1108 − 1118.
[32] REY A, PEGORARO E, OYONARTE C,et al. Impact of land degradation on soil respiration in a steppe (Stipa tenacissimaL.) semi-arid ecosystem in the SE of Spain [J].Soil Biol Biochem, 2011,43(2): 393 − 403.
[33] SUN Q Q, MEYER W S, KOERBER G R,et al. A wildfire event influences ecosystem carbon fluxes but not soil respiration in a semi-arid woodland [J].Agric For Meteorol, 2016,226/227: 57 − 66.
[34] RICHARDS A E, DATHE J F, COOK G D. Fire interacts with season to influence soil respiration in tropical Savannas [J].Soil Biol Biochem, 2012,53: 90 − 98.
[35] LIU Tao, XU Zhenzhu, HOU Yanhui,et al. Effects of warming and changing precipitation rates on soil respiration over two years in a desert steppe of northern China [J].Plant Soil, 2016,400(1/2): 15 − 27.
[36] HOLT J A, HODGEN M J, LAMB D. Soil respiration in the seasonally dry tropics near townsville, North Queensland [J].Soil Biol Biochem, 1990,28(5): 737 − 745.
[37] GUPTA S R, SINGH J S. Soil respiration in a tropical grassland [J].Soil Biol Biochem, 1981,13(4): 261 − 268.
[38] UPADHYAYA S D, SIDDIQUI S A, SINGH V P. Seasonal variation in soil respiration of certain tropical grassland communities [J].Trop Ecol, 1981,22: 157 − 161.
[39] BRIDGE B J, MOTT J J, HARTIGAN R J. The formation of degraded areas in the dry Savanna woodlands of northern Australia [J].Aust J Soil Res, 1983,21(1): 91 − 104.
[40] SANHUEZA E, SANTANA M. CO2emissions from tropical Savanna soil under first year of cultivation [J].Interciencia, 1994,19: 20 − 23.
[41] PINTO A D S, BUSTAMANTE M M C, KISSELLE K,et al. Soil emissions of N2O, NO, and CO2in Brazilian Savannas: Effects of vegetation type, seasonality, and prescribed fires [J].J Geophys Res, 2002,107(D20): 8089.
[42] CHEN Xiaosong, HUTLEY L B, EAMUS D. Carbon balance of a tropical Savanna of northern Australia [J].Oecologia, 2003,137(3): 405 − 416.
[43] XU Liukang, BALDOCCHI D D, TANG Jianwu. How soil moisture, rain pulses, and growth alter the response of ecosystem respiration to temperature [J].Global Biologychem Cycles, 2004,18(4): GB4002.
[44] HIBBARD K A, LAW B E, REICHSTEIN M,et al. An analysis of soil respiration across northern hemisphere temperate ecosystems [J].Biogeochemistry, 2005,73(1): 29 − 70.
[45] TANG J, BALDOCCHI D D. Spatial-temporal variation in soil respiration in an oak-grass Savanna ecosystem in california and its partitioning into autotrophic and heterotrophic components [J].Biogeochemistry, 2005,73(1): 183 − 207.
[46] MCCULLEY R L, BOUTTON T W, ARCHER S R. Soil respiration in a subtropical Savanna parkland: response to water additions [J].Soil Sci Soc Am J, 2007,71(3): 820 − 828.
[47] YUSTE J C, BALDOCCHI D D, GERSHENSON A,et al. Microbial soil respiration and its dependency on carbon inputs, soil temperature and moisture [J].Glob Chang Biol, 2007,13(9): 2018 − 2035.
[48] BAHN M, RODEGHIERO M, ANDERSON-DUNN M,et al. Soil respiration in European grasslands in relation to climate and assimilate supply [J].Ecosystems, 2008,11(8): 1352 − 1367.
[49] NOUVELLON Y, EPRON D, KINANA A,et al. Soil CO2effluxes soil carbon balance and early tree growth following Savanna a afforestation in congo comparison of two site preparation treatments [J].For Ecol Manage, 2008,255(5): 1926 − 1936.
[50] VARGAS R, ALLEN M F. Environmental controls and the influence of vegetation 1 type, fine roots and rhizomorphs on diel and seasonal variation in soil respiration [J].New Phytol, 2008,179(2): 460 − 471.
[51] BRÜMMER C, PAPEN H, WASSMANN R,et al. Fluxes of CH4and CO2from soil and termite mounds in southSudanian savannaof Burkina Faso (west Africa)[J].Glob Biologychem Cycles, 2009, 23(1): GB1001. doi: 10.1029/2008GB003237.
[52] MAJOR J, LEHMANN J, RONDON M,et al. Fate of soil-applied black carbon: downward migration, leaching and soil respiration [J].Glob Chang Biol, 2010,16(4): 1366 − 1379.
[53] NOUVELLON Y, EPRON D, MARSDEN C,et al. Age-related changes in litter inputs explain annual trends in soil CO2effluxes over a fullEucalyptus rotationafter afforestation of a tropical Savanna [J].Biogeochemistry, 2012,111(1/3): 515 − 533.
[54] FAN Z S, NEFF J C, HANAN N P. Modeling pulsed soil respiration in an African Savanna ecosystem [J].Agric For Meteorol, 2015,200: 282 − 292.
[55] RAICH J W. The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate [J].Tellus, 1992,44(2): 81 − 99.
[56] GAO Jinbo, ZHANG Yiping, SONG Qinghai,et al. Stand age-related effects on soil respiration in rubber plantations (Hevea brasiliensis) in Southwest China [J].Eur J Soil Sci, 2019,70(6): 1 − 13.
[57] 吴玉, 郑新军, 李彦, 等. 荒漠草本植物在不同降雨模式下的光合响应和生物量分配策略[J]. 生态学杂志, 2013,32(10): 2583 − 2590.

WU Yu, ZHENG Xinjun, LI Yan,et al. Photosynthetic responses and biomass allocation strategies of desert herbaceous plants under different precipitation patterns [J].Chin J Ecol, 2013,32(10): 2583 − 2590.
[58] 马志良, 高顺, 杨万勤, 等. 亚热带常绿阔叶林区凋落叶木质素和纤维素在不同雨热季节的降解特征[J]. 生态学杂志, 2015,34(1): 122 − 129.

MA Zhiliang, GAO Shun, YANG Wanqin,et al. Degradation characteristics of lignin and cellulose of foliar litter at different rainy stages in subtropical evergreen broadleaved forest [J].Chin J Ecol, 2015,34(1): 122 − 129.
[59] 刘殿君, 吴波, 李永华, 等. 极端干旱区增雨对泡泡刺(Nitraria sphaerocarpa)群落土壤呼吸的影响[J]. 中国沙漠, 2013,33(3): 788 − 796.

LIU Dianjun, WU Bo, LI Yonghua,et al. Effect of rain supplementation on soil respiration ofNitraria sphaerocarpacommunity in hyperarid area of Dunhuang, China [J].J Desert Res, 2013,33(3): 788 − 796.
[60] 王义东, 王辉民, 马泽清, 等. 土壤呼吸对降雨响应的研究进展[J]. 植物生态学报, 2010,34(5): 601 − 610.

WANG Yidong, WANG Huimin, MA Zeqing,et al. Review of response mechanism of soil respiration to rainfall [J].Chin J Plant Ecol, 2010,34(5): 601 − 610.
[61] DAVIDSON E A, BELK E, BOONE R D. Soil water content and temperature as independent or confounded factors controlling soil respiration in a temperate mixed hardwood forest [J].Global Change Biol, 1998,4(2): 217 − 227.
[62] 周非飞, 林波, 刘庆. 青藏高原东缘亚高山针叶林人工恢复过程中的土壤呼吸特征[J]. 应用生态学报, 2009,20(8): 1783 − 1790.

ZHOU Feifei, LIN Bo, LIU Qin. Characteristics of soil respiration in artificial restoration process of subalpine coniferous for est in eastern Qinghai-Tibet Plateau [J].Chin J Appl Ecol, 2009,20(8): 1783 − 1790.
[63] 常建国, 刘世荣, 史作民, 等. 北亚热带-南暖温带过渡区典型森林生态系统土壤呼吸及其组分分离[J]. 生态学报, 2007,27(5): 1791 − 1802.

CHANG Jianguo, LIU Shirong, SHI Zuomin,et al. Soil respiration and its components partitioning in the typical for estecosystems at the transitional area from the northern subtropics to warm temperate, China [J].Acta Ecol Sin, 2007,27(5): 1791 − 1802.
[64] HASHIMOTO S, TANAKA N, SUZUKI M,et al. Soil respiration and soil CO2concentration in a tropical forest Thailand [J].J For Res, 2004,9(1): 75 − 79.
[65] 刘博奇, 牟长城, 邢亚娟, 等. 小兴安岭典型温带森林土壤呼吸对强降雨的响应[J]. 北京林业大学学报, 2016,38(4): 77 − 85.

LIU Boqi, MOU Changcheng, XING Yajuan,et al. Effect of strong rainfalls on soil respiration in a typical temperate forest in Lesser Xing’an Mountains, northeast China [J].J Beijing For Univ, 2016,38(4): 77 − 85.
[66] NIE Cheng, LI Yue, NIU Lei,et al. Soil respiration and itsQ10response to various grazing systems of a typical steppe in Inner Mongolia, China[J].PeerJ, 2019, 7: e7112. doi: 10.7717/peerJ.7112.
[67] DAVIDSON E A, VERCHOT L V, CATT NIO J H,et al. Effects of soil Water content on soil respiration in forests and cattle pastures of eastern Amazonia [J].Biogeochemistry, 2000,48(1): 53 − 69.
[68] 沙丽清, 郑征, 唐建维, 等. 西双版纳热带季节雨林的土壤呼吸研究[J]. 中国科学: 地球科学, 2004,34(增刊 2): 167 − 174.

SHA Liqing, ZHENG Zheng, TANG Jianwei,et al. Soil respiration of tropical seasonal rain forest in Xishuangbanna [J].Sci China Ser D Earth Sci, 2004,34(suppl 2): 167 − 174.
[69] 李凌浩, 王其兵, 白永飞, 等. 锡林河流域羊草草原群落土壤呼吸及其影响因子的研究[J]. 植物生态学报, 2000,24(6): 680 − 686.

LI Linghao, WANG Qibing, BAI Yongfei,et al. Soil respiration of aLeymus chinensisgrassland stand in the Xilin River basin as affected by over-grazing and climate [J].Acta Phytoecol Sin, 2000,24(6): 680 − 686.
[70] KIM Y, NISHINA K, CHAE N,et al. Constraint of soil moisture on CO2efflux from tundra lichen moss and tussock in council Alaska using a Hierarchical Bayesian Model [J].Biogeosciences, 2014,11(19): 5567 − 5579.
[71] WANG X, PIAO S, CIAIS P,et al. Are ecological gradients in seasonalQ10of soil respiration explained by climate or by vegetation seasonality [J].Soil Biol Biochem, 2010,42(10): 1728 − 1734.
[72] 刘运通, 张一平, 武传胜, 等. 模拟亚热带常绿阔叶林土壤温度与土壤异养呼吸对气候变暖的响应[J]. 生态学杂志, 2016,35(7): 1799 − 1806.

LIU Yuntong, ZHANG Yiping, WU Chuansheng,et al. Simulation of the responses of soil temperature and soil heterotrophic respiration to climate warming in a subtropical evergreen broad-leaved forest [J].Chin J Ecol, 2016,35(7): 1799 − 1806.
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