1. 银川能源学院,宁夏,银川,750199
2. 宁波大学 地理与空间信息技术系,浙江,宁波,315211
3. 新疆大学 资源与环境科学学院,新疆,乌鲁木齐,830046
纸质出版:2020
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杨军, 杨晓东, 吕光辉, 等. 荒漠森林开垦成农田前后土壤呼吸速率的变化及其影响因素[J]. 水土保持通报, 2020,40(2):24-30.
Yang Jun, Yang Xiaodong, Lü Guanghui, et al. Differences in Soil Respiration Rate and Its Influencing Factors Between Natural Desert Forest and Farmlands[J]. Bulletin of Soiland Water Conservation, 2020, 40(2): 24-30.
杨军, 杨晓东, 吕光辉, 等. 荒漠森林开垦成农田前后土壤呼吸速率的变化及其影响因素[J]. 水土保持通报, 2020,40(2):24-30. DOI: 10.13961/j.cnki.stbctb.2020.02.004.
Yang Jun, Yang Xiaodong, Lü Guanghui, et al. Differences in Soil Respiration Rate and Its Influencing Factors Between Natural Desert Forest and Farmlands[J]. Bulletin of Soiland Water Conservation, 2020, 40(2): 24-30. DOI: 10.13961/j.cnki.stbctb.2020.02.004.
[目的] 分析干旱区荒漠森林开垦前后土壤呼吸的变化及其影响因素,为该区社会发展和生态安全维护提供理论参考。[方法] 测定新疆艾比湖地区连续种植30 a,16 a和3 a的农田以及未开垦荒漠森林的土壤呼吸速率和影响其变化的因子,利用单因素方差和多元逐步回归方法进行数据分析。[结果] ①土壤呼吸速率随农田耕作年限显著增加(p<0.05);②所有农田的土壤呼吸速率显著高于荒漠森林(p<0.05);③土壤有机质、含水量、微生物菌落总数、细根生物量、总盐和pH值在不同耕作年限农田、荒漠森林间差异显著(p<0.05)。土壤温度、空气相对湿度和气温的变化与以上因子不同;④水盐是多元逐步回归方程中仅剩的因子,标准系数分别为0.67和-0.42。[结论] 在干旱区荒漠,将荒漠开垦为农田后,农业活动增加了土壤含水量而减小了含盐量,导致土壤碳释放量随农田种植年限不断增加。
[Objective] The differences in soil respiration and its influencing factors between natural desert forest and farmlands were studied
in order to provide theoretical reference for the social development and ecological security maintenance in arid desert region.[Methods] Soil respiration rate and its influencing factors were investigated at three farmlands with different cultivation years (i. e.
30
16
3 years)
and a natural desert forest in Ebinur Lake basin in the Xinjiang Uygur Autonomous Region. One-way ANOVA and multiple stepwise regressions were used for data analysis.[Results] ① Soil respiration rate increased significantly along the cultivation years (p<0.05). ② Soil respiration rate in three farmlands were signifiantly higher than that in natural desert forest (p<0.05). ③ Soil organic matter
soil moisture
total colony number
fine root biomass
soil salinity and pH value were significantly different between farmlands and natural desert forest (p<0.05)
whereas there was no significant difference between soil temperature
air relative humidity and air temperature(p>0.05). ④ Soil moisture and salinity to soil respiration rate were the only remaining factores in the multiple stepwise regressions
and the standard coefficients were 0.67 and -0.42
respectively.[Conclusion] Agricultural activities increased soil moisture while decreased salinity in the reclaiming of natural desert forest into farmlands
and as a consequence
increased soil respiration rate along cultivation years.
张丽华,陈亚宁,李卫红,等.干旱荒漠区不同土地利用/覆盖类型土壤呼吸速率的季节变化[J]. 中国科学:地球科学,2006,36(S2):68-76.
Mccartney J S, Zornberg J G. Effects of climatic change on the edaphic features of arid and semiarid lands of western North America[J]. Arid Soil Research & Rehabilitation, 2009, 8(4):307-351.
Schlesinger W H. An evaluation of abiotic carbon sinks in deserts[J]. Global Change Biology, 2017, 23(1):25-27.
Amuti T, Luo G. Analysis of land cover change and its driving forces in a desert oasis landscape of Southern Xinjiang, China[J]. Solid Earth, 2014, 6(2):1071-1085.
唐洪松,马惠兰,苏洋,等. 新疆不同土地利用类型的碳排放与碳吸收[J]. 干旱区研究, 2016, 33(3):486-492.
Jia Baoquan, Zhang Zhiqiang, Ci Longjun, et al. Oasis land-use dynamics and its influence on the oasis environment in Xinjiang, China[J]. Journal of Arid Environment, 2004, 56(1):11-26.
Bui E N. Soil salinity:A neglected factor in plant ecology and biogeography[J]. Journal of Arid Environments, 2013, 92(12):14-25.
Yang Xiaodong, Qie Yadong, Teng Dexiong, et al. Prediction of groundwater depth in an arid region based on maximum tree height[J]. Journal of Hydrology, 2019, 574(4):46-52.
Gong Lu, Ran Qiyang, He Guixiang, et al. A soil quality assessment under different land use types in Keriya River basin, Southern Xinjiang, China[J]. Soil & Tillage Research, 2015, 146(1):223-229.
Wiesmeier M, Von Lutzow M, Sporlein P, et al. Land use effects on organic carbon storage in soils of Bavaria:The importance of soil types[J]. Soil & Tillage Research, 2015, 146(3):296-302.
Yang Xiaodong, Ali A, Xu Yilu, et al. Soil moisture and salinity as main drivers of soil respiration across natural xeromorphic vegetation and agricultural lands in an arid desert region[J]. Catena, 2019, 177(15):126-133.
何静. 艾比湖流域棉田与荒漠植被土壤呼吸特征研究[D]. 新疆乌鲁木齐:新疆大学,2010.
Liu Shenglin, Maimaitiaili B, Joergensen R G, et al. Response of soil microorganisms after converting a saline desert to arable land in central Asia[J]. Applied Soil Ecology, 2016,98(24):1-7.
邓彩云,王玉刚,牛子儒,等. 开垦年限对干旱区土壤理化性质及剖面无机碳的影响[J]. 水土保持学报,2017,31(1):254-259.
桂东伟,雷加强,曾凡江,等. 绿洲化进程中不同利用强度农田对土壤质量的影响[J]. 生态学报,2010,30(7):1780-1788.
刘瑜,褚贵新,梁永超,等. 不同种植方式对北疆绿洲土壤养分和生物学性状的影响[J]. 中国生态农业学报,2010,18(3):17-23.
杨晓东,吕光辉,田幼华,等. 新疆艾比湖湿地自然保护区植物的生态分组[J]. 生态学杂志,2009,28(12):2489-2494.
中国科学院南京土壤研究所. 土壤理化分析[M]. 北京:科学出版社, 1978.
Vieira F C S, Nahas E. Comparison of microbial numbers in soils by using various culture media and temperatures[J]. Microbiological Research, 2005,160(2):197-202.
沈萍,范秀容,李广武. 微生物学实验[M].北京:高等教育出版社,2003.
Gao Qiang, Hasselquist N J, Palmroth S, et al. Short-term response of soil respiration to nitrogen fertilization in a subtropical evergreen forest[J]. Soil Biology & Biochemistry, 2014, 76(20):297-300.
Smith P, House J I, Bustamante M, et al. Global change pressures on soils from land use and management[J]. Global Change Biology, 2016, 22(3):1008-1028.
Zhang Yanjun, Guo Shengli, Li Qingfang, et al. Responses of soil respiration to land use conversions in degraded ecosystem of the semi-arid Loess Plateau[J]. Ecological Engineering, 2015, 74(3):196-205.
张雪梅,吕光辉,杨晓东,等. 农田耕种对土壤酶活性及土壤理化性质的影响[J]. 干旱区资源与环境,2011,25(12):177-182.
刘瑜,褚贵新,梁永超,等. 不同种植方式对北疆绿洲土壤养分和生物学性状的影响[J]. 中国生态农业学报,2010,18(3):465-471.
玉苏甫·买买提,满苏尔·沙比提,阿曼古丽·艾孜子. 棉花连作对渭干河-库车河三角洲绿洲土壤理化性质的影响[J]. 干旱地区农业研究,2014,32(4):117-121.
刘谦,陈亚宁,李卫红.干旱荒漠区新垦荒地的土壤理化状况研究[J]. 新疆农业科学, 2007,44(3):318-321.
Iqbal J, Ronggui H, Lijun D, et al. Differences in soil CO
2
flux between different land use types in mid-subtropical China[J]. Soil Biology & Biochemistry, 2008, 40(9):2324-2333.
张晓东,李忠,张峰.新疆艾比湖地区不同土地利用类型土壤养分及活性有机碳组分研究[J]. 水土保持研究,2017,24(5):55-63.
Karhu K, Auffret M D, Dungait J A J, et al. Temperature sensitivity of soil respiration rates enhanced by microbial community response[J]. Nature, 2014, 513(7516):81-84.
富利,张勇勇,赵文智. 荒漠-绿洲区不同土地利用类型土壤呼吸对温湿度的响应[J]. 生态学杂志, 2018, 37(9):144-151.
Johnston A S A, Sibly R M. The influence of soil communities on the temperature sensitivity of soil respiration[J]. Nature Ecology and Evolution, 2018, 2(10):1597-1602.
Esch E H, Lipson D A, Cleland E E. Direct and indirect effects of shifting rainfall on soil microbial respiration and enzyme activity in a semi-arid system[J]. Plant and Soil, 2017, 411(6):333-346.
Davidson E A, Verchot L V, Cattânio 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.
Linn D M, Doran J W. Effect of water-filled pore space on carbon dioxide and nitrous oxide production in tilled and nontilled soils[J]. Journal Soil Science Society of America (USA), 1984, 48(13):1267-1272.
Javed I, Hu R, Du L, et al. Differences in soil CO
2
flux between different land use types in mid-subtropical China[J]. Soil Biology and Biochemistry, 2008, 40(9):2324-2333.
Olsen M W, Frye R J, Glenn E P. Effect of salinity and plant species on CO
2
flux and leaching of dissolved organic carbon during decomposition of plant residue[J]. Plant Soil, 1996, 179(2):183-188.
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