[1]位杰,蒋媛,王丙太,等. 果园生草栽培与利用技术[J]. 北方园艺,2018(6):197-201.
[2]王耀锋,邵玲玲,刘玉学,等. 桃园生草对土壤有机碳及活性碳库组分的影响[J]. 生态学报,2014,34(20):6002-6010.
[3]程滨,赵瑞芬,滑小赞,等. 行间生草对核桃园土壤养分、有机碳组分及酶活性影响[J]. 中国土壤与肥料,2021(6):57-64.
[4]张小凤,郭雁君,蒋惠,等. 橘园生草栽培的研究进展[J]. 湖北农业科学,2018,57(3):5-9,15.
[5]杨储丰,虞秀明,郑洁. 滨海盐土柑桔园行间生草草种影响土壤养分的试验[J]. 中国南方果树,2022,51(1):40-46.
[6]Shui J G,Wang Q Z,Liao G Q,et al. Ecological and economic benefits of vegetation management measures in Citrus orchards on red soils[J]. Pedosphere,2008,18(2):214-221.
[7]徐凌飞,韩清芳,吴中营,等. 清耕和生草梨园土壤酶活性的空间变化[J]. 中国农业科学,2010,43(23):4977-4982.
[8]孙计平,张玉星,李英丽,等. 生草对梨园土壤微生物、酶活性和腐殖质含量的影响[J]. 果树学报,2016,33(增刊1):129-135.
[9]Zhang J S,Tong T Y,Potcho P M,et al. Nitrogen effects on yield,quality and physiological characteristics of giant rice[J]. Agronomy,2020,10(11):1816.
[10]泽尔拉都,邸雪嫣,张乃明,等. 云南典型果蔬种植区土壤养分分布特征及影响因子分析[J].江苏农业科学,2023,51(21):232-239.
[11]窦晓慧,李红丽,盖文杰,等. 牧草种植对黄河三角洲盐碱土壤改良效果的动态监测及综合评价[J]. 水土保持学报,2022,36(6):394-401.
[12]赵瑾,鲁瑞洁,马罗. 青藏高原不同土地利用方式下的土壤质量评价[J]. 地球环境学报,2023,14(3):339-351.
[13]Shang Q Y,Ling N,Feng X M,et al. Soil fertility and its significance to crop productivity and sustainability in typical agroecosystem:a summary of long-term fertilizer experiments in China[J]. Plant and Soil,2014,381(1):13-23.
[14]Askari M S,Holden N M. Quantitative soil quality indexing of temperate arable management systems[J]. Soil and Tillage Research,2015,150:57-67.
[15]Boafo D K,Kraisornpornson B,Panphon S,et al. Effect of organic soil amendments on soil quality in oil palm production[J]. Applied Soil Ecology,2020,147:103358.
[16]Elser J J,Sterner R W,Gorokhova E,et al. Biological stoichiometry from genes to ecosystems[J]. Ecology Letters,2000,3(6):540-550.
[17]Sardans J,Janssens I A,Ciais P,et al. Recent advances and future research in ecological stoichiometry[J]. Perspectives in Plant Ecology,Evolution and Systematics,2021,50:125611.
[18]贺金生,韩兴国. 生态化学计量学:探索从个体到生态系统的统一化理论[J]. 植物生态学报,2010,34(1):2-6..
[19]Yang Y,Liu B R,An S S. Ecological stoichiometry in leaves,roots,litters and soil among different plant communities in a desertified region of Northern China[J]. CATENA,2018,166:328-338.
[20]Normand A E,Smith A N,Clark M W,et al. Chemical composition of soil organic matter in a subarctic peatland:influence of shifting vegetation communities[J]. Soil Science Society of America Journal,2017,81(1):41-49.
[21]Jiang W T,Gong L,Yang L H,et al. Dynamics in C,N,and P stoichiometry and microbial biomass following soil depth and vegetation types in low mountain and hill region of China[J]. Scientific Reports,2021,11:19631.
[22]李邵宇,孙建,王毅,等. 青藏高原不同退化梯度草地土壤酶活性特征[J]. 草业科学,2020,37(12):2389-2402.
[23]Fanin N,Moorhead D,Bertrand I. Eco-enzymatic stoichiometry and enzymatic vectors reveal differential C,N,P dynamics in decaying litter along a land-use gradient[J]. Biogeochemistry,2016,129(1):21-36.
[24]姜翠翠,方智振,周丹蓉,等. 套种白三叶对李园土壤理化性质与酶活性及果实品质的影响[J]. 东南园艺,2020,8(4):14-18.
[25]钱进芳,吴家森,黄坚钦. 生草栽培对山核桃林地土壤养分及微生物多样性的影响[J]. 生态学报,2014,34(15):4324-4332.
[26]杜涛. 贵州专注水果品质打造核心竞争力[N]. 中国食品报,2021-12-15(07).
[27]白龙,陈雪,王洲,等. 苜蓿和老芒麦生草对苹果园土壤氮素矿化的影响[J]. 园艺学报,2015,42(12):2469-2477.
[28]鲍士旦. 土壤农化分析[M]. 3版.北京:中国农业出版社,2000:30-34.
[29]何燕. 绿肥还田对贵州黄壤养分、细菌群落结构及玉米氮磷利用率的影响[D]. 贵阳:贵州民族大学,2022:9.
[30]Vance E D,Brookes P C,Jenkinson D S. An extraction method for measuring soil microbial biomass C[J]. Soil Biology and Biochemistry,1987,19(6):703-707.
[31]Chen S,Lin B W,Li Y Q,et al. Spatial and temporal changes of soil properties and soil fertility evaluation in a large grain-production area of subtropical plain,China[J]. Geoderma,2020,357:113937.
[32]鲁如坤. 土壤农业化学分析方法[M]. 北京:中国农业科技出版社,2000:43-47.
[33]关松荫. 土壤酶及其研究法[M]. 北京:农业出版社,1986:294-297.
[34]孙媛媛. 红壤区土地利用方式对土壤质量及微生物群落特征的影响研究[D]. 长春:吉林大学,2023:18-20.
[35]Zhang S T,Lu J W,Zhu Y,et al. Rapeseed as a previous crop reduces rice N fertilizer input by improving soil fertility[J]. Field Crops Research,2022,281:108487.
[36]Bastida F,Luis Moreno J,Hernández T,et al. Microbiological degradation index of soils in a semiarid climate[J]. Soil Biology and Biochemistry,2006,38(12):3463-3473.
[37]Paul G C,Saha S,Ghosh K G. Assessing the soil quality of Bansloi River Basin,eastern India using soil-quality indices (SQIs) and random forest machine learning technique[J]. Ecological Indicators,2020,118:106804.
[38]李尚玮,杨文权,赵冉,等. 果树行间生草对苹果园土壤肥力的影响[J]. 草地学报,2016,24(4):895-900.
[39]王宇桃,韩艳英,陶江,等. 果园生草栽培技术研究进展[J]. 河北农业科学,2024,28(2):42-47.
[40]庄伊美,许文宝,王仁玑,等. 红壤柑橘园硼铜镁营养失调的诊断[J]. 中国柑桔,1991,20(3):6-8.
[41]封帆,谢开云,艾比布拉·伊马木,等. 果园生草对苹果园杂草控制、土壤养分及果树营养状况的影响 [J]. 新疆农业科学,2023,60(4):982-991.
[42]侯贺贺,王春堂,王晓迪,等. 黄河三角洲盐碱地生物措施改良效果研究[J]. 中国农村水利水电,2014(7):1-6.
[43]Keesstra S,Pereira P,Novara A,et al. Effects of soil management techniques on soil water erosion in apricot orchards[J]. Science of the Total Environment,2016,551/552:357-366.
[44]Duan J,Liu Y J,Yang J,et al. Role of groundcover management in controlling soil erosion under extreme rainfall in citrus orchards of southern China[J]. Journal of Hydrology,2020,582:124290.
[45]樊文霞,孟炎奇,陈国栋,等. 生草覆盖栽培对果园土壤理化性质的影响研究进展[J]. 安徽农学通报,2022,28(6):116-120.
[46]Morlat R,Jacquet A. Grapevine root system and soil characteristics in a vineyard maintained long-term with or without interrow sward[J]. American Journal of Enology and Viticulture,2003,54(1):1-7.
[47]牛清清,张琳,陈云峰,等. 生态栽培对果园水土及养分流失影响的Meta分析[J]. 生态学杂志,2021,40(10):3175-3183.
[48]毕玉婷,田伟,薛艳红,等. 禾本科植物中不定根的发生发育研究进展[J]. 湖北农业科学,2013,52(16):3757-3761.
[49]季琳琳,陈素传,吴志辉,等. 生草对山核桃林地土壤养分及土壤酶活性的影响[J]. 经济林研究,2022,40(1):19-25,44.
[50]刘崇义. 果园土壤养分和微生物群落对不同生草覆盖处理的响应[D]. 杨凌:西北农林科技大学,2022:47-48.
[51]高露,岳坤,唐文林,等. 枣园生草对土壤养分及果实品质的影响[J]. 新疆农业科学,2020,57(1):86-96.
[52]张进. 绿肥种植及还田对滨海盐碱土壤特性及温室气体排放的影响[D]. 泰安:山东农业大学,2023:76-78.
[53]Wu J S,Lin H P,Meng C F,et al. Effects of intercropping grasses on soil organic carbon and microbial community functional diversity under Chinese hickory (Carya cathayensis Sarg.) stands[J]. Soil Research,2014,52(6):575.
[54]Qian X,Gu J,Pan H J,et al. Effects of living mulches on the soil nutrient contents,enzyme activities,and bacterial community diversities of apple orchard soils[J]. European Journal of Soil Biology,2015,70:23-30.
[55]Wang Y J,Huang Q Q,Liu C,et al. Mulching practices alter soil microbial functional diversity and benefit to soil quality in orchards on the Loess Plateau[J]. Journal of Environmental Management,2020,271:110985.
[56]曹铨,沈禹颖,王自奎,等. 生草对果园土壤理化性状的影响研究进展[J]. 草业学报,2016,25(8):180-188.
[57]冀中锐,李建,史根生,等. 果园生草栽培技术研究进展[J]. 草原与草业,2018,30(2):12-14.
[58]李会科. 渭北旱地苹果园生草的生态环境效应及综合技术体系构建[D]. 杨凌:西北农林科技大学,2008:60-62.
[59]Hu Y X,Zhan P J,Thomas B W,et al. Organic carbon and nitrogen accumulation in orchard soil with organic fertilization and cover crop management:a global meta-analysis[J]. Science of the Total Environment,2022,852:158402.
[60]汪宗飞,郑粉莉. 黄土高原子午岭地区人工油松林碳氮磷生态化学计量特征[J]. 生态学报,2018,38(19):6870-6880.
[61]惠竹梅,岳泰新,张振文. 行间生草葡萄园土壤微生物量与土壤养分的通径分析[J]. 草地学报,2011,19(6):969-974.
[62]张永亮,于铁峰,郝凤. 施肥和混播对人工草地土壤速效养分含量的影响[J]. 中国草地学报,2021,43(9):88-96.
[63]张丽琼. 长期轮作与施肥对土壤肥力的影响及其综合评价[D]. 杨凌:西北农林科技大学,2016:116-122.
[64]周彤. 紫花苜蓿与3种禾本科牧草轮作效应研究[D]. 兰州:甘肃农业大学,2020:40-45.
[65]刘彩霞. 种植不同作物对连作玉米田土壤肥力质量的影响[D]. 太谷:山西农业大学,2019:30-32.
[66]管冠,何天养,朱婧,等. 生草栽培对赣南地区晚棱脐橙土壤酶活性及微生物种群的影响[J]. 江苏农业科学,2017,45(17):141-143.
[67]张国红,任华中,高丽红,等. 京郊日光温室土壤微生物状况和酶活性[J]. 中国农业科学,2005,38(7):1447-1452.
[68]王宝广,邵泽龙,姬学俊,等. 行间生草对山楂园土壤养分、酶活性及微生物的影响[J]. 果树资源学报,2021,2(4):21-24.
[69]王晋龙,孙崇凤,程永钢,等. 不同绿肥对复垦地土壤化学性状及酶活性的影响[J]. 中国土壤与肥料,2022(9):85-93.
[70]赵秋,张新建,宁晓光,等. 天津地区不同冬绿肥培肥土壤的效果[J]. 植物营养与肥料学报,2022,28(7):1228-1237.
[71]赵颖,周枫,罗佳琳,等. 水稻秸秆还田配施肥料对小麦产量和氮素利用的影响[J]. 土壤,2021,53(5):937-944.
[72]丁午阳,李援农,郭俊文,等. 不同种植模式对冬小麦土壤养分及水肥利用效率的影响[J]. 节水灌溉,2021(12):8-13.
[73]傅聿青,李江,李建安,等. 生草栽培对油茶林地土壤养分特征和微生物及酶活性的影响[J]. 经济林研究,2018,36(3):82-88.
[74]向仰州,刘英,何季,等. 生草栽培对刺梨园土壤养分、微生物和酶活性的影响[J]. 北方园艺,2018(6):96-101.
[75]刘广勤,朱海军,周蓓蓓,等. 鼠茅覆盖对梨园杂草控制及土壤微生物和酶活性的影响[J]. 果树学报,2010,27(6):1024-1028.
[76]马慧霞,张桥,陈会巧,等. 长期有机培肥对南方红壤区稻田土壤碳循环功能基因的影响[J]. 南方农业学报,2023,54(5):1405-1416.
[77]钟兰军. 生草栽培对龙眼果园土壤理化性质及产量的影响[J]. 福建农业科技,2020(2):57-62.
[78]王丽宏,曾昭海,杨光立,等. 冬季作物对水稻生育期土壤微生物量碳、氮的影响[J]. 植物营养与肥料学报,2009,15(2):381-385.
[79]冼伟光,周丽,唐洪辉,等. 不同林龄针阔混交林土壤生态化学计量特征[J]. 广东林业科技,2015,31(1):1-6.
[80]杨文,周脚根,王美慧,等. 亚热带丘陵小流域土壤碳氮磷生态计量特征的空间分异性[J]. 土壤学报,2015,52(6):1336-1344.
[81]侯堂春,喻阳华,钟欣平. 贵州省表土生态化学计量特征[J]. 西南农业学报,2020,33(10):2310-2315.
[82]李娟,龙健,李阳兵. 贵州高原喀斯特山区土壤环境问题与对策[J]. 贵州师范大学学报(自然科学版),2007,25(4):12-16.
[1]管冠,何天养,朱婧,等.生草栽培对赣南地区晚棱脐橙土壤酶活性及微生物种群的影响[J].江苏农业科学,2017,45(17):141.
Guan Guan,et al.Impacts of sod cultivation on soil enzyme activity and microbes number of lane late navel orange orchard in southern Jiangxi Province[J].Jiangsu Agricultural Sciences,2017,45(22):141.
[2]韦小了,何季,何腾兵,等.种植年限对刺梨园土壤微生物数量和酶活性的影响[J].江苏农业科学,2019,47(13):280.
Wei Xiaoliao,et al.Effects of planting years on soil microbial quantity and enzyme activity in Rosa roxburghii Tratt orchard[J].Jiangsu Agricultural Sciences,2019,47(22):280.
[3]朱婧,陈东晓,何天养,等.生草栽培对赣南地区晚棱脐橙土壤微量元素及叶片营养吸收的影响[J].江苏农业科学,2019,47(20):172.
Zhu Jing,et al.Impacts of sod cultivation on soil micro elements and leaf nutrient absorption of lane late navel orange in southern Jiangxi[J].Jiangsu Agricultural Sciences,2019,47(22):172.
[4]管冠,郭等等,李倩磊,等.生草栽培对纽荷尔脐橙根系生长土壤微生物群落的影响[J].江苏农业科学,2021,49(17):220.
Guan Guan,et al.Influences of sod culture on root growth and soil microbial community of Newhall navel orange[J].Jiangsu Agricultural Sciences,2021,49(22):220.
[5]管冠,郭富鹏,郭等等,等.生草栽培对赣南脐橙土壤团聚体及根系生长的影响[J].江苏农业科学,2023,51(5):216.
Guan Guan,et al.Effects of raw grass cultivation on soil aggregates and root growth of navel orange in south of Jiangxi Province[J].Jiangsu Agricultural Sciences,2023,51(22):216.
[6]管冠,郭富鹏,郭等等,等.生草栽培对赣南脐橙土壤生物学性质及根系分泌物的影响[J].江苏农业科学,2023,51(11):202.
Guan Guan,et al.Effects of raw grass cultivation on soil biological properties and root exudation of Gannan navel orange[J].Jiangsu Agricultural Sciences,2023,51(22):202.
[7]杨一名,黄智,王鹏,等.基于计划行为理论的农业绿色生产技术采纳研究——以梨园生草栽培技术为例[J].江苏农业科学,2024,52(5):255.
Yang Yiming,et al.Study on adoption of agricultural green production technology based on planned behavior theory—Taking cultivation techniques of growing grass in pear orchards as an example[J].Jiangsu Agricultural Sciences,2024,52(22):255.