[1]李天来,杨丽娟. 作物连作障碍的克服——难解的问题[J]. 中国农业科学,2016,49(5):916-918.
[2]Gul S,Whalen J K,Thomas B W,et al. Physico-chemical properties and microbial responses in biochar-amended soils:mechanisms and future directions[J]. Agriculture Ecosystems & Environment,2015,206:46-59.
[3]Egamberdieva D,Wirth S,Behrendt U,et al. Biochar treatment resulted in a combined effect on soybean growth promotion and a shift in plant growth promoting rhizobacteria[J]. Frontiers in Microbiology,2016,7:1-11.
[4]张功臣,陈建美,赵征宇,等. 生物质炭对设施连作土壤性质及黄瓜生长和产量的影响[J]. 土壤通报,2018,49(3):659-666.
[5]邢卫峰,于侦云,陈刘军,等. 生物肥料“宁盾”对甜瓜枯萎病的防治效果[J]. 江苏农业科学,2014,42(3):78-81.
[6]杨威,闫海霞,张贝贝,等. 施用微生物菌肥“宁盾”对辣椒根围细菌多样性及土壤酶活性的影响[J]. 江苏农业科学,2018,46(9):99-103.
[7]Nadeem S M,Imran M,Naveed M,et al. Synergistic use of biochar,compost and plant growth-promoting rhizobacteria for enhancing cucumber growth under water deficit conditions[J]. Journal of the Science of Food and Agriculture,2017,97(15):5139-5145.
[8]Akhtar S S,Andersen M N,Naveed M,et al. Interactive effect of biochar and plant growth-promoting bacterial endophytes on ameliorating salinity stress in maize[J]. Functional Plant Biology,2015,42(8):770-781.
[9]鲍士旦. 土壤农化分析[M]. 3版.北京:中国农业出版社,2000.
[10]关松荫,张德生,张志明. 土壤酶及其研究法[M]. 北京:农业出版社,1986.
[11]林先贵. 土壤微生物研究原理与方法[M]. 北京:高等教育出版社,2010.
[12]王学奎. 植物生理生化实验原理和技术[M]. 2版.北京:高等教育出版社,2006.
[13]Xu G,Sun J N,Shao H B,et al. Biochar had effects on phosphorus sorption and desorption in three soils with differing acidity[J]. Ecological Engineering,2014,62:54-60.
[14]诸海焘,李建勇,朱恩,等. 水肥一体化条件下设施黄瓜的氮磷钾吸收分配规律研究[J]. 上海农业学报,2017,33(1):74-78.
[15]万述伟,张守才,赵明,等. 设施栽培黄瓜的氮磷钾肥料效应研究[J]. 中国土壤与肥料,2012(5):44-49.
[16]Rai A,Nabti E. Plant growth-promoting bacteria:importance in vegetable production[M]//Microbial strategies for vegetable production. Cham:Springer,2017:23-48.
[17]Pii Y,Penn A,Terzano R,et al. Plant-microorganism-soil interactions influence the Fe availability in the rhizosphere of cucumber plants[J]. Plant Physiology and Biochemistry,2015,87:45-52.
[18]邹春娇,齐明芳,马建,等. Biolog-ECO解析黄瓜连作营养基质中微生物群落结构多样性特征[J]. 中国农业科学,2016,49(5):942-951.
[19]胡元森,刘亚峰,吴坤,等. 黄瓜连作土壤微生物区系变化研究[J]. 土壤通报,2006,37(1):126-129.
[20]Chen J H,Liu X Y,Zheng J W,et al. Biochar soil amendment increased bacterial but decreased fungal gene abundance with shifts in community structure in a slightly acid rice paddy from Southwest China[J]. Applied Soil Ecology,2013,71:33-44.
[21]Han L J,Wang Z Y,Li N,et al. Bacillus amyloliquefaciens B1408 suppresses Fusarium wilt in cucumber by regulating the rhizosphere microbial community[J]. Applied Soil Ecology,2019,136:55-66.
[22]韩召强,陈效民,曲成闯,等. 生物质炭对黄瓜连作土壤理化性状,酶活性及土壤质量的持续效应[J]. 植物营养与肥料学报,2018,24(5):1227-1236.
[23]沈盟,蒋芳玲,王珊,等. 生物质炭施用量对土壤性状和番茄产质量的影响[J]. 土壤,2017,49(3):534-542.
[24]李丽,王雪艳,田彦芳,等. 生物质炭对土壤养分及设施蔬菜产量与品质的影响[J]. 植物营养与肥料学报,2018,24(5):1237-1244.
[25]李大伟,周加顺,潘根兴,等. 生物质炭基肥施用对蔬菜产量和品质以及氮素农学利用率的影响[J]. 南京农业大学学报,2016,39(3):433-440.
[26]刘晓雨,刘成,王贺东,等. 添加生物质炭不同组分对不结球白菜产量和品质的影响[J]. 南京农业大学学报,2018,41(6):1070-1077.
[27]Chu S H,Zhang D,Zhi Y E,et al. Enhanced removal of nitrate in the maize rhizosphere by plant growth-promoting Bacillus megaterium NCT-2,and its colonization pattern in response to nitrate[J]. Chemosphere,2018,208:316-324.
[1]武玲,陆雅萍,丁泽华,等.草菇菌糠还田对大棚土壤肥力和黄瓜产量的影响[J].江苏农业科学,2013,41(05):372.
Wu Ling,et al.Effects of mushroom substrate return to fields on soil fertility and cucumber yield in greenhouses[J].Jiangsu Agricultural Sciences,2013,41(18):372.
[2]王素平,孙艳军.H2O2预处理对低温下黄瓜幼苗抗氧化酶同工酶的影响[J].江苏农业科学,2013,41(06):123.
Wang Suping,et al.Effect of H2O2 pretreatment on antioxidant isoenzyme in cucumber seedlings under chilling stress[J].Jiangsu Agricultural Sciences,2013,41(18):123.
[3]田福发,陈立昶,姜若勇,等.内置式秸秆反应堆对日光温室番茄和黄瓜生长的影响[J].江苏农业科学,2013,41(09):143.
Tian Fufa,et al.Effect of built-in straw bio-reactor on growth of tomato and cucumber in greenhouse[J].Jiangsu Agricultural Sciences,2013,41(18):143.
[4]高攀,郭世荣,阳燕娟,等.Ca(NO3)2胁迫对白籽南瓜嫁接黄瓜幼苗生长及膜透性的影响[J].江苏农业科学,2013,41(11):157.
Gao Pan,et al.Effects of Ca(NO3)2 stress on growth and cell membrane permeability of white seed pumpkin grafted cucumber seedlings[J].Jiangsu Agricultural Sciences,2013,41(18):157.
[5]王红君,张梦,赵辉,等.基于BP神经网络的温室黄瓜灌溉预测模型[J].江苏农业科学,2013,41(11):407.
Wang Hongjun,et al.Irrigation forecast model of cucumber in greenhouse based on BP neural networks[J].Jiangsu Agricultural Sciences,2013,41(18):407.
[6]费雨兰,王晶,沈佳,等.不同砧木嫁接对黄瓜长势及果实品质的影响[J].江苏农业科学,2013,41(12):147.
Fei Yulan,et al.Effects of different rootstocks on growth and quality of grafted cucumber[J].Jiangsu Agricultural Sciences,2013,41(18):147.
[7]田福发,余翔,周玲玲,等.冲施不同浓度沼液肥对温室黄瓜产量和品质的影响[J].江苏农业科学,2014,42(02):122.
Tian Fufa,et al.Effects of different concentrations of biogas manure on yield and quality of cucumber in greenhouse[J].Jiangsu Agricultural Sciences,2014,42(18):122.
[8]任轶,李瑞霞,艾昊,等.减施肥条件下木霉SQR-T037微生物肥对黄瓜产量、品质及养分利用效率的影响[J].江苏农业科学,2014,42(02):143.
Ren Yi,et al.Effects of Trichoderma microbial fertilizer SQR-T037 on yield, quality and nutrient use efficiency of cucumber under reduced usage of chemical fertilizer[J].Jiangsu Agricultural Sciences,2014,42(18):143.
[9]张黎杰,周玲玲,李志强,等.菌渣复合基质栽培对日光温室黄瓜生长发育和产量品质的影响[J].江苏农业科学,2014,42(03):109.
Zhang Lijie,et al.Effects of mushroom dregs compound substrate on growth,yield and quality of cucumber in solar greenhouse[J].Jiangsu Agricultural Sciences,2014,42(18):109.
[10]万景旺,邵颖,朱华,等.生防菌Jdm2与生物源农药混用防治黄瓜根结线虫病的效果[J].江苏农业科学,2014,42(04):108.
Wan Jingwang,et al.Combined control effect of biocontrol agent Jdm2 and various biogenic pesticides on root-knot nematodes in cucumber[J].Jiangsu Agricultural Sciences,2014,42(18):108.