[1]蒋卫杰,邓杰,余宏军. 设施园艺发展概况、存在问题与产业发展建议[J]. 中国农业科学,2015,48(17):3515-3523.
[2]寿伟松,梁晓东,董文其,等. 基质用量对黄瓜生长发育的影响[J]. 中国农学通报,2006,22(12):223-225.
[3]王海泽,王振国,李岩,等. 不同施氮量与种植密度对高粱产量及品质的影响综述[J]. 现代农业科技,2024(3):6-9,12.
[4]高俊凤. 植物生理学实验指导[M]. 北京:高等教育出版社,2006:142-228.
[5]Lazcano C,Gómez-Brandón M,Domínguez J. Comparison of the effectiveness of composting and vermicomposting for the biological stabilization of cattle manure[J]. Chemosphere,2008,72(7):1013-1019.
[6]欧阳素影,王志权,李青,等. 辣椒株型调控研究进展[J]. 植物遗传资源学报,2023,24(5):1248-1256.
[7]杨竹,周宾寒,吴翠翠,等. 氮密互作对弱筋小麦长麦8号产量和品质的影响[J]. 安徽农业科学,2024,52(5):23-27.
[8]李龙,王占海,赵海波,等. 不同种植密度对小麦产量及其构成因素的影响[J]. 现代农业科技,2025(5):14-16.
[9]刘春晓,汪黎明,董瑞,等. 种植密度对籽粒机收玉米‘鲁单608’生长发育和产量的影响[J]. 中国农学通报,2025,41(2):23-27.
[10]卢志民. 棉花高密度种植技术对产量与品质的影响研究[J]. 粮油与饲料科技,2024(11):59-61.
[11]柴紫薇,李亚东,杨升,等. 不同氮素对不同种植密度水稻产量的影响[J]. 湖北大学学报(自然科学版),2025,47(2):209-219.
[12]王玉林,孙延国,高峻,等. 施氮量与种植密度对‘中烟100’烟叶产量及化学成分的影响[J]. 山东农业科学,2022,54(7):113-121,134.
[13]Hyakumachi M. Plant-growth-promoting fungi from turfgrass rhizosphere with potential for disease suppression[J]. Soil Microorganism,1994,44:53-68.
[14]Masunaka A,Hyakumachi M,Takenaka S. Plant growth-promoting fungus,Trichoderma koningi suppresses is oflavonoid phytoalexin vestitol production for colonization on/in the roots of Lotus japonicus[J]. Microbes and Environments,2011,26(2):128-134.
[15]Hermosa R,Belén Rubio M,Cardoza R E,et al. The contribution of Trichoderma to balancing the costs of plant growth and defense[J]. International Microbiology,2013,16(2):69-80.
[16]Bahrke M S,Morgan W P,Stegner A. Is ginseng an ergogenic aid?[J]. International Journal of Sport Nutrition and Exercise Metabolism,2009,19(3):298-322.
[17]熊亚男. 化肥减施与有机肥及木霉菌剂配施对薄皮甜瓜品质和肥料利用的影响[D]. 大庆:黑龙江八一农垦大学,2022:57-60.
[18]靳亚忠,熊亚男,孙雪,等. 化肥减施与木霉菌有机肥配施对辣椒产量、品质及根际土壤酶活性的影响[J]. 四川农业大学学报,2021,39(2):198-204.
[19]赵政,陈巍,王欢,等. 木霉微生物肥与减量化肥配施对番茄产量、品质及土壤肥力的影响[J]. 土壤学报,2018,55(5):1243-1253.
[20]刘瑶,钟志梅,赵智宏. 低聚壳寡糖(DP=6~8)的制备及其体外抗氧化活性研究[J]. 内蒙古农业大学学报(自然科学版),2023,44(1):87-92.
[21]姚艳平,王建明,张作刚,等. 几丁寡糖在木霉菌生物防治中的作用[J]. 山西农业科学,2013,41(2):194-196.
[22]李合生. 植物生理生化实验原理和技术[M]. 北京:高等教育出版社,2000:195-197.
[23]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.
[24]赵静. 铜污染土壤的木霉强化海州香薷修复研究[D]. 武汉:华中农业大学,2009:51-52.
[25]Chen L H,Yang X M,Raza W,et al. Trichoderma harzianum SQR-T037 rapidly degrades allelochemicals in rhizospheres of continuously cropped cucumbers[J]. Applied Microbiology and Biotechnology,2011,89(5):1653-1663.
[26]Huang X Q,Liu L L,Wen T,et al. Reductive soil disinfestations combined or not with Trichoderma for the treatment of a degraded and Rhizoctonia solani infested greenhouse soil[J]. Scientia Horticulturae,2016,206:51-61.
[27]Vicente O,Boscaiu M,Naranjo M á,et al. Responses to salt stress in the halophyte Plantago crassifolia(Plantaginaceae)[J]. Journal of Arid Environments,2004,58(4):463-481.
[28]Levitt J. Response of plants to environmental stress[M]. New York:Academic Press,1980:365-434.
[29]张帆,刘博,石玉,等. 干旱胁迫下嫁接对辣椒幼苗生长及生理特性的影响[J]. 江苏农业科学,2024,52(5):186-191.
[30]Zafar Z,Rasheed F,Delagrange S,et al. Acclimatization of Terminalia Arjuna saplings to salt stress:characterization of growth,biomass and photosynthetic parameters[J]. Journal of Sustainable Forestry,2020,39(1):76-91.
[31]Ma Z,Baskin T I,Brown K M,et al. Regulation of root elongation under phosphorus stress involves changes in ethylene responsiveness[J]. Plant Physiology,2003,131(3):1381-1390.
[32]Caplan J S,Meiners S J,Flores-Moreno H,et al. Fine-root traits are linked to species dynamics in a successional plant community[J]. Ecology,2019,100(3):e02588.
[33]Guo H C,York L M. Maize with fewer nodal roots allocates mass to more lateral and deep roots that improve nitrogen uptake and shoot growth[J]. Journal of Experimental Botany,2019,70(19):5299-5309.
[34]蔡琪琪,王堽,董寅壮,等. 不同中性盐胁迫对甜菜幼苗光合作用和抗氧化酶系统的影响[J]. 作物杂志,2022(1):130-136.
[35]Harman G E. Overview of mechanisms and uses of Trichoderma spp.[J]. Phytopathology,2006,96(2):190-194.
[36]陈芊如,丁蓬勃,胡希好,等. 外源壳寡糖对低温胁迫条件下烟草幼苗的保护作用[J]. 江苏农业科学,2022,50(1):80-85.
[37]陈双臣,姬德刚,李聪,等. 哈茨木霉诱导番茄叶片光合生理变化的研究[J]. 园艺学报,2014,41(3):489-497.
[38]李映龙,单守明,刘成敏,等. 叶面喷施壳寡糖对华脆苹果光合作用和果实品质的影响[J]. 农业科学研究,2019,40(3):19-22.
[1]张文,聂凌利,李翊君,等.高产条件下超级稻对种植密度反应的研究[J].江苏农业科学,2016,44(12):126.
Zhang Wen,et al.Study on response of super rice to planting density under condition of high yield[J].Jiangsu Agricultural Sciences,2016,44(8):126.
[2]张礼,伍燕华,付绍兵,等.栽培密度和施肥对川贝母生长和产量的影响[J].江苏农业科学,2017,45(03):119.
Zhang Li,et al.Effects of planting density and fertilizing level on growth and yield of Fritillaria cirrhosa D. Don[J].Jiangsu Agricultural Sciences,2017,45(8):119.
[3]王大凤,王思瑶,侯琨,等.夏填闲作物不同密度种植对设施土壤磷素的吸收与磷风险阻控[J].江苏农业科学,2019,47(11):286.
Wang Dafeng,et al.Phosphorus uptake and phosphorus risk control in facility soil under different planting density of summer catch crop[J].Jiangsu Agricultural Sciences,2019,47(8):286.