Journal of Zhejiang Agricultural Sciences ›› 2024, Vol. 65 ›› Issue (10): 2523-2528.DOI: 10.16178/j.issn.0528-9017.20230577
WANG Zhe1(), TU Chunbao1, MA Kun1, FAN Wenhui1, WU Choufei2,*(
), PAN Dongfu3
Received:
2023-05-26
Online:
2024-10-11
Published:
2024-10-25
CLC Number:
WANG Zhe, TU Chunbao, MA Kun, FAN Wenhui, WU Choufei, PAN Dongfu. Research progress on the effects of biological fertilizer on soil and crops[J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(10): 2523-2528.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zjnykx.cn/EN/10.16178/j.issn.0528-9017.20230577
功能分类 | 表现 | 代表菌种 |
---|---|---|
提供或活化养分 | 溶解并补充矿质元素等 | 巨大芽孢杆菌、胶冻样芽孢杆菌、枯草芽孢杆菌等 |
分泌促生活性物质 | 赤霉素、细胞分裂素、吲哚乙酸等 | 侧孢短芽孢杆菌、地衣芽孢杆菌 |
腐熟有机质 | 产纤维素酶、产木聚糖酶、产蛋白酶等 | 枯草芽孢杆菌、解淀粉芽孢杆菌 |
改善品质 | 性状优异、降低农残和亚硝酸盐 | 地衣芽孢杆菌、胶冻样芽孢杆菌 |
增强作物抗逆性 | 减少病虫害;提高作物抗逆性和抗病能力等 | 胶冻样芽孢杆菌、巨大芽孢杆菌、多粘类芽孢杆菌、娄彻氏链霉菌 |
改良和修复土壤 | 改善土壤团粒结构、容重、空隙等;平衡土壤微生物种群结构;减少农药残留、重金属等有害物质 | 酵母菌、巨大芽孢杆菌、侧孢短芽孢杆菌、苏云金芽孢杆菌 |
Table 1 Functional classification of biological fertilizer
功能分类 | 表现 | 代表菌种 |
---|---|---|
提供或活化养分 | 溶解并补充矿质元素等 | 巨大芽孢杆菌、胶冻样芽孢杆菌、枯草芽孢杆菌等 |
分泌促生活性物质 | 赤霉素、细胞分裂素、吲哚乙酸等 | 侧孢短芽孢杆菌、地衣芽孢杆菌 |
腐熟有机质 | 产纤维素酶、产木聚糖酶、产蛋白酶等 | 枯草芽孢杆菌、解淀粉芽孢杆菌 |
改善品质 | 性状优异、降低农残和亚硝酸盐 | 地衣芽孢杆菌、胶冻样芽孢杆菌 |
增强作物抗逆性 | 减少病虫害;提高作物抗逆性和抗病能力等 | 胶冻样芽孢杆菌、巨大芽孢杆菌、多粘类芽孢杆菌、娄彻氏链霉菌 |
改良和修复土壤 | 改善土壤团粒结构、容重、空隙等;平衡土壤微生物种群结构;减少农药残留、重金属等有害物质 | 酵母菌、巨大芽孢杆菌、侧孢短芽孢杆菌、苏云金芽孢杆菌 |
[1] | 栗丽, 洪坚平, 谢英荷, 等. 生物菌肥对采煤塌陷复垦土壤生物活性及盆栽油菜产量和品质的影响[J]. 中国生态农业学报, 2010, 18(5): 939-944. |
[2] | ADEDIRAN J A, TAIWO L B, AKANDE M O, et al. Application of organic and inorganic fertilizer for sustainable maize and cowpea yields in Nigeria[J]. Journal of Plant Nutrition, 2005, 27(7): 1163-1181. |
[3] | WEN Z H, SHEN J B, BLACKWELL M, et al. Combined applications of nitrogen and phosphorus fertilizers with manure increase maize yield and nutrient uptake via stimulating root growth in a long-term experiment[J]. Pedosphere, 2016, 26(1): 62-73. |
[4] | 朱兆良, 金继运. 保障我国粮食安全的肥料问题[J]. 植物营养与肥料学报, 2013, 19(2): 259-273. |
[5] | 闫飞扬, 段廷玉, 张峰. 农业管理措施对AM真菌功能影响的研究进展[J]. 草业科学, 2014, 31(12): 2230-2241. |
[6] | DORDAS C A, LITHOURGIDIS A S, MATSI T, et al. Application of liquid cattle manure and inorganic fertilizers affect dry matter, nitrogen accumulation, and partitioning in maize[J]. Nutrient Cycling in Agroecosystems, 2008, 80(3): 283-296. |
[7] | 王哲, 屠春宝, 王如月, 等. 农业土壤环境污染及修复研究进展[J]. 农业与技术, 2023, 43(19): 94-99. |
[8] | 鲁艳红, 廖育林, 聂军, 等. 长期施用氮磷钾肥和石灰对红壤性水稻土酸性特征的影响[J]. 土壤学报, 2016, 53(1): 202-212. |
[9] | 吴凤娉. 长期过量施用化肥对农业生态环境的负面影响及对策[J]. 中国农业信息, 2016(10): 67-68. |
[10] | HOU Q, ZUO T, WANG J, et al. Responses of nitrification and bacterial community in three size aggregates of paddy soil to both of initial fertility and biochar addition[J]. Applied Soil Ecology, 2021, 166: 104004. |
[11] | 王哲, 柴里昂, 樊怀福, 等. 植物响应盐胁迫蛋白质组学研究进展[J]. 浙江农业学报, 2019, 31(6): 1021-1028. |
[12] | YUNUS A, SAMANHUDI, BRAHMANTO N, et al. Artemisia annuarespon to various types of organic fertilizer and dose in lowland[J]. IOP Conference Series: Earth and Environmental Science, 2018, 142: 012021. |
[13] | 阎世江, 李照全, 张治家. 生物菌肥的研究现状与应用[J]. 北方园艺, 2017(5): 189-192. |
[14] | 杨玉惠, 杨思存, 王成宝, 等. 连作条件下不同施肥处理对设施黄瓜产量和品质的影响[J]. 土壤, 2014, 46(1): 83-87. |
[15] | 孙运杰, 马海林, 刘方春, 等. 生物肥对蓝莓根际土壤微生物学特性及土壤肥力的影响[J]. 水土保持学报, 2015, 29(3): 167-171, 177. |
[16] | 郭永利. 微生物肥料的研究进展及应用现状[J]. 陕西农业科学, 2012, 58(4): 134-136, 147. |
[17] | ZHAO Z P, HU Z L, NIE X, et al. A novel rhodobacter sphaeroides expression system for real-time evaluation of heterologous protein expression levels[J]. Protein and Peptide Letters, 2011, 18(6): 568-572. |
[18] | ZHOU W J, QIN S J, LYU D G, et al. Soil sterilisation and plant growth-promoting rhizobacteria promote root respiration and growth of sweet cherry rootstocks[J]. Archives of Agronomy and Soil Science, 2015, 61(3): 361-370. |
[19] | 孙佳瑞, 胡栋, 张翠绵, 等. 链霉菌S506对番茄苗生长和冷害生理生化的影响[J]. 中国农学通报, 2012, 28(31): 167-171. |
[20] | 彭正萍, 门明新, 薛世川, 等. 腐植酸复合肥对土壤养分转化和土壤酶活性的影响[J]. 河北农业大学学报, 2005, 28(4): 1-4. |
[21] | 赵贞, 杨延杰, 林多, 等. 微生物菌肥对日光温室黄瓜生长发育及产量品质的影响[J]. 中国蔬菜, 2012(18): 149-153. |
[22] | 毛晓洁, 王新民, 赵英, 等. 多功能固氮菌筛选及其在土壤生态修复中的应用[J]. 生物技术通报, 2017, 33(10): 148-155. |
[23] | 陈龙. 菌肥对粮饲兼用型玉米生长和品质及土壤特性影响研究[D]. 兰州: 甘肃农业大学, 2016. |
[24] | ZHAO J, ZHU X L, YE M, et al. Effects of biological bacterial fertilizer on carbon metabolism characteristics of rhizosphere soil bacteria in rice[J]. Agricultural Science & Technology, 2020, 21(3): 25-29. |
[25] | 刘建国, 朱云娜, 乔冬. 生物菌肥对水稻种子发芽的效应研究[J]. 安徽农业科学, 2014, 42(36): 12857-12859. |
[26] | 杨航, 肖析蒙, 付春, 等. 微生物菌肥对设施蕹菜促生作用和品质的影响[J]. 内江科技, 2019, 40(12): 50-51, 53. |
[27] | 崔曾杰. 生物菌肥对盐碱地水稻生长发育及生理生态特性影响[D]. 长春: 吉林农业大学, 2013. |
[28] | 黄灵丹. 有机肥对冬小麦/辣椒复合群体土壤肥力及作物生理特性和产量的影响[D]. 杨凌: 西北农林科技大学, 2010. |
[29] | 尹施淇. 枯草芽孢杆菌对盆栽辣椒土壤特性及生长影响的研究[D]. 长春: 吉林农业大学, 2019. |
[30] | ÖĞÜT M, ER F, NEUMANN G. Increased proton extrusion of wheat roots by inoculation with phosphorus solubilising microorganims[J]. Plant and Soil, 2011, 339(1): 285-297. |
[31] | NKEBIWE P M, WEINMANN M, MÜLLER T. Improving fertilizer-depot exploitation and maize growth by inoculation with plant growth-promoting bacteria: from lab to field[J]. Chemical and Biological Technologies in Agriculture, 2016, 3(1): 15. |
[32] | 于忠范, 张广和, 姜学玲, 等. 九丰肥田宝对苹果生长发育的影响[J]. 北方果树, 2001(5): 13-19. |
[33] | 刘春燕, 周龙, 陈冬立, 等. 生物菌肥对桃土壤肥力及地上部的影响[J]. 河南农业大学学报, 2020, 54(4): 597-603. |
[34] | 王爱斌, 宋慧芳, 张流洋, 等. 生物肥和菌肥对蓝莓苗生长及土壤养分的影响[J]. 南京林业大学学报(自然科学版), 2020, 44(6): 63-70. |
[35] | 石磊, 王军, 陈云, 等. 化肥减量配施生物菌肥对色素辣椒生长的影响[J]. 新疆农业科学, 2021, 58(5): 854-865. |
[36] | 孟瑶, 徐凤花, 孟庆有, 等. 中国微生物肥料研究及应用进展[J]. 中国农学通报, 2008, 24(6): 276-283. |
[37] | 谢东锋, 王国强, 谢荣, 等. 不同微生物菌肥处理连作土壤对黄瓜生长及防御性酶的影响[J]. 福建农业学报, 2018, 33(7): 696-701. |
[38] | 高喜叶, 刘明升. 生物菌肥和有机肥配施对胡萝卜生长的影响[J]. 安徽农业科学, 2017, 45(35): 39-41. |
[39] | 马乐, 姜雅轩, 雷培, 等. 生物菌肥对软枣猕猴桃品种‘魁绿’和‘佳绿’生长发育的影响[J]. 经济林研究, 2022, 40(2): 183-190. |
[40] | 王力, 顾浩, 李嘉亮, 等. 氮肥配施生物炭对坡耕地烤烟/青贮玉米套作生物量和光合特性的影响[J]. 云南农业大学学报(自然科学), 2021, 36(6): 985-992. |
[41] | 周进. 生物菌肥施用对温室辣椒光合特性、产量和品质的影响[J]. 北方园艺, 2021(1): 42-47. |
[42] | 陈建生, 李文金, 康涛, 等. 花生上生物菌肥替代化肥减施增效技术研究[J]. 山东农业科学, 2021, 53(7): 73-76. |
[43] | 史宗源, 安晓芹, 刘皓, 等. 叶面菌肥对色素万寿菊幼苗生长的影响[J]. 湖南农业科学, 2023(1): 55-58. |
[44] | 吴云艳. 生物菌肥对栽培稻氮代谢生理特性及产量的影响[J]. 江苏农业科学, 2018, 46(21): 76-78. |
[45] | 雷春意. 微生物肥料在不同作物上的应用效果[J]. 内蒙古农业科技, 2007, 35(4): 66-67. |
[46] | 陈丽丽, 祁香雪, 宫晓晨, 等. 生物菌肥对有机种植马铃薯生长和产量的影响[J]. 中国马铃薯, 2018, 32(4): 229-234. |
[47] | 朱元芳, 徐永清, 陈芾葳, 等. EM菌生物有机肥对马铃薯脱毒苗生产微型薯的影响[J]. 湖北农业科学, 2020, 59(20): 46-50. |
[48] | YANG S M, DU J Z, XU G L, et al. Effects of microbial fertilizer and compound feritlizer mixed application on yield and fruit quality and flowering and fruit setting of following year of apple[J]. Agricultural Science & Technology, 2016, 17(3): 642-644. |
[49] | 李海云, 王厚熹, 董秀霞. 生物菌肥在黄瓜上的施用效果研究[J]. 安徽农业科学, 2009, 37(24): 11501, 11518. |
[50] | 杨素苗, 杜纪壮, 徐国良, 等. 微生物肥与复合肥配施对微灌苹果产量和果实品质以及翌年成花坐果的影响[J]. 河北农业科学, 2015, 19(6): 26-28. |
[51] | 王义坤, 孙琪然, 段亚楠, 等. 三种菌肥对苹果连作土壤环境及平邑甜茶幼苗生长的影响[J]. 植物营养与肥料学报, 2019, 25(4): 630-638. |
[52] | 刘春阳. 生物肥料对‘红阳’猕猴桃园土壤理化性质及产量、品质的影响[D]. 雅安: 四川农业大学, 2016. |
[53] | 郭志刚, 李文芳, 马宗桓, 等. 生物菌肥和钾肥配施对苹果钾素吸收及果实品质的影响[J]. 干旱地区农业研究, 2021, 39(3): 113-121. |
[54] | 李兴发, 黄娟, 杨雅婷, 等. 光合细菌菌剂对黄冠梨土壤微生物区系及果实品质的影响[J]. 西南师范大学学报(自然科学版), 2015, 40(6): 55-61. |
[55] | 王敏, 靳爱荣, 张迎然. 绿天微生物肥对果树产量和品质的影响[J]. 北方果树, 2013(6): 16-17. |
[56] | 李玉华, 许前欣, 李明悦, 等. 微生物菌肥对库尔勒香梨产量、品质的影响[J]. 天津农业科学, 2006, 12(2): 48-50. |
[57] | 汤国雄, 丁宁, 李明星, 等. 生物菌肥对柑橘果实品质的影响[J]. 上海农业学报, 2019, 35(5): 56-60. |
[58] | 牛振明. 化肥减量及氮素形态配比对甘蓝养分吸收、产量和品质的影响[D]. 兰州: 甘肃农业大学, 2014. |
[59] | 宋培植. 减氮配施有机肥及生物菌肥对菜心品质和产量的影响[D]. 长春: 吉林农业大学, 2022. |
[60] | 李玉奇, 辛世杰, 奥岩松. 微生物菌肥对温室黄瓜生长、产量及品质的影响[J]. 中国农学通报, 2012, 28(1): 259-263. |
[61] | 汤桂容, 周旋, 田昌, 等. 有机无机氮肥配施对蔬菜产量、品质及经济效益的影响[J]. 生态学杂志, 2017, 36(5): 1292-1299. |
[62] | CHAPARRO J M, SHEFLIN A M, MANTER D K, et al. Manipulating the soil microbiome to increase soil health and plant fertility[J]. Biology and Fertility of Soils, 2012, 48(5): 489-499. |
[63] | GUO L Y, WU G L, LI Y, et al. Effects of cattle manure compost combined with chemical fertilizer on topsoil organic matter, bulk density and earthworm activity in a wheat-maize rotation system in Eastern China[J]. Soil and Tillage Research, 2016, 156: 140-147. |
[64] | 于恩晶, 高丽红, 陈青云. 微生物菌剂与有机肥配施对日光温室小白菜产量和品质的影响[J]. 北方园艺, 2010(7): 57-59. |
[65] | 范洁群, 王伟民, 吴淑杭, 等. 生物质炭对老桃园再植障碍的土壤调理机制初探[J]. 上海农业学报, 2017, 33(2): 48-51. |
[66] | QIU M H, ZHANG R F, XUE C, et al. Application of bio-organic fertilizer can control Fusarium wilt of cucumber plants by regulating microbial community of rhizosphere soil[J]. Biology and Fertility of Soils, 2012, 48(7): 807-816. |
[67] | QIU W, SU H Q, YAN L Y, et al. Organic fertilization assembles fungal communities of wheat rhizosphere soil and suppresses the population growth of Heterodera avenae in the field[J]. Frontiers in Plant Science, 2020, 11: 1225. |
[68] | 朱震, 陈芳, 肖同建, 等. 拮抗菌生物有机肥对番茄根结线虫的防治作用[J]. 应用生态学报, 2011, 22(4): 1033-1038. |
[69] | HOSSAIN M B, RYU K S. Effect of foliar applied phosphatic fertilizer on absorption pathways, yield and quality of sweet persimmon[J]. Scientia Horticulturae, 2009, 122(4): 626-632. |
[70] | HU D, LI X Z, CHANG Y L, et al. Genome sequence of Streptomyces sp. strain TOR3209, a rhizosphere microecology regulator isolated from tomato rhizosphere[J]. Journal of Bacteriology, 2012, 194(6): 1627. |
[71] | 张志刚, 董春娟, 高苹, 等. 蔬菜残株、生物菌肥施用下日光温室辣椒土壤微生物学特征[J]. 植物营养与肥料学报, 2011, 17(3): 710-717. |
[1] | SUN Xingxing, CHEN Yongcheng, WANG Fan, JIANG Yingjie, WANG Kai, HU Jixiang, GAO Bo, LI Hongyang, GU Huiling, ZHANG Lisheng. Application of DNA barcoding in identification of parasitoids on Myzus persicae [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(9): 2147-2151. |
[2] | CHEN Tao, SHEN Binliang, CAI Renxiang, ZHANG Weijiang. Current situation and development countermeasures of characteristic crops in Zhejiang Province [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(8): 1751-1754. |
[3] | WEN Wei, PAN Jianqing, YU Bo, XIE Jing, MA Junwei, YANG Yan, WANG Feng. Study on the application effect of the main acidification management model for grape cultivated land in Changxing County [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(8): 1838-1842. |
[4] | LI Hongli, LU Jian, ZHAO Yun, HUANG Haitao, CUI Hongchun, ZHU Jianjie, REN Guohua. Screening,identification and antagonistic mechanism for biological control of tea anthracnose [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(8): 1902-1907. |
[5] | CHU Sijie, AN Nan, MAO Wenlong, CHEN Mingxiang, CAI Hongyang, DENG Jianyu. Research progress on aphid control with biological pesticides [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(7): 1671-1675. |
[6] | HE Shan, WU Di, ZHAO Yu, WANG Qi, ZHANG Lixia, NIU Ben. Research progress on the functions of fimbria in the colonization of phytopathogenic nematodes by biological control bacteria [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(7): 1676-1682. |
[7] | ZHU Zhenling, CHEN De, YE Xuezhu. Current status of standardization development of biochar from straw cabonization and field application [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(7): 1709-1713. |
[8] | ZOU Wenxiong, GUAN Yajing, ZHAN Liwei, CAO Dongdong, YAN Jianfang. Current situation and improvement strategies of crop seed quality in Zhejiang Province [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(6): 1507-1511. |
[9] | LI Gensheng, LI Zenan, WANG Meixian, LU Haiqin. Effects of biochar on soil improvement and yield and quality of Chinese cabbage in greenhouses [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(5): 1139-1142. |
[10] | SUN Qinan, ZHANG Shuo, ZHU Weijing, CHEN Miaojin, GU Qing, ZHANG Xiaobin. Effects of different straw mulching patterns on the soil and fruit of peach orchards [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(3): 618-622. |
[11] | HAN Su, SUO Lili, LI Wenli, GU Yuting, SHI Xiaoyan. Analysis and strategy research on mechanization level of main crops in Hangzhou [J]. Journal of Zhejiang Agricultural Sciences, 2024, 65(10): 2316-2322. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||