China Rice ›› 2022, Vol. 28 ›› Issue (1): 38-42.DOI: 10.3969/j.issn.1006-8082.2022.01.008
• Special Thesis & Basic Research • Previous Articles Next Articles
ZHAO Zhendong1,2, SUN Lianping1,2, CAO Zhengnan1,2, NING Xiaohai1,2, CAO Liyong1,2,*()
Received:
2021-08-10
Online:
2022-01-20
Published:
2022-01-18
Contact:
CAO Liyong
赵振东1,2, 孙廉平1,2, 曹正男1,2, 宁晓海1,2, 曹立勇1,2,*()
通讯作者:
曹立勇
基金资助:
CLC Number:
ZHAO Zhendong, SUN Lianping, CAO Zhengnan, NING Xiaohai, CAO Liyong. Effects of Humic Acid on Yield, Quality of Rice and Soil Properties[J]. China Rice, 2022, 28(1): 38-42.
赵振东, 孙廉平, 曹正男, 宁晓海, 曹立勇. 腐植酸对水稻产量、品质及土壤特性的影响[J]. 中国稻米, 2022, 28(1): 38-42.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.zgdm.net/EN/10.3969/j.issn.1006-8082.2022.01.008
[1] | 王曰鑫. 绿色环保型腐植酸磷肥[M]. 北京: 化学工业出版社, 2009:15-16. |
[2] | MUHAMMAD W, BASHIR A, MUHAMMAD A, et al. Evaluation of humic acid application methods for yield and yield components of mungbean[J]. American Journal of Plant Sciences, 2014, 5:2 269-2 276. |
[3] | 李雪梅. 土壤固相腐殖酸赋存状态对液相中汞形态的调控作用[D]. 重庆:西南大学, 2013. |
[4] | 陈玉玲. 腐植酸对植物生理活动的影响[J]. 植物学通报, 2000, 17(1):64-72. |
[5] | MUSCOLO A, SIDARI M, FRANCIOSO O, et al. The auxin-like activity of humic substances is related to membrane interactions in carrot cell cultures[J]. Journal of Chemical Ecology, 2007, 33(1):115-129. |
[6] | NARDI S, PIZZEGHELLO D, RENIERO F, et al. Chemical and biochemical properties of humic substances isolated from forest soils and plant growth[J]. Soil Science Society of America Journal, 2000, 64(2):639-645. |
[7] | RETNO S, RURINI R, SOEMARNO S, et al. Determination of urea-humic acid dosage of vertisols on the growth and production of rice[J]. Agrivita Journal of Agricultural Science, 2015, 37(2):185-192. |
[8] | OSMAN E, EL-MASRY A A, KHATAB K A. Effect of nitrogen fertilizer sources and foliar spray of humic and/or fulvic acids on yield and quality of rice plants[J]. Advances in Applied Science Research, 2013, 4(4):174-183. |
[9] | ADELE M, MARIA S, EMILIO A, et al. Biological activity of humic substances is related to their chemical structure[J]. Soil Science Society of America Journal, 2007, 71(1):75-85. |
[10] | ANDRES C G, LEANDRO A S, FERNANDO G, et al. Vermicompost humic acids as an ecological pathway to protect rice plant against oxidative stress[J]. Ecological Engineering, 2012, 47:203-208. |
[11] | 郑平. 煤炭腐植酸的生产和应用[M]. 北京: 化学工业出版社, 1991:266-275. |
[12] | 李小华, 张建民, 黄占斌. 腐植酸在退化土壤改良中的应用研究[J]. 科学, 2020, 72(2):31-34. |
[13] | 徐增福. 腐植酸类复合肥料的生产和应用[J]. 青海农林科技, 2014, 44(3):46-48. |
[14] | 王世伟, 杨洪国, 王新娟, 等. 腐植酸控释肥对机插水稻产量和经济效益的影响[J]. 湖北农业科学, 2019, 58(3):48-51. |
[15] | 李云春, 王祥林, 朱德雄, 等. 喷施宝浸种浓度对水稻生长和产量的影响[J]. 河北农业科学, 2010, 14(2):9-10. |
[16] | 严萍. 含腐殖酸调理剂对小麦、水稻幼苗生长和产量的影响[D]. 扬州:扬州大学, 2016. |
[17] | 赵日明. 腐植酸对钾的吸附特性和水稻生长的影响[D]. 长沙:湖南农业大学, 2014. |
[18] | 钱鑫, 银永安, 贾世疆, 等. 增施腐植酸钾对膜下滴灌水稻生长与产量的影响[J]. 大麦与谷类科学, 2019, 36(6):26-28. |
[19] | 周橡棋, 朱莹雪, 马献发, 等. 腐植酸在水稻育苗上的研究综述[J]. 腐植酸, 2019, 41(3):14-18. |
[20] | 张洪江, 刘志涛, 王永红, 等. 含腐植酸复合肥料对水稻生长及镉吸收的影响[J]. 腐植酸, 2019, 41(3):48-53. |
[21] | 邢嘉韵, 易自力, 肖亮, 等. 稻壳炭和腐殖酸对水稻抗逆生理与产量的影响[J]. 作物研究, 2016, 30(4):387-392. |
[22] | 张沁怡, 李文蔚, 阳晶, 等. 腐殖酸对水稻剑叶光合特性、必需元素和产量的影响及其相关性研究[J]. 云南农业大学学报(自然科学), 2015, 30(2):185-191. |
[23] | UZILDAY B, TURKAN I, SEKMEN A H, et al. Comparison of ROS formation and antioxidant enzymes in Cleome gynandra (C3) and Cleome spinosa (C4) under drought stress[J]. Plant Science, 2012, 182:59-70. |
[24] | 邢嘉韵. 镉污染土壤应用稻壳炭和腐殖酸对水稻生理生化特性的影响[D]. 长沙:湖南农业大学, 2016. |
[25] | 徐培培, 黄惠祥, 袁程亮. 含腐植酸水溶肥在水稻上的应用研究[J]. 安徽农学通报, 2019, 25(9):100. |
[26] | 王延吉, 吕新春, 杜光补, 等. 矿物源腐植酸肥料对冬小麦产量和经济效益的影响[J]. 腐植酸, 2020, 42(4):48-51. |
[27] | 徐全辉, 高仰, 赵强, 等. 活性腐殖酸有机肥对水稻产量、养分吸收的影响[J]. 安徽农业科学, 2010, 38(8):3 951-3 952. |
[28] | 李伟, 袁亮, 黄继川, 等. 腐植酸尿素对水稻产量和氮肥利用率的影响[J]. 腐植酸, 2017, 39(3):40-43. |
[29] | 黄家怡, 荣湘民, 侯坤, 等. 氮、磷减量配施生物炭和腐植酸对双季稻产量和氮、磷流失的影响[J]. 河南农业科学, 2020, 49(8):31-44. |
[30] | 王长军, 王肇陟, 王世荣. 生物有机肥、腐殖酸对水稻产量和土壤化学性质的影响[J]. 江苏农业科学, 2016, 44(1):93-95. |
[31] | 赫臣, 陈立强, 赵海成, 等. 化肥减量配施不同类型腐植酸有机肥对盐碱地水稻产量和品质的影响[J]. 河南农业科学, 2019, 48(5):16-21. |
[32] | 张沁怡. 水旱轮作和腐殖酸对水稻生物学特性的影响研究[D]. 长沙:湖南农业大学, 2015. |
[33] | 王慧, 张从合, 陈金节, 等. 稻米品质性状影响因素及相关基因研究进展[J]. 中国稻米, 2018, 24(4):16-21. |
[34] | 段骅, 傅亮, 剧成欣, 等. 氮素穗肥对高温胁迫下水稻结实和稻米品质的影响[J]. 中国水稻科学, 2013, 27(6):591-602. |
[35] | 白志浩, 雷治兵, 张智敏, 等. 腐殖酸复合肥料在农作物中的应用研究进展[J]. 山东化工, 2020, 49(19):56-58. |
[36] | 焉山, 郑桂萍, 马艳, 等. 有机肥及与化肥配施对水稻空育163品质的影响[J]. 黑龙江八一农垦大学学报, 2014, 26(2):13-16. |
[37] | 赫臣, 郑桂萍, 赵海成, 等. 增施腐殖酸及减施化肥对盐碱地粳稻品质的影响[J]. 中国农业科技导报, 2018, 20(9):106-112. |
[38] | 黄发松, 孙宗修, 胡培松, 等. 食用稻米品质形成研究的现状与展望[J]. 中国水稻科学, 1998, 12(3):172-176. |
[39] | 张翠翠, 张传伟, 王羽. 5种新型肥料对无公害水稻生长发育和品质的影响[J]. 河南农业科学, 2006, 35(8):99-100. |
[40] | 史鹤, 谢文娟, 陈磊, 等. 复合肥、腐殖酸液肥对稻米蛋白质和几种矿物质含量影响的研究[J]. 中国农学通报, 2015, 31(12):99-104. |
[41] | VAUGHAN D, ORD B G. Introduction soil organic matter—A perspective on its nature, extraction, turnover and role in soil fertility[M]. New York: Springer, 1985: 1-35. |
[42] | 孔令冉, 董雯昕, 杨天一, 等. 腐植酸在改良和培肥土壤中的作用[J]. 腐植酸, 2019, 41(1):7-12. |
[43] | 王元元, 李超, 刘思超, 等. 有机肥对水稻产量、品质及土壤特性的影响研究进展[J]. 中国稻米, 2019, 25(1):15-20. |
[44] | 刘灿华, 袁天佑, 闫军营, 等. 减氮配施腐植酸对耕层土壤理化性质的影响[J]. 中国土壤与肥料, 2020, 57(5):77-83. |
[45] | 王修康. 活化腐植酸肥施用对小麦-玉米生长、土壤肥力及土壤CO2通量的影响[D]. 泰安:山东农业大学, 2017. |
[46] | SELIM E M, EL-NEKLAWY A S, EL-ASHRY S M. Beneficial effects of humic substances on soil fertility to fertigated potato grown on sandy soil[J]. Libyan Agriculture Research Center Journal International, 2010, 1(4):255-262. |
[47] | 刘丹, 黄占斌, 李柯, 等. 腐植酸对氮、磷肥的增效机理研究综述[J]. 腐植酸, 2016, 38(2):1-5. |
[48] | YANG K, GUAN L Z, ZHU J J, et al. Effects of exogenous humic acids on forms of organic phosphorus in three contrasting types of soil[J]. Communications in Soil Science and Plant Analysis, 2013, 44(14) : 2 095-2106. |
[49] | 范慧娟. 浅议腐植酸肥料在改良土壤及提高肥料利用率中的作用[J]. 中国农业信息, 2014, 26(1):105. |
[50] | 张宏伟, 陈港, 唐爱民, 等. 腐殖酸共聚物改良后土壤中磷肥有效性的研究[J]. 土壤肥料, 2002, 39(6):39-40. |
[51] | 孙焕顷, 苏长青. 腐植酸钾对黄冠梨土壤肥力的影响[J]. 北方园艺, 2009, 33(7):100-101. |
[52] | 陈士更. 腐植酸土壤调理剂研制及其在酸化果园土壤上的应用[D]. 泰安:山东农业大学, 2019. |
[53] | 张舒予. 腐植酸与土壤调理剂配伍对土壤pH及养分有效性的影响研究[D]. 合肥:安徽农业大学, 2018. |
[54] | 刘伟, 李文平, 陈祥福, 等. 含腐植酸土壤调理剂对酸性土壤改良的应用效果[J]. 腐植酸, 2020, 42(4):44-47. |
[55] | 孙在金. 脱硫石膏与腐植酸改良滨海盐碱土的效应及机理研究[D]. 北京:中国矿业大学, 2013. |
[56] | 凌爱芬. 不同腐殖酸用量对土壤性状及烟叶品质的影响[D]. 郑州:河南农业大学, 2008. |
[57] | LOVELY D, WOODARD J C, PHILIPS E J P, et al. Humic substances as electron acceptors for microbial respiration[J]. Nature, 1996(58):133-144. |
[58] | PUGLISI E, PASCAZIO S, SUCIU N, et al. Rhizosphere microbial diversity as influenced by humic substance amendments and chemical composition of rhizodeposits[J]. Journal of Geochemical Exploration, 2013, 129(Complete):82-94. |
[59] | 马斌, 刘景辉, 张兴隆. 褐煤腐殖酸对旱作燕麦土壤微生物量碳、氮、磷含量及土壤酶活性的影响[J]. 作物杂志, 2015, 31(5):134-140. |
[60] | 刘兰兰, 史春余, 梁太波, 等. 腐植酸肥料对生姜土壤微生物量和酶活性的影响[J]. 生态学报, 2009, 29(11):6 136-6 141. |
[61] | ZHANG L, SUN X Y, TIAN Y. Biochar and humic acid amendments improve the quality of composted green waste as a growth medium for the ornamental plant Calathea insignis[J]. Scientia Horticulturae, 2014, 176:70-78. |
[62] | CARPENTER-BOGGS L, KENNEDY A C, REGANOLD J P. Organic and biodynamic management effects on soil biology[J]. Research Gate, 2000, 64(5):1 651-1 659. |
[63] | 王利宾, 王曰鑫. 腐植酸肥对土壤养分与微生物活性的影响[J]. 腐植酸, 2011, 33(4):6-9. |
[64] | SELLAMUTHU K M, GOVINDASWAMY M. Effect of fertilizer and humic acid on rhizosphere microorganisms and soil enzymes at an early stage of sugarcane growth[J]. Sugar Tech, 2003, 5(4):273-277. |
[65] | 杨云马, 薛世川, 夏风召, 等. 腐植酸复合肥对土壤微生物量的影响[J]. 华北农学报, 2007, 22(suppl2):187-189. |
[66] | TEIXEIRA A F D S, SILVA S H G, CARVALHO T S D, et al. Soil physicochemical properties and terrain information predict soil enzymes activity in phyto physiognomies of the Quadrilátero Ferrífero region in Brazil[J]. Catena, 2020, 199 : 105 083 |
[67] | 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, 47(4):1-4. |
[68] | 贺婧, 钟艳霞, 颜丽. 不同来源腐殖酸对土壤酶活性的影响[J]. 中国农学通报, 2009, 25(24):258-261. |
[1] | WANG Yan, WANG Wang, CAI Jiaxin, ZENG Xin, NI Xinhua, TIAN Jie, TANG Chuang, JING Xiu, ZHOU Miao, WANG Jing, XU Hao, HU Yajie, XING Zhipeng, GUO Baowei, XU Ke, ZHANG Hongcheng. Research Progress on Effects of Nitrogen Fertilizer on Structure and Physicochemical Properties of Rice Starch [J]. China Rice, 2023, 29(4): 1-8. |
[2] | CAO Chunxin, HUANG Hongming, WANG Nuan, LIU Yubing, ZHAO Yongliang, LIU Xinhua. Paddy-upland Rotation Cultivation Technique of “Early Rice - Processing Pepper” [J]. China Rice, 2023, 29(4): 101-103. |
[3] | ZHU Junkai, ZHU Yangang, CAO Jinxia, YANG Dezhen, ZHU Ying, WANG Baohe, ZHANG Yanqiong, YANG Janchun, ZHAO Jun, LIU Xiaobin. Breeding and Application of New High-quality Mid-ripening Japonica Glutinous Rice Variety Jinjingnuo 6288 [J]. China Rice, 2023, 29(4): 104-105. |
[4] | HU Jiangbo, REN Zhengpeng, DING Xiang, WANG Chaoquan, FENG Yang, WANG Xiaojian, ZHANG Xiang, XU Nanfei. Application of Herbicides in Rice Fields and Research Progress on Herbicide-resistant Rice Varieties Breeding [J]. China Rice, 2023, 29(4): 13-19. |
[5] | WANG Yunxiang, XIAN Yunyu, ZHAO Can, WANG Weiling, HUO Zhongyang. Research Progress and Prospect of Slow and Controlled Release Fertilizer Application Technology in Rice [J]. China Rice, 2023, 29(4): 20-26. |
[6] | LI Yixiang, ZHOU Xinqiao, CHEN Dagang, GUO Jie, CHEN Ke, ZHANG Ronjun, RAO Ganshun, LIU Chuanguang, CHEN Youding. Research Progress in Development and Application of High γ-aminobutyric Acid Rice and Its Metric Food [J]. China Rice, 2023, 29(4): 38-44. |
[7] | XUE Lian, DUAN Shengxing, ZHENG Xingfei, YIN Desuo, DONG Hualin, HU Jianlin, WANG Hongbo, ZHA Zhongping, GUO Ying, CAO Peng, XU Deze. Current Situation and Countermeasures of Rice Production in Hubei Province [J]. China Rice, 2023, 29(4): 45-47. |
[8] | WANG Xin, LIU Wei, MA Hongwen, HE Qi, FENG Weidong, ZHANG Yimin, LI Hong, YIN Yanbo. The Course, Problems and Prospects of High-quality Rice Breeding in Ningxia [J]. China Rice, 2023, 29(4): 48-52. |
[9] | SUN Zhiguang, LIU Yan, LI Jingfang, ZHOU Zhenling, XING Yungao, XU Bo, ZHOU Qun, WANG Derong, LU Baiguan, FANG Zhaowei, WANG Baoxiang, XU Dayong. Identification and Evaluation Method for Germinability under Submerged Condition in Rice and Germplasm Screening [J]. China Rice, 2023, 29(4): 53-58. |
[10] | WANG Xingwei, WANG Zhicheng. Effects of Nitrogen Fertilizer Deep Placement Coupled with Straw Incorporation on Leaf Physiological Characteristics, Nitrogen Utilization, and Yield of Rice [J]. China Rice, 2023, 29(4): 59-65. |
[11] | HE Bing, LI Chao, YAN Yongfeng, LIU Yueyue, HE Jingqi, YU Tianhua, WANG Shuai, CHEN Dianyuan, YAN Guangbin. Effects of Rice Straw Returned to the Fields by Water Harrow in Autumn on Soil and Rice Characters [J]. China Rice, 2023, 29(4): 66-71. |
[12] | WEI Liangliang, LIU Shuodan, LI Min, WANG Ying, LI Yanduo, ZHAO Hongbo, Wang Nan. Passivated Effect of Modified Rice Straw Biochar on Cd2+ in Paddy Soil and Rice Plant [J]. China Rice, 2023, 29(4): 72-77. |
[13] | YANG Lifan, TIAN Qinglin, GONG Yurui, LI Zhenyuan, LI Qingmao, LI Qinyan, HUANG Liyu, HU Fengyi, QIN Shiwen. Screening and Identification of Endophytic Bacteria from Oryza minuta and Their Plant Growth-promoting Activities [J]. China Rice, 2023, 29(4): 78-83. |
[14] | DONG Wei, ZHANG Jianping, DENG Wei, XU Yuran, KUI Limei, TU Jian, ZHANG Jianhua, AN Hua, WANG Rui, GU Anyu, ZHANG Jinwen, LU Ying, YANG Liping, GUAN Junjiao, CHEN Yikun, LI Xiaolin. Analysis on Basic Characteristics of Rice Varieties Approved in Yunnan Province from 1983 to 2021 [J]. China Rice, 2023, 29(4): 84-89. |
[15] | LIU Wei, LI Shengnan, SONG Mengqiu, RUAN Shuang, HE Shuihua, XUE Wenxia, LI Hongbin, ZHANG Zhenyu. Current Situation and Development Strategy of Japonica Rice Breeding in China [J]. China Rice, 2023, 29(4): 9-12. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||