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2026, 10, v.54 9-12+21
Research Proceeding and Prospects of Sweet Potato Re-planting Problem in China
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DOI:
Received:   2025-10-28
Received Year:   2025
Revised:   2025-12-05
Accepted:   2025-12-09
Accepted Year:   2025
Review Duration(Year):   1
Published:   2026-05-28
Publication Date:   2026-05-28
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Abstract:

Sweet potato is a globally important food crop.However, with the continuous increase in the multi-cropping index of land, the re-planting problem of sweet potato has become increasingly prominent, becoming a key factor restricting the development of the industry.Relevant research also faces many challenges.Currently, domestic research on the re-planting problem of sweet potato mainly focuses on three aspects: soil physical and chemical property deterioration, microbial ecological imbalance, and self-toxic accumulation.No method has been found to completely eliminate the re-planting problem, but some techniques can effectively alleviate their negative impacts.This article systematically reviews the research progress on the re-planting problem of sweet potato, and the main contents include the following three aspects: first, analyze the causes and specific hazards of the re-planting problem of sweet potato; second, explore its the internal mechanism at multiple levels; third, evaluate various control strategies.By reviewing the research achievements and shortcomings, this article aims to provide a reference for overcoming the re-planting problem of sweet potato.

References

[1] 王欣,李强,曹清河,等.中国甘薯产业和种业发展现状与未来展望[J].中国农业科学,2021,54(3):483-492.

[2] 徐梦瑶,赵祥颖,张立鹤,等.甘薯的营养价值及保健作用[J].中国果菜,2017,37(5):17-21,47.

[3] SHUMBUSHA D,SHIMELIS H,LAING M,et al.Assessment of the roles and farmer-preferred traits of sweetpotato in a crop-livestock farming system in Rwanda:Implications for breeding dual-purpose varieties[J].Open Agric,2020,5(1):834-843.

[4] 后猛,张允刚,王欣,等.不同生育期食用型甘薯主要营养成分变化动态[C]//中国作物学会2013年学术年会论文集.2013:71.

[5] XU Y,WANG L X,CHEN C,et al.Virus-free sweet potato industry:Development status and production suggestions[J].Horticulturae,2024,10(9):979.

[6] 张艳,郭书亚,尚赏,等.甘薯/玉米不同间作方式对土壤养分、酶活性及作物产量的影响[J].山西农业科学,2020,48(8):1234-1238.

[7] 唐朝辉,郭峰,张佳蕾,等.甘薯花生轮作对花生生理及产量品质的影响[J].中国油料作物学报,2020,42(6):1002-1009.

[8] 张佳默,徐嘉艺,史江伟,等.闽南沿海地区花生与春薯套作现状及改良措施[J].河南农业,2020(17):13-16.

[9] 段峰,王秀云,高志红.园艺作物连作障碍发生原因及防治措施[J].江西农业学报,2011,23(3):34-39.

[10] 侯乾,王万兴,李广存,等.马铃薯连作障碍研究进展[J].作物杂志,2019(6):1-7.

[11] 陈香,梁林洲,李建刚,等.基于专利数据的连作障碍防治技术发展趋势分析[J].土壤,2021,53(5):969-976.

[12] LIAO P R,LIU P F,WANG Y L,et al.Stereoscopic cultivation of Panax notoginseng:A new approach to overcome the continuous cropping obstacle[J].Ind Crops Prod,2018,126:38-47.

[13] 朱冬梅.设施栽培下草莓养分吸收及肥水耦合技术的研究[D].杭州:浙江大学,2013.

[14] FU C X,MA X,ZHANG L X.Fuzzy-PID strategy based on PSO optimization for pH control in water and fertilizer integration[J].IEEE Access,2022,10:4471-4482.

[15] BECKERS B,OP DE BEECK M,WEYENS N,et al.Structural variability and niche differentiation in the rhizosphere and endosphere bacterial microbiome of field-grown poplar trees[J].Microbiome,2017,5:25.

[16] LEHMANN J,BOSSIO D A,KÖGEL-KNABNER I,et al.The concept and future prospects of soil health[J].Nat Rev Earth Environ,2020,1(10):544-553.

[17] USERO F M,ARMAS C,MORILLO J A,et al.Effects of soil microbial communities associated to different soil fertilization practices on tomato growth in intensive greenhouse agriculture[J].Appl Soil Ecol,2021,162:103896.

[18] MA Z Z,ZHANG X C,ZHENG B Y,et al.Effects of plastic and straw mulching on soil microbial P limitations in maize fields:Dependency on soil organic carbon demonstrated by ecoenzymatic stoichiometry[J].Geoderma,2021,388:114928.

[19] 陈乃实,王振,王丝语,等.大豆在不同轮作体系下的土壤微生物研究概况[J].辽宁农业科学,2021(5):73-76.

[20] 沈建平,舒勤静,李小龙,等.烟稻轮作对烟草根际土壤微生物区系及青枯病发生的影响[J].云南农业科技,2021(6):50-54.

[21] 耿贵,杨瑞瑞,於丽华,等.作物连作障碍研究进展[J].中国农学通报,2019,35(10):36-42.

[22] 翁佩莹,郑红艳.作物连作障碍的成因与机制及其消减策略[J].亚热带植物科学,2020,49(2):157-162.

[23] WANG Y,LIU K T,ZHOU Y Y,et al.Integrated analysis of microRNA and RNA-seq reveals phenolic acid secretion metabolism in continuous cropping of Polygonatum odoratum[J].Plants,2023,12(4):943.

[24] SUI J K,YANG J Y,LI C Y,et al.Effects of a microbial restoration substrate on plant growth and rhizosphere microbial community in a continuous cropping poplar[J].Microorganisms,2023,11(2):486.

[25] SEMMARTIN M,COSENTINO D,POGGIO S L,et al.Soil carbon accumulation in continuous cropping systems of the rolling Pampa (Argentina):The role of crop sequence,cover cropping and agronomic technology[J].Agric Ecosyst Environ,2023,347:108368.

[26] YAO J,WU C Y,FAN L J,et al.Effects of the long-term continuous cropping of Yongfeng yam on the bacterial community and function in the rhizospheric soil[J].Microorganisms,2023,11(2):274.

[27] 李庆凯.玉米//花生缓解花生连作障碍机理研究[D].长沙:湖南农业大学,2020.

[28] LI H Y,LI C H,SONG X,et al.Impacts of continuous and rotational cropping practices on soil chemical properties and microbial communities during peanut cultivation[J].Sci Rep,2022,12:2758.

[29] CHEN W,TENG Y,LI Z G,et al.Mechanisms by which organic fertilizer and effective microbes mitigate peanut continuous cropping yield constraints in a red soil of South China[J].Appl Soil Ecol,2018,128:23-34.

[30] 刘会清,马海莲,左利兵,等.生防菌对连作草莓防病促生效果研究[J].河北北方学院学报(自然科学版),2011,27(1):33-35.

[31] CAO Z Q,FAN T F,BI Y M,et al.Potassium deficiency and root exudates reduce root growth and increase Fusarium oxysporum growth and disease incidence in continuously cultivated strawberry[J].N Z J Crop Hortic Sci,2016,44(1):58-68.

[32] 保丽美.三七连作过程中酚酸和皂苷类自毒物质对其根际土壤微生物的影响研究[D].昆明:昆明理工大学,2022.

[33] BAO L M,LIU Y Y,DING Y F,et al.Interactions between phenolic acids and microorganisms in rhizospheric soil from continuous cropping of Panax notoginseng[J].Front Microbiol,2022,13:791603.

[34] 彭晓辉,黎亮武,欧桂宁,等.连作木薯对土壤理化性质及细菌群落演替的影响[J].南方农业学报,2024,55(4):942-953.

[35] 谢萌蒙,薛彤彤,李冲伟.连作年限对紫苏根际土壤理化性质和植株生长指标的影响[J].黑龙江大学自然科学学报,2024,41(5):572-578.

[36] 许仙菊,姜晓蕊,陈丹艳,等.甘薯连作障碍发生的土壤养分因素探讨[J].中国土壤与肥料,2024(4):102-107.

[37] 高志远,胡亚亚,刘兰服,等.甘薯连作对根际土壤微生物群落结构的影响[J].核农学报,2019,33(6):1248-1255.

[38] 张胜男,武美华,逄玉万,等.连作障碍土壤改良措施研究进展[J].热带农业科学,2024,44(1):96-102.

[39] SUI J,JI C,WANG X,et al.A plant growth-promoting bacterium alters the microbial community of continuous cropping poplar trees’ rhizosphere[J].J Appl Microbiol,2019,126(4):1209-1220.

[40] LI M Y,WANG J L,ZHOU Q,et al.Effects of continuous melon cropping on rhizospheric fungal communities[J].Rhizosphere,2023,27:100726.

[41] ZHAO Q Y,XIONG W,XING Y Z,et al.Long-term coffee monoculture alters soil chemical properties and microbial communities[J].Sci Rep,2018,8:6116.

[42] 王博申,张博源,张迎鋆,等.草莓连作根腐病原菌及根际真菌群落变化多样性研究[J].中国果树,2024(2):82-88.

[43] 罗影,王立光,陈军,等.不同种植模式对甘肃中部高寒区胡麻田土壤酶活性及土壤养分的影响[J].核农学报,2017,31(6):1185-1191.

[44] LIU Z X,LIU J J,YU Z H,et al.Archaeal communities perform an important role in maintaining microbial stability under long term continuous cropping systems[J].Sci Total Environ,2022,838:156413.

[45] 张娟琴,郑宪清,李双喜,等.种养模式下蚯蚓对西瓜连作障碍的影响[J].土壤通报,2023,54(5):1159-1166.

[46] CHEN P,WANG Y Z,LIU Q Z,et al.Phase changes of continuous cropping obstacles in strawberry (Fragaria × Ananassa Duch.) production[J].Appl Soil Ecol,2020,155:103626.

[47] ALI A,GHANI M I,DING H Y,et al.Arbuscular mycorrhizal inoculum coupled with organic substrate induces synergistic effects for soil quality changes,and rhizosphere microbiome structure in long-term monocropped cucumber planted soil[J].Rhizosphere,2021,20:100428.

[48] TAN G,LIU Y J,PENG S G,et al.Soil potentials to resist continuous cropping obstacle:Three field cases[J].Environ Res,2021,200:111319.

[49] JIN X F,YANG X Q,PENG S,et al.Cropping rotation improved the bacterial diversity and N-cycling genes in tobacco fields through a 19-year long-term experiment[J].Appl Soil Ecol,2024,193:105165.

[50] 游春梅,官会林,屠文,等.三七免耕连作土壤障碍因素及其消减措施的理论思考[J].云南师范大学学报(自然科学版),2010,30(3):44-48.

[51] 李世东,缪作清,高卫东.我国农林园艺作物土传病害发生和防治现状及对策分析[J].中国生物防治学报,2011,27(4):433-440.

[52] 高游慧,郑泽慧,张越,等.根际微生态防治作物土传真菌病害的机制研究进展[J].中国农业大学学报,2021,26(6):100-113.

[53] 肖洪环,王婉秋,周娅,等.番茄连作大棚土壤消毒与改良措施研究[J].安徽农业科学,2021,49(6):92-93,174.

[54] LI J,CHENG X Y,CHU G X,et al.Continuous cropping of cut Chrysanthemum reduces rhizospheric soil bacterial community diversity and co-occurrence network complexity[J].Appl Soil Ecol,2023,185:104801.

[55] 谢奎忠,陆立银,罗爱花,等.长期连作对马铃薯土传病害和产量的影响[J].中国种业,2018(2):65-67.

[56] 王柳,张福墁,高丽红.京郊日光温室土壤养分特征的研究[J].中国农业大学学报,2003,8(1):62-66.

[57] 卢维宏,张乃明,包立,等.我国设施栽培连作障碍特征与成因及防治措施的研究进展[J].土壤,2020,52(4):651-658.

[58] 黄锦法,李艾芬,马树国,等.浙江嘉兴保护地土壤障碍的农化性状指标研究[J].土壤通报,2001,32(4):160-162.

[59] 陈青,万学闪,陈国明,等.海南露地樱桃番茄需肥特点研究[J].安徽农业科学,2015,43(33):202-203,225.

[60] 王帆林,王代军,成宏斌,等.怀山药连作地土壤元素的变化和连作障碍解决方法研究[J].安徽农业科学,2024,52(2):161-164.

[61] 吴丹丹.马铃薯连作对土壤盐分积累及其离子组成的影响[D].兰州:甘肃农业大学,2014.

[62] 周倩.连作对线辣椒矿质元素吸收的影响[D].杨凌:西北农林科技大学,2011.

[63] 李荣坦.低磷胁迫对番茄根系生长及根际土壤微生物多样性的影响[D].南宁:广西大学,2016.

[64] GAO L,ZOU G,DU L,et al.Effect of different cultivation practices on soil physical and chemical properties for greenhouse vegetables under long-term continuous cropping[J].Asian Agric Res,2018,10(9):74-81.

[65] 蔡祖聪.我国设施栽培养分管理中待解的科学和技术问题[J].土壤学报,2019,56(1):36-43.

[66] SMITH R G,WARREN N D,CORDEAU S.Are cover crop mixtures better at suppressing weeds than cover crop monocultures?[J].Weed Sci,2020,68(2):186-194.

[67] 刘亚锋.黄瓜连作障碍主要因子关系分析及其作用机理研究[D].郑州:河南农业大学,2006.

[68] 郭文龙.蔬菜温室土壤环境特征变化与施肥问题的研究[D].杨凌:西北农林科技大学,2005.

[69] 周鑫鑫.设施农业肥料高投入对土壤环境次生盐渍化的影响研究[D].上海:东华大学,2013.

[70] 孙光闻,陈日远,刘厚诚.设施蔬菜连作障碍原因及防治措施[J].农业工程学报,2005,21(S2):184-188.

[71] XIE E Z,ZHAO Y C,LI H D,et al.Spatio-temporal changes of cropland soil pH in a rapidly industrializing region in the Yangtze River Delta of China,1980-2015[J].Agric Ecosyst Environ,2019,272:95-104.

[72] 曹舰艇,杨红,彭艳,等.藏东南不同种植年限蔬菜大棚土壤pH及养分的变化特征[J].西北农林科技大学学报(自然科学版),2019,47(8):117-126.

[73] RICE E L.Allelopathy[M].2nd ed.Orlando:Academic Press,1984.

[74] SINGH H P,BATISH D R,KOHLI R K.Autotoxicity:Concept,organisms,and ecological significance[J].Crit Rev Plant Sci,1999,18(6):757-772.

[75] HAN C M,LI C L,YE S P,et al.Autotoxic effects of aqueous extracts of ginger on growth of ginger seedlings and on antioxidant enzymes,membrane permeability and lipid peroxidation in leaves[J].Allelopathy J,2012,30(2):259-270.

[76] LIU W Y,GUO H B,BI K X,et al.Determining why continuous cropping reduces the production of the morel Morchella sextelata[J].Front Microbiol,2022,13:903983.

[77] 蒋俊,郑巧平,刘昆,等.灵芝连作障碍的研究进展[J].食药用菌,2021,29(2):112-115.

[78] 谢星光,陈晏,卜元卿,等.酚酸类物质的化感作用研究进展[J].生态学报,2014,34(22):6417-6428.

[79] BAZIRAMAKENGA R,LEROUX G D,SIMARD R R.Effects of benzoic and cinnamic acids on membrane permeability of soybean roots[J].J Chem Ecol,1995,21(9):1271-1285.

[80] 张晓玲,潘振刚,周晓锋,等.自毒作用与连作障碍[J].土壤通报,2007,38(4):781-784.

[81] MA Z,GUAN Z,LIU Q,et al.Obstacles in continuous cropping:Mechanisms and control measures[J].Adv Agron,2023,179:205-256.

[82] RONCHI A,FOSCARI A,ZAINA G,et al.Self-DNA early exposure in cultivated and weedy Setaria triggers ROS degradation signaling pathways and root growth inhibition[J].Plants,2023,12(6):1288.

[83] IDBELLA M,BONANOMI G,DE FILIPPIS F,et al.Negative plant-soil feedback in Arabidopsis thaliana:Disentangling the effects of soil chemistry,microbiome,and extracellular self-DNA[J].Microbiol Res,2024,281:127634.

[84] MAZZOLENI S,BONANOMI G,INCERTI G,et al.Inhibitory and toxic effects of extracellular self-DNA in litter:A mechanism for negative plant-soil feedbacks?[J].New Phytol,2015,205(3):1195-1210.

[85] LI M J,SUN X,DI D P,et al.Maize AKINβγ proteins interact with P8 of rice black streaked dwarf virus and inhibit viral infection[J].Viruses,2020,12(12):1387.

[86] COLLA P,GILARDI G,GULLINO M L.A review and critical analysis of the European situation of soilborne disease management in the vegetable sector[J].Phytoparasitica,2012,40(5):515-523.

[87] 王长义,郝振萍,陈丹艳,等.设施土壤连作障碍产生原因及防治方法综述[J].江苏农业科学,2020,48(8):1-6.

[88] 郭晓霞.多年免耕轮作对内蒙古黄土高原旱作土壤质量的影响机制[D].呼和浩特:内蒙古农业大学,2012.

[89] 曾莉莎,林威鹏,吕顺,等.香蕉-甘蔗轮作模式防控香蕉枯萎病的持续效果与土壤微生态机理(Ⅰ)[J].中国生态农业学报,2019,27(2):257-266.

[90] 朱盼盼.不同前作下不同肥料对西瓜连作障碍的影响[D].杨凌:西北农林科技大学,2013.

[91] 宫再英.秸秆残体还田对黄瓜幼苗生长及土壤微生物菌群的影响[D].哈尔滨:东北农业大学,2016.

[92] KIBE M,NAIR S K,DAS B,et al.Genetic dissection of resistance to gray leaf spot by combining genome-wide association,linkage mapping,and genomic prediction in tropical maize germplasm[J].Front Plant Sci,2020,11:572027.

[93] 黄靖,刘渝.土壤修复方法浅谈[J].科技视界,2018,8(33):171-173.

Basic Information:

China Classification Code:S531

Citation Information:

[1]CHANG Ming-juan,LU Zhen-hua,DU Yu-bei.Research Proceeding and Prospects of Sweet Potato Re-planting Problem in China[J].Journal of Anhui Agricultural Sciences,2026,54(10):9-12+21.

Fund Information:

河南省县(市)创新引导计划项目(2025年); 开封市科技攻关项目(2302004)

Received:  

2025-10-28

Received Year:  

2025

Revised:  

2025-12-05

Accepted:  

2025-12-09

Accepted Year:  

2025

Review Duration(Year):  

1

Published:  

2026-05-28

Publication Date:  

2026-05-28

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