LIANG Mengdi,HUANG Qian,YU Shijia,et al.Research Progress on Eggplant Resistance to Bacterial Wilt Disease[J].Northern Horticulture,2024,(6):123-128.[doi:10.11937/bfyy.20233059]
茄子抗青枯病研究进展
- Title:
- Research Progress on Eggplant Resistance to Bacterial Wilt Disease
- 文章编号:
- 1001-0009(2024)06-0123-06
- 分类号:
- S 436.411
- 文献标志码:
- A
- 摘要:
- 茄子青枯病是一种全球性病害,严重危害茄子生产。近年来,国内外学者对该病进行了广泛研究,并取得一定进展。该研究对茄子青枯病的研究进展进行了综述,主要包括青枯病病原菌的分类和侵染过程、茄子抗青枯病的遗传规律、茄子抗青枯病基因及青枯病的综合防治等方面。
- Abstract:
- Eggplant bacterial wilt is a globally widespread disease,severely threatens eggplant production.In recent years,scholars from both domestic and foreign origins have extensively studied this disease and made certain progress.This study provided an overview of the research progress on eggplant bacterial wilt,focusing on the classification and infection process of the bacterial pathogen,the genetic regulation of eggplant resistance to bacterial wilt,the genes associated with eggplant resistance,and the comprehensive control strategies against bacterial wilt.
参考文献/References:
[1]VALERGA L,QUINTERO-RUIZ N A,CONCELLN A,et al.Technological and nutritional characterization of wheat breads added with eggplant flour:Dependence on the level of flour and the size of fruit[J].Journal of Food Science and Technology,2020,57(1):182-190.[2]WEESE T L,BOHS L.Eggplant origins:Out of Africa,into the orient[J].TAXON,2010,59(1):49-56.[3]GRBZ N,ULUISIK S,FRARY A,et al.Health benefits and bioactive compounds of eggplant[J].Food Chemistry,2018,268:602-610.[4]李涛,宫超,衡周,等.茄子青枯病抗性遗传分析及基于Super-BSA的QTL定位[C].郑州:中国园艺学会2019年学术年会暨成立90周年纪念大会,2019.[5]CHEN B,LONG Q S,MENG J,et al.Target discovery in Ralstonia solanacearum through an activity-based protein profiling technique based on bioactive oxadiazole sulfones[J].Journal of Agricultural and Food Chemistry,2020,68(8):2340-2346.[6]CHEN N,WU S,FU J,et al.Overexpression of the eggplant (Solanum melongena) NAC family transcription factor SmNAC suppresses resistance to bacterial wilt[J].Scientific Reports,2016(6):31568.[7]HAYWARD A C.Biology and epidemiology of bacterial wilt caused by Pseudomonas solanacearum[J].Annual Review of Phytopathology,1991(29):65-87.[8]SALANOUBAT M,GENIN S,ARTIGUENAVE F,et al.Genome sequence of the plant pathogen Ralstonia solanacearum[J].Nature,2002,415:497-502.[9]CHEN S,QI G,MA G,et al.Biochar amendment controlled bacterial wilt through changing soil chemical properties and microbial community[J].Microbiological Research,2020,231:126373.[10]JIANG G,WEI Z,XU J,et al.Bacterial wilt in China:history,current status,and future perspectives[J].Frontiers in Plant Science,2017(8):1549.[11]张培超,张恒.高山辣椒病虫害防治[J].农业与技术,2019,39(24):97-99.[12]GENIN S.Molecular traits controlling host range and adaptation to plants in Ralstonia solanacearum[J].The New Phytologist,2010,187(4):920-928.[13]王兆祥,李继东,刘永光.番茄青枯病的发生及综合防治综述[J].中国果菜,2007,27(4):36-37.[14]HORITA M,TSUCHIYA K,SUGA Y,et al.Current classification of Ralstonia solanacearum and genetic diversity of the strains in Japan[J].Journal of General Plant Pathology,2014,80(6):455-465.[15]MANSFIELD J,GENIN S,MAGORI S,et al.Top 10 plant pathogenic bacteria in molecular plant pathology[J].Molecular Plant Pathology,2012,13(6):614-629.[16]黄忠阳.南京地区茄子青枯病发病规律与综合防治[J].上海蔬菜,2006(3):63-64.[17]李海涛,邹庆道,吕书文,等.茄子对青枯病的抗性遗传研究 Ⅰ.茄子抗病材料WCGR112-8的遗传分析[J].辽宁农业科学,2002(2):1-5.[18]杨建国,皮向红,陈惠明,等.茄子ER300抗青枯病遗传及在育种中的应用[J].湖南农业大学学报(自然科学版),2006,32(3):277-279.[19]曹必好,王勇,雷建军,等.茄子抗青枯病遗传规律及分子标记筛选研究[C].上海:中国园艺学会第八届青年学术讨论会暨现代园艺论坛,2008.[20]AJJAPPALAVARA P S,DHARMATTI P,SALIMATH P,et al.Genetics of bacterial wilt resistance in brinjal[J].Karnataka Journal of Agricultural Sciences,2010,21(3):424-427.[21]PANDIYARAJ P,SINGH T H,REDDY K M,et al.Molecular markers linked to bacterial wilt (Ralstonia solanacearum) resistance gene loci in eggplant (Solanum melongena L.)[J].Crop Protection,2019,124:104822.[22]孙保娟,廖毅,李植良,等.与茄子青枯病抗性相关基因连锁的AFLP标记研究[J].分子植物育种,2008,6(5):929-934.[23]BAINSLA N K,SINGH S,SINGH P K,et al.Genetic behaviour of bacterial wilt resistance in brinjal (Solanum melongena L.) in tropics of andaman and Nicobar Islands of India[J].American Journal of Plant Sciences,2016,7(2):333-338.[24]田时炳,王永清,罗章勇,等.茄子对青枯病的抗性遗传分析[J].西南农业学报,2007,20(4):642-645.[25]于文进,韦慧明,孙宁静,等.茄子砧木种质对青枯病和黄萎病的抗性遗传分析[C].成都:中国园艺学会2013年学术年会,2013.[26]梁梦迪,彭杰椿,张永楠,等.茄子抗青枯病的遗传分析[J].分子植物育种,2023,21(3):876-882.[27]CHAUDHARY D R.Inheritance of resistance to bacterial wilt (Ralstonia solanacearum E.F.Smith) in eggplant[J].Haryana Journal of Horticultural Sciences,2000(29):89-90.[28]封林林,屈冬玉,金黎平,等.茄子青枯病抗性的遗传分析[J].园艺学报,2003,30(2):163-166.[29]李猛,王永清,田时炳,等.茄子青枯病抗性基因的遗传分析及其AFLP标记[J].园艺学报,2006,33(4):869-872.[30]HIRAKAWA H,SHIRASAWA K,MIYATAKE K,et al.Draft genome sequence of eggplant (Solanum melongena L.):the representative Solanum species indigenous to the old world[J].DNA Research,2014,21(6):649-660.[31]QIU Z,YAN S,XIA B,et al.The eggplant transcription factor MYB44 enhances resistance to bacterial wilt by activating the expression of spermidine synthase[J].Journal of Experimental Botany,2019,70(19):5343-5354.[32]LEBEAU A,GOUY M,DAUNAY M C,et al.Genetic mapping of a major dominant gene for resistance to Ralstonia solanacearum in eggplant[J].Theoretical and Applied Genetics,2013,126(1):143-158.[33]SALGON S,JOURDA C,SAUVAGE C,et al.Eggplant resistance to the Ralstonia solanacearum species complex involves both broad-spectrum and strain-specific quantitative trait loci[J].Frontiers in Plant Science,2017(8):828.[34]SALGON S,RAYNAL M,LEBON S,et al.Genotyping by sequencing highlights a polygenic resistance to Ralstonia pseudosolanacearum in eggplant (Solanum melongena L.)[J].International Journal of Molecular Sciences,2018,19(2):357.[35]李可,肖熙鸥,林文秋,等.EDS1正调控茄子抗青枯病反应[J].热带作物学报,2018,39(2):332-337.[36]PATIL V U,GOPAL J,SINGH B P.Improvement for bacterial wilt resistance in potato by conventional and biotechnological approaches[J].Agricultural Research,2012,1(4):299-316.[37]余小漫,何自福,罗学梅,等.广东主要茄子品种对青枯病的抗性鉴定与评价[J].广东农业科学,2011,38(14):72-73,85.[38]RAO M V,SOHI H S,VIJAI O P.Reaction of aome varieties of brinjal to Pseudomomas solanacerarun[J].Vegetable Science,1976,3(1):61.[39]LI H P.Evaluation of resistance to bacterial wilt in eggplant[J].Plant Disease,1988,72(5):437.[40]SADASHIVA A T,MADHAVI R K,DESHPANDE A A,et al.Yield performance of eggplant lines resistant to bacterial wilt[J].Capsicum&Eggplant Newsletter,1994(13):104-106.[41]李兆龙,曹翠文,乔燕春,等.茄子抗青枯病研究现状与展望[J].热带农业科学,2015,35(2):74-77,85.[42]刘富中,连勇,冯东昕,等.茄子种质资源抗青枯病的鉴定与评价[J].植物遗传资源学报,2005,6(4):381-385.[43]李涛,李植良,夏碧波,等.茄子创新资源的耐热及抗青枯病评价研究[J].中国农学通报,2017,33(36):72-77.[44]赵国丽,陈建华,姜国霞,等.采用离子辐射育成茄子新品种平茄7号[J].中国蔬菜,2018(2):79-81.[45]杨爱国,朱永,霍红,等.高产抗病茄子新品种‘洛茄5号’的选育[J].中国瓜菜,2019,32(11):80-82,3.[46]李植良,黎振兴,李涛,等.茄子新品种‘农夫3号’[J].园艺学报,2019,46(S2):2794-2795.[47]伍壮生,吴月燕,王小娟,等.樱桃番茄抗青枯病砧木新品种海茄砧1号的选育[J].中国蔬菜,2019(12):78-81.[48]曹翠文,林鉴荣,李莲芳.优质茄子新品种“翡翠绿2号”的选育[J].蔬菜,2020(2):76-79.[49]傅敏杰,朱志玉,朱月清,等.UV-B补光对大棚茄子果实农艺性状和抗病性的影响[J].北方园艺,2022(1):65-71.[50]朱耿建,刘永,张恒利.保护地茄子青枯病症状识别与综合防治[J].吉林蔬菜,2011(1):34-35.[51]柴海燕.茄子青枯病的发病症状及防治措施[J].上海蔬菜,2018(3):62,68.[52]刘瑶.茄子病虫害综合防治措施[J].吉林蔬菜,2019(2):43.[53]刘俊平.无致病力hrp-突变体防治番茄青枯病作用研究[D].北京:中国农业科学院,2006.[54]SADDLER G S.Management of bacterial wilt disease[J].Bacterial Wilt Disease & the Species Complex,2005,56:121-132.
相似文献/References:
[1]赵静,夏海波,李艳青,等.根际促生菌YHN对番茄和茄子的促生作用研究[J].北方园艺,2014,38(04):30.
ZHAO Jing,XIA Hai-bo,LI Yan-qing,et al.Study on Growth-promoting Effect of Plant Growth-promoting Rhizobacteria Strain YHN on?the Seedling of Tomato and Eggplant[J].Northern Horticulture,2014,38(6):30.
[2]王铁良,陈思,毛丽珍.渗灌条件下土壤水分对温室秋冬茬茄子生长效应[J].北方园艺,2014,38(04):45.
WANG Tie-liang,CHEN Si,MAO Li-zhen.Effect of Soil Moisture on Growth of Greenhouse Eggplant With[J].Northern Horticulture,2014,38(6):45.
[3]樊绍翥,谷晓华,安凤霞.茄子耐热性状正态性遗传测验分析[J].北方园艺,2013,37(17):37.
FAN Shao-zhu,GU Xiao-hua,AN Feng-xia.Normality Hereditary Testing Analysis of Thermal Tolerance Traits with Eggplant[J].Northern Horticulture,2013,37(6):37.
[4]熊仕俊,孙成龙,施闯,等.番茄青枯病菌拮抗放线菌的筛选及鉴定[J].北方园艺,2014,38(05):114.
XIONG Shi-jun,SUN Cheng-long,SHI Chuang,et al.Screening and Identifying of Antagonistic Actinomycetes Against Ralstonia solancearum[J].Northern Horticulture,2014,38(6):114.
[5]狄文伟,周 彤,赵 冰.不同引发剂对茄子种子引发效果的研究[J].北方园艺,2014,38(09):12.
DI Wen-wei,ZHOU Tong,ZHAO Bing.Effects of Different Evocating Agent on the Evoked Response of Eggplant Seeds[J].Northern Horticulture,2014,38(6):12.
[6]叶景学,齐义杰,赵超男,等.等渗钠盐胁迫对茄子种子发芽特性的影响[J].北方园艺,2013,37(03):40.
YE Jing-xue,QI Yi-jie,ZHAO Chao-nan,et al.Effect of the Iso-osmotic Sodium Salt Stress on Germinating Characteristic of the Eggplant Seeds[J].Northern Horticulture,2013,37(6):40.
[7]李烨,谢立波,姚建刚,等.沼渣与基质配比对茄子幼苗的影响[J].北方园艺,2012,36(03):28.
LI Ye,XIE Li-bo,YAO Jian-gang,et al.Effects of Different Substrate with Biogas Residue Proportion on Seedlings of Eggplant[J].Northern Horticulture,2012,36(6):28.
[8]司鹏飞,詹德江,李广,等.设施条件下不同磷肥水平对茄子果实养分含量的影响[J].北方园艺,2012,36(03):151.
SI Peng-fei,ZHAN De-jiang,LI Guang,et al.Effects of Different Phosphate Levels on Nutrient Content of Eggplant Fruits in Greenhouse[J].Northern Horticulture,2012,36(6):151.
[9]朱丽梅,崔群香,曹嘉懿,等.不同茄子品种对灰霉病的室内抗病性鉴定[J].北方园艺,2012,36(22):135.
ZHU Li-mei,CUI Qun-xiang,CAO Jia-yi,et al.The Identification of Disease Resistance of Different Eggplant Varieties to Botrytis cinerea[J].Northern Horticulture,2012,36(6):135.
[10]王冰林,韩太利,李媛媛.根结线虫侵染对茄子苗期生理生化反应的影响[J].北方园艺,2012,36(23):139.
WANG Bing-lin,HAN Tai-li,LI Yuan-yuan.Effects of Meloidogyne incognita Infection on Physiology and Biochemistry of Eggplant Seedling Leaves[J].Northern Horticulture,2012,36(6):139.
备注/Memo
第一作者简介:梁梦迪(1995-),女,硕士,研究实习员,现主要从事园艺作物遗传育种及其配套栽培技术等研究工作。E-mail:1092930308@qq.com.责任作者:黄浅(1989-),女,硕士,副研究员,现主要从事园艺作物遗传育种及其配套栽培技术等研究工作。E-mail:hqlzl2008@126.com.收稿日期:2023-09-05