|Table of Contents|

Identification of Pepper Anthracnose and Screening of Fungicides Against It in Ninghe of Tianjin

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2020年03
Page:
1-7
Research Field:
Publishing date:

Info

Title:
Identification of Pepper Anthracnose and Screening of Fungicides Against It in Ninghe of Tianjin
Author(s):
HUO JianfeiYAO YurongHAO YongjuanYU JinpingLIU ChunyanWANG Wanli
(Tianjin Institute of Plant Protection,Tianjin 300384)
Keywords:
pepperC.acutatumC.truncatumidentificationscreening of fungicides
PACS:
-
DOI:
10.11937/bfyy.20192149
Abstract:
Pepper infected by Colletotrichum spp.in Ninghe,Tianjin was taken as experimental material,the pathogen by a combination of morphology and ribosomal DNA internal transcribed spacer regin(ITS) was identified,and twelve kinds of fungicides against the disease by plate method in the laboratary were screened.The results showed that the pathogen which infected pepper in Ninghe district was C.acutatum and C.truncatum,which segregation ratio was 0.711∶0.289,respectively.The results of fungicides screening in laboratory indicate,prochloraz,fludioxonil,carbendazim and pyradostrobin had better inhibitory effect on the growth of mycelium of C.acutatum,which EC50 values were 0.022 8,0.123 2,0.361 2,0.716 8 μg·mL-1,respectively.Prochloraz,fludioxonil and carbendazim had better inhibitory effect on the growth of mycelium of C.truncatum,which EC50 values were 0.066 7,0.193 7,0.240 0 μg·mL-1,respectively.Therefore,prochloraz,fludioxonil,carbendazim and pyraclostrobin could be used as chemicals to control the disease.

References:

[1]夏花,朱宏建,周倩,等.湖南芷江辣椒上一种新炭疽病的病原鉴定[J].植物病理学报,2012,42(2):120-125.[2]杨友联.中国贵州、云南、广西炭疽菌属真菌多基因分子系统学研究[D].武汉:华中农业大学,2010.[3]王薇.苹果炭疽叶枯病病原学及苹果炭疽病侵染来源研究[D].杨凌:西北农林科技大学,2017.[4]FARR D F,ROSSMAN A Y.Fungaldatabases,ystematic myeology and microbiology laboratory,ARS,USDA[DB/OL].http://nt.ars-grin.gov/fungaldatabases/,2010-10-20.[5]杨佳文,赵尊练,张管曲,等.陕西线辣椒炭疽病原菌的鉴定及生物学特性研究[J].西北农业学报,2017,26(11):1695-1705.[6]易润华,朱西儒,周而勋.简化CTAB法快速微量提取丝状真菌DNA[J].湛江海洋大学学报,2003,23(6):72-73.[7]NY/T 1156.2-2006.农药室内生物测定试验准则杀菌剂第2部分:抑制病原真菌菌丝生长试验(平皿法)[S].北京:中华人民共和国农业部,2006.[8]陈国庆.中国柑桔炭疽病病原种类及种群遗传多样性研究[D].杭州:浙江大学,2010.[9]张国芝,赵霞,杨海艳,等.四川辣椒炭疽病菌鉴定及育种材料抗性筛选[J].西南农业学报,2013,26(3):1026-1029.[10]杨友联,刘永翔,刘作易.水果采后炭疽病病原鉴定[J].西南农业学报,2014,27(3):1114-1123.[11]高杨杨,禾丽菲,李北兴.山东省辣椒上尖孢炭疽复合种对吡唑醚菌酯的敏感基线及吡唑醚菌酯增效配方筛选[J].农药学学报,2017,19(6):701-707.[12]吴松.泾阳线辣椒炭疽病和叶斑病生物学特性研究及防控药剂筛选[D].杨凌:西北农林科技大学,2018.[13]徐晶.平头炭疽菌对大豆抗感品种的致病差异及其MAPK基因〖STBX〗CtPMK1〖STBZ〗的功能研究[D].南京:南京农业大学,2013.[14]赵胜,杨艳艳,杨中路,等.大豆平头炭疽菌的产孢因素[J].中国油料作物学报,2016,38(3):384-387.[15]刘传德,王培松,王继秋,等.三唑类杀菌剂及其在小麦病害防治中的应用研究进展[J].山东农业大学学报(自然科学版),2005,36(1):157-160.[16]赵金梅,高贵田,谷留杰.中华猕猴桃褐斑病病原鉴定及抑菌药剂筛选[J].中国农业科学,2013,46(23):4916-4925.[17]徐建强,平忠良,马世闯,等.河南省小麦赤霉病菌对咯菌腈的敏感性[J].植物保护学报,2018,45(6):1367-1373.[18]范美娟,戴伟峰,王开峰,等.62.5 g·L-1精甲·咯菌腈悬浮种衣剂拌种防治水稻恶苗病的效果[J].江苏农业科学,2018,46(20):101-103.[19]叶正和,苏贤岩,任学祥,等.氯啶菌酯与多菌灵混配对草莓白粉病的增效作用及田间效果测定[J].农药,2013,52(6):447-448.[20]龚双军,杨立军,向礼波,等.2013年湖北省小麦赤霉病菌对多菌灵和戊唑醇的敏感性[J].农药学学报,2014,16(5):610-613.[21]徐汉虹.植物化学保护[M].4版.北京:中国农业出版社,2010.[22]PATEL J S,GUDMESTAD N C,MEINHARDT S,et al.Pyraclostrobin sensitivity of baseline and fungicide exposed isolates of Pyrenophora tritici-repentis[J].Crop Protection,2012,34:37-41.[23]YPEMA H L,GOLD R E.Kresoxim-methyl modification of a natural occurring compound to produce a new fungicide[J].Plant Disease,1999,83:4-19.[24]LOTHAR E,BYRON QUINN,YONG F L,et al.Crystallographic studies of quinol oxidation site inhibitors:A modified classification of inhibitors for the cytochrome bc1 complex[J].Journal of Molecular Biology,2004,341:281-302.[25]刘慧.42.8%氟吡菌酰胺·肟菌酯悬浮剂防治草莓炭疽病药效研究[J].现代农业科技,2015(5):139-143.

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Last Update: 2020-02-26