|Table of Contents|

Toxicity and Field Control Efficiency of Fungicides Against Strawberry Botrytis cinerea(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2016年12
Page:
112-114
Research Field:
Publishing date:

Info

Title:
Toxicity and Field Control Efficiency of Fungicides Against Strawberry Botrytis cinerea
Author(s):
WANG LiZHOU ZengqiangHOU Hui
(Zhengzhou Fruit Research Institute,Chinese Academy of Agricultural Sciences,Zhengzhou,Henan 450009)
Keywords:
fungicidesstrawberry Botrytis cinereatoxicity determinationfield control effect
PACS:
-
DOI:
10.11937/bfyy.201612027
Abstract:
Taking ‘Tian Chali’ strawberry as material,Botrytis cinerea as test fungus,using mycelium growth rate method,the effect of 12 fungicides on Botrytis cinerea was studied.The results showed that 50 g?L-1 hexaconazole SC had the best toxicity against Botrytis cinerea,with the EC50 value 0.051 9 mg?L-1;500 g?L-1 iprodione SC,430 g?L-1 tebuconazole SC and 400 g?L-1 flusilazole EC also could primely inhibit mycelia growth of Botrytis cinerea in laboratory.6 fungicides were screened to test in the field control trial.Field trials showed that the effect of 50 g?L-1 hexaconazole SC against Botrytis cinerea was the best,the control efficiency reached 81.57%-85.42%;500 g?L-1 iprodione SC,430 g?L-1 tebuconazole SC and 400 g?L-1 flusilazole EC also had better control effect,which were more than 74%;the control effect of 10% polyoxin WP and 3% zhongshengmycin WP were more than 65%.

References:

 

[1]高九思,张安全.保护地草莓灰霉病发生规律及综合防治技术[J].现代农业科技,2006(7):85-86.

[2]曾光辉,金秀敏.草莓灰霉病综合防治技术[J].温州农业科技,2009(1):37-38.

[3]WILLIAMSON B,TUDZYNSKI B,TUDZYNSKI P,et al.Botrytis cinerea:the cause of grey mould disease[J].Molecular Plant Pathology,2007,8(5):561-580.

[4]陈宇飞,文景芝,李立军.葡萄灰霉病研究进展[J].东北农业大学学报,2006,37(5):693-699.

[5]杨敬辉,陈宏州,吴琴燕,等.啶酰菌胺对草莓灰霉病菌的毒力测定及田间防治[J].江西农业学报,201022(9):94-95.

[6]袁坤,吴光旭,郭春林,等.艾蒿提取物对草莓灰霉菌的抗菌活性研究[J].安徽农学通报,200612(13):55-56.

[7]刘玉连,焦瑞莲.日光温室草莓灰霉病的无公害防治[J].农业工程技术(温室园艺)2008(9):42-43.

[8]石明旺,孙永叶,贺荣国,等.杀菌剂及其复配对番茄灰霉病菌的毒力测定[J].河南科技学院学报,2007,35(3)54-56.

[9]张传博,易萌,孙云子,等.几种杀菌剂及其复配剂对草莓灰霉病菌的室内毒力测定[J].湖北农业科学,201352(14):3299-3305.

[10]朱春雨,吴文平,张弘,等.农药室内生物测定试验准则(杀菌剂)2部分:抑制病原真菌菌丝生长试验平皿法[S].北京:中国农业出版社,2006.

[11]黄彰欣.植物化学保护实验指导[M].北京:中国农业大学出版社,1993:57.

[12]GB/T 17980.120-2004农药田间药效试验准则(二)第120部分:杀菌剂防治草莓灰霉病[S].北京:中国农业出版社,2006.

[13]唐启义,冯明光.实用统计分析及其 DPS 数据处理系统[M].北京:科学出版社,2002:364-369.

[14]尹大芳.江苏省草莓灰霉病菌抗药性检测及抗性机制的研究[D].杭州:浙江大学,2015.

[15]王梅,尹显慧,龙友华,等.几种杀菌剂对番茄灰霉病菌的毒力及田间防效[J].北方园艺,2015(12):107-110.

[16]胡锐,邢彩云,李丽霞,等.25%己唑醇等药剂防治大棚草莓白粉病药效试验[J].中国果树,2011(4):73.

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Last Update: 2016-07-21