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中国农学通报 ›› 2020, Vol. 36 ›› Issue (28): 124-130.doi: 10.11924/j.issn.1000-6850.casb20191100798

所属专题: 水稻

• 植物保护·农药 • 上一篇    下一篇

氯啶菌酯与氟啶胺混剂对稻瘟病菌的联合毒力及田间防效

陈宏州(), 张建华, 杨红福, 周华飞, 缪康, 束兆林, 姚克兵()   

  1. 江苏丘陵地区镇江农业科学研究所,江苏句容 212400
  • 收稿日期:2019-11-05 修回日期:2020-03-04 出版日期:2020-10-05 发布日期:2020-09-23
  • 通讯作者: 姚克兵
  • 作者简介:陈宏州,男,1984年出生,广西宜州人,副研究员,硕士,主要从事农作物病害抗药性监测与治理研究。通信地址:212400 江苏省句容市弘景路1号 江苏丘陵地区镇江农业科学研究所,Tel:0511-80978079,E-mail:hongzc_2006@126.com
  • 基金资助:
    江苏省农业科技自主创新资金项目“水稻重要病虫害绿色防控技术研发与应用”(CX(18)1003)

Co-toxicity and Field Control Efficacy of Mixtures of Pyrisoxazole and Fluazinam to Blast Fungus Magnaporthe grisea in Rice

Chen Hongzhou(), Zhang Jianhua, Yang Hongfu, Zhou Huafei, Miao Kang, Shu Zhaolin, Yao Kebing()   

  1. Zhenjiang Institute of Agricultural Sciences in Hilly Area of Jiangsu Province, Jurong Jiangsu 212400
  • Received:2019-11-05 Revised:2020-03-04 Online:2020-10-05 Published:2020-09-23
  • Contact: Yao Kebing

摘要:

为探明氯啶菌酯与氟啶胺混剂对稻瘟病菌的联合毒力及田间防效,开发防治稻瘟病的新药剂,采用菌丝生长速率法分别检测氯啶菌酯、氟啶胺及其7种配比混剂对稻瘟病菌的毒力,并进行最佳配比制剂的田间药效试验。结果表明,氯啶菌酯、氟啶胺及其配比为4:1、3:1、2:1、1:1、1:2、1:3和1:4的混剂对稻瘟病菌菌丝生长抑制的EC50分别为1.4417、0.5445、0.2313、0.2693、0.1695、0.4151、0.2796、0.3395和0.3428 μg/mL,7种混剂的增效系数分别为4.69、3.79、5.49、1.90、2.46、1.90和1.81,氯啶菌酯与氟啶胺配比为2:1增效作用最显著。田间药效试验中,各处理对稻穗瘟防效由高到低依次为30%氯啶菌酯?氟啶胺SC 600 mL/hm2、30%氯啶菌酯?氟啶胺SC 450 mL/hm2、30%氯啶菌酯SC 450 mL/hm2、75%三环唑WP 300 g/hm2、30%氯啶菌酯?氟啶胺SC 300 mL/hm2、40%稻瘟灵EC 1200 g/hm2、30%氟啶胺SC 450 mL/hm2,防效分别为88.39%、83.40%、80.22%、72.91%、71.28%、65.09%和60.79%,并且均对水稻生长安全。30%氯啶菌酯?氟啶胺SC 600 mL/hm2对稻瘟病防效优良,对水稻生长安全,可开发为稻瘟病防治药剂。

关键词: 稻瘟病, 氯啶菌酯, 氟啶胺, 联合毒力, 防治效果

Abstract:

To explore a new reagent for controlling rice blast, the co-toxicity and field control efficacy of mixtures of pyrisoxazole and fluazinam on Magnaporthe grisea in rice were measured. The indoor toxicity of pyrisoxazole, fluazinam and their seven mixtures on M. grisea in rice was detected by using mycelium growth rate method, and the field control tests of the optimum formulation to rice panicle blast was conducted. The results of indoor toxicity tests showed that the EC50 values of pyrisoxazole, fluazinam and their seven mixtures at the ratio of 4:1, 3:1, 2:1, 1:1, 1:2, 1:3, and 1:4 on M. grisea were 1.4417, 0.5445, 0.2313, 0.2693, 0.1695, 0.4151, 0.2796, 0.3395 and 0.3428 μg/mL, respectively, and the synergistic coefficients were 4.69, 3.79, 5.49, 1.90, 2.46, 1.90, and 1.81, respectively. The mixture at the ratio of 2:1 had the highest synergism. The results of the field control efficacy showed that the control efficacy was in the following order: 30% pyrisoxazole·fluazinam SC 600 mL/hm 2> 30% pyrisoxazole·fluazinam SC 450 mL/hm2> 30% pyrisoxazole SC 450 mL/hm2> 75% tricyclazole WP 300 g/hm2> 30% pyrisoxazole·fluazinam SC 300 mL/hm2> 40% isoprothiolane EC 1200 mL/hm2> 30% fluazinam SC 450 mL/hm2, and their field control efficacy were 88.39%, 83.40%, 80.22%, 72.91%, 71.28%, 65.09%, and 60.79%, respectively, and all treatments were safe for rice growth. 30% pyrisoxazole·fluazinam SC 600 mL/hm2has excellent control efficacy on rice blast and is safe for rice growth, which can be developed as a rice blast control agent.

Key words: rice blast, pyrisoxazole, fluazinam, co-toxicity, control efficacy

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