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杨迎青 1, 兰 波 1, 孙 强 2, 陈洪凡 1, 陈 建 1, 余 建 1, 3, 李湘民 1*.6种杀菌剂对芦笋茎枯病的防治效果[J].植物保护,2018,44(4):217-220.
6种杀菌剂对芦笋茎枯病的防治效果
Control effects of six fungicides on asparagus stem blight disease
投稿时间:2017-08-29  修订日期:2018-01-24
DOI:10.16688/j.zwbh.2017330
中文关键词:  芦笋茎枯病  杀菌剂  病情指数  田间防效  增产率
英文关键词:asparagus stem blight  fungicide  disease index  control effect  production-increasing rate
基金项目:国家自然科学基金(31460456); 江西省科技计划农业领域重点项目(20151BBF60067); 江西省杰出青年人才资助计划(20171BCB23081)
作者单位
杨迎青 1, 兰 波 1, 孙 强 2, 陈洪凡 1, 陈 建 1, 余 建 1, 3, 李湘民 1* 1. 江西省农业科学院植物保护研究所, 南昌 330200
2. 黄岛出入境检验检疫局食品处, 青岛 266555
3. 江西农业大学生物工程学院, 南昌 330045 
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中文摘要:
      芦笋茎枯病是芦笋生产上的毁灭性病害, 近年来其发生程度有加重的趋势。为有效地防治该病, 对6种杀菌剂进行了田间药效试验。结果表明:25%吡唑醚菌酯乳油的防效最好, 对芦笋茎枯病防效为64.30%~74.85%; 30%苯醚甲环唑乳油和20%嘧菌酯水分散粒剂次之, 其防效分别为61.90%~72.66%和61.12~71.25%; 30%醚菌酯悬浮剂的防治效果相对较好, 防效为57.07%~67.37%。70%甲基硫菌灵可湿性粉剂和50%多菌灵可湿性粉剂的防效较差, 其防效分别为24.48%~34.99%和22.37%~29.85%。25%吡唑醚菌酯乳油的增产率最高, 有效成分用量300、400、500 g/hm2的增产率分别为19.84%、22.08%、23.66%。30%苯醚甲环唑乳油次之, 有效成分用量300、400、500 g/hm2的增产率分别为19.32%、20.77%、22.14%。20%嘧菌酯水分散粒剂和30%醚菌酯悬浮剂的增产率相对较高, 为15%~20%。对照药剂70%甲基硫菌灵可湿性粉剂和50%多菌灵可湿性粉剂的增产率均在10%左右。
英文摘要:
      Asparagus stem blight is a worldwide devastating disease. To control this disease effectively, 6 fungicides, including pyraclostrobin 25% EC, difenoconazole 30% EC, azoxystrobin 20% WG, kresoxim-methyl 30% SC, thiophanate-methyl 70% WP and carbendazim 50% WP, were chosen to determine their control effects in the fields. The results revealed the effect of pyraclostrobin 25% EC was the best, with the efficacy between 64.30% and 74.85%, followed by difenoconazole 30% EC and azoxystrobin 20% WG, with the efficacies of 61.90%-72.66% and 61.12%-71.25%, respectively. The effect of kresoxim-methyl 30% SC was relatively better, with the efficacy between 57.07% and 67.37%. The control effects of thiophanate-methyl 70% WP and 50% carbendazim WP were the weakest, with the efficacies of 24.48%-34.99% and 22.37%-29.85%, respectively. The production-increasing rate of pyraclostrobin 25% EC was the highest, with the rates of 19.84%, 22.08% and 23.66% when the dosage of effective constituents were 300 g/hm2, 400 g/hm2 and 500 g/hm2, respectively. The production-increasing rate of difenoconazole 30% EC took the second place, with the rates of 19.32%, 20.77% and 22.14% when the dosage of effective constituents were 300 g/hm2, 400 g/hm2 and 500 g/hm2, respectively. The production-increasing rates of azoxystrobin 20% WG, kresoxim-methyl 30% SC were relatively higher, with a rate between 15% and 20%, while those of thiophanate-methyl 70% WP and carbendazim 50% WP were lower, with the rates around 10%.
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