异虫康唑对南方主要梨种植区核桃炭疽病的敏感性

Shen Liang, MA Yuxuan, Fu Min, H. Ni, Wang Guoping, Safety Control in Hubei
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引用次数: 0

摘要

本研究测定了不同发育期异丙康唑对核桃炭疽病菌的毒力及室内防治效果。建立了华南地区(湖北、安徽、江西、江苏、浙江、福建)梨主要产区果霉对异虫康唑的敏感基线。采用孢子发芽率法测定了异丙唑处理的6株代表性菌株的分生孢子萌发率和芽管伸长。并以离体梨叶为实验材料,对其室内药效进行了试验。采用菌丝生长速率法测定了120株果霉对异苯康唑的敏感性。结果表明,二苯醚康唑对菌丝生长和胚管伸长具有较高的抑制活性。而对果霉分生孢子萌发的抑制作用较弱,平均EC50值分别为(0.33±0.03)μg/mL、(2.61±0.26)μg/mL和(29.87±1.31)μg/mL。160 μg/mL双苯醚康唑对梨炭疽病的保护作用为92%,治疗作用为79%。多菌灵浓度为1 000 μg/mL,分别为51%和23%。来自南方梨主产区的120株对异虫康唑敏感,EC50值在0.27 ~ 1.12 μg/mL之间。EC50值的频率曲线为连续单峰型,服从正偏度分布。因此,平均EC50值(0.59±0.02)μg/mL可作为果霉对异苯康唑的基线敏感性。本研究为评价和监测果霉对异虫康唑的田间抗性奠定了基础,为该杀菌剂在梨产区防治梨炭疽病的应用提供了理论依据。
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Sensitivity of difenoconazole to Colletotrichum fructicola at major pear cultivation areas in South China
In this work, the toxicity of difenoconazole to Colletotrichum fructicola at different development stages and its indoor control efficacy were determined. The sensitive baseline of C.fructicola to difenoconazole at major pear cultivation areas in South China(Hubei, Anhui, Jiangxi,Jiangsu, Zhejiang and Fujian Province) was established. The conidia germination and germ tube elongation of six representative strains treated by difenoconazole were determined by spore germination rate method. And its indoor efficacy was tested using detached pear leaves. The sensitivity of 120 strains of C. fructicola to difenoconazole was determined by mycelial growth rate method. The results indicated that difenoconazole had high inhibitory activities against mycelial growth and germ tube elongation. However, the inhibition against conidia germination of C. fructicola was weak, with the average EC50 values of(0.33 ± 0.03) μg/mL,(2.61 ± 0.26) μg/mL and(29.87 ± 1.31) μg/mL,respectively. The protective and curative effects of 160 μg/mL difenoconazole to pear anthracnose were92% and 79%, respectively. And those of 1 000 μg/mL carbendazim were 51% and 23%, respectively.120 strains from major pear cultivation areas in South China were sensitive to difenoconazole, and the EC50 values were in the range of 0.27-1.12 μg/mL. The frequency curves of EC50 value was continuous and unimodal, and following the positive skewness distribution. Hence, the mean EC50 value(0.59 ±0.02) μg/mL could be recognized as baseline sensitivities of C. fructicola to difenoconazole. The study laid the foundation for the evaluation and monitoring of the field resistance of C. fructicola to the difenoconazole, and provided a theoretical basis for the application of this fungicide to control pear anthracnose in the pear cultivation area.
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Sensitivity of difenoconazole to Colletotrichum fructicola at major pear cultivation areas in South China Research progress on insecticides resistance in fall armyworm, Spodoptera frugiperda
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