首页> 美国卫生研究院文献>Brazilian Journal of Microbiology >Winter prevalence of obligate aphid pathogen Pandora neoaphidis mycosis in the host Myzus persicae populations in southern China: modeling description and biocontrol implication
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Winter prevalence of obligate aphid pathogen Pandora neoaphidis mycosis in the host Myzus persicae populations in southern China: modeling description and biocontrol implication

机译:中国南方的桃蚜寄主种群中专性蚜虫病原体新蚜虫真菌病的冬季流行:模型描述和生物防治意义

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摘要

Pandora neoaphidis overwintering had been investigated by monitoring its prevalence in Myzus persicae populations in open fields. Cabbage plants in field plots were weekly taken after mycosis initiation, to count and examine the living and dead aphids infected by P. neoaphidis . Based on the field data, infection levels ( I) varied with field temperature (T), relative humidity (RH) and aphid count (numbers of living aphids per plant, N) over days ( D), fitting well to the modified logistic equation I =0.91/[1+exp(8.5+(2.0 H T H RH-20.2 NI 0) D)] ( r 2=0.897), where H T indicated daily hours of low temperature (<4°C), H RH daily hours of high air humidity (>90% RH) and I 0 primary infection level. The model demonstrated the abiotic and biotic factors influencing P. neoaphidis mycosis development in winter, and also verifies the fungal overwintering by infecting available host aphids without a resting stage. Ultimately, P. neoaphidis mycosis reduced 81.4% of aphid populations, presenting great potential for biocontrol.
机译:潘多拉新蚜虫越冬已通过监测其在田间桃蚜种群中的流行情况进行了调查。真菌病发作后,每周在田间地上种植卷心菜,以计数和检查感染新蚜虫的活蚜和死蚜。根据田间数据,感染水平(I)在几天(D)内随田间温度(T),相对湿度(RH)和蚜虫计数(每株活蚜虫的数量,N)而变化,与修正的逻辑方程很吻合I = 0.91 / [1 + exp(8.5+(2.0 HTH RH-20.2 NI 0)D)](r 2 = 0.897),其中HT表示每天的低温小时(<4°C ),每天H RH高空气湿度(> 90%RH)和I 0原发感染水平。该模型证明了冬季会影响新蚜虫真菌病发展的非生物和生物因素,并且还可以通过感染没有休息期的可用宿主蚜虫来验证真菌越冬。最终, P。新蚜虫病使蚜虫种群减少了81.4%,具有很大的生物防治潜力。

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