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Diurnal patterns in dispersal of Monilinia fructigena conidia in an apple orchard in relation to weather factors

机译:苹果园中念珠菌分生孢子散布的昼夜模式与天气因素的关系

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The aerial concentration of Monilinia fructigena (causing brown rot in pome fruit) conidia was sampled during 1997 and 1998 in an apple orchard and was related to weather conditions. The highest hourly concentration measured in 1997 was 230conidia/mpd, in 1998 concentrations were lower than in 1997 throughout the season. In both years concentrations were highest in the afternoon hours. Generalised linear models, employing a Poisson distribution for the spore counts and a logarithm link function, were used to study the relationships between spore counts and lagged weather variables. In 1997 the best fitting model had variables temperature lagged at 100h, an east-west component of wind direction, and wind speed; whereas in 1998 the best model included in addition an effect of relative humidity. Temperature and wind direction had consistent effects on hourly spore counts in both years, but whereas temperature has a biologically relevant effect on spore production and maturation, the effect of wind direction is likely to reflect the purely local effect of orchard layout. Results are compared with observations made in stone fruit orchards where Monilinia laxa and Monilinia fructicola are the predominant species, and differences in epidemiology between these systems are discussed.
机译:1997年和1998年在苹果园采样了莫妮莉亚fructigena(在石榴果实中引起褐色腐烂)分生孢子的空气浓度,这与天气状况有关。 1997年测得的最高每小时浓度为230分生孢子/ mpd,1998年整个季节的浓度均低于1997年。在这两个年份中,下午的浓度都最高。广义线性模型采用了泊松分布的孢子数和对数链接函数,用于研究孢子数与滞后天气变量之间的关系。 1997年,最佳拟合模型的变量温度滞后于100h,是风向的东西向分量和风速。而在1998年,最佳模型还包括相对湿度的影响。在这两个年份中,温度和风向对小时孢子数具有一致的影响,但是温度对孢子的产生和成熟具有生物学相关的影响,风向的影响很可能反映了果园布局的纯粹局部影响。将结果与核果园的观察结果进行比较,在核果园中,以Monilnia laxa和Monilinia fructicola为主要物种,并讨论了这些系统之间的流行病学差异。

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