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Sources and seasonal dynamics of Alternaria inoculum associated with leaf blotch and fruit spot of apples.

机译:苹果黑斑病菌的来源和季节性动态与苹果的叶片斑点和果斑有关。

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摘要

Alternaria leaf blotch and fruit spot caused by Alternaria spp. cause annual losses to the Australian apple industry. Control options are limited, mainly due to a lack of understanding of the disease cycle. Therefore, this study aimed to determine potential sources of Alternaria spp. inoculum in the orchard and examine their relative contribution throughout the production season. Leaf residue from the orchard floor, canopy leaves, twigs and buds were collected monthly from three apple orchards for two years and examined for the number of spores on their surface. In addition, the effects of climatic factors on spore production dynamics in each plant part were examined. Although all four plant parts tested contributed to the Alternaria inoculum in the orchard, significant higher numbers of spores were obtained from leaf residue than the other plant parts supporting the hypothesis that overwintering of Alternaria spp. occurred mainly in leaf residue and minimally on twigs and buds. The most significant period of spore production on leaf residue occurred from dormancy until bloom and on canopy leaves and twigs during the fruit growth stage. Temperature was the single most significant factor influencing the amount of Alternaria inoculum and rainfall and relative humidity showed strong associations with temperature influencing the spore production dynamics in Australian orchards. The practical implications of this study include the eradication of leaf residue from the orchard floor and sanitation of the canopy after harvest to remove residual spores from the trees.
机译:链格孢属引起的链格孢属叶片斑点和果实斑点。每年给澳大利亚苹果产业造成损失。控制选择有限,主要是由于对疾病周期缺乏了解。因此,本研究旨在确定链格孢菌的潜在来源。在果园接种,并检查它们在整个生产季节中的相对贡献。每月从三个苹果园收集果园地面,树冠叶,嫩枝和芽上的叶渣,为期两年,并检查其表面的孢子数量。此外,还研究了气候因素对植物各部分孢子生产动态的影响。尽管测试的所有四个植物部位都对果园中的链格孢菌有所贡献,但从叶片残留物中获得的孢子数量明显高于其他植物部位,这支持了链格孢菌越冬的假说。主要发生在叶片残留物中,很少出现在树枝和芽上。在果实生长阶段,从叶片休眠到开花到树冠叶和嫩枝上,在叶片残留物上产生孢子的最重要时期。温度是影响链球菌接种量的唯一最重要的因素,降雨和相对湿度与温度影响澳大利亚果园孢子生产动态密切相关。这项研究的实际意义包括根除果园地板上的叶子残留物,以及在采伐后对树冠进行卫生处理以去除树木上的残留孢子。

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