Citrus Research International, Department of Horticultural Science, Stellenbosch University, Victoria Street, Stellenbosch, South Africa.
Citrus Research International, Walmer, Port Elizabeth, South Africa.
J Econ Entomol. 2020 Apr 6;113(2):700-711. doi: 10.1093/jee/toz336.
A systems approach was previously developed for mitigating phytosanitary risk of Thaumatotibia leucotreta (Meyrick) in citrus fruit exported from South Africa, as an alternative to a standalone cold disinfestation treatment. The present study first tested the original systems approach by applying it on a semicommercial scale in 10 Nova mandarin orchards. Fruit were inspected at points in the production, packing, and simulated shipping process, to assess performance of the systems approach. Additional data were obtained from 17 Valencia orange orchards and six packinghouses. In the second part of this study, the systems approach was accordingly revised and improved, consisting of three measures: 1) preharvest controls and measurements and postpicking sampling, inspection, and packinghouse procedures; 2) postpacking sampling and inspection; and 3) shipping conditions. The model quantifying the effectiveness of the systems approach was improved by correcting errors in the original version, updating parameter values and adding a component that provides for comparison with the risk mitigation provided by a standalone disinfestation treatment. Consequently, the maximum potential proportion of fruit that may be infested with live T. leucotreta after application of the improved systems approach is no greater than the proportion of fruit that may be infested after application of a Probit 9 efficacy postharvest disinfestation treatment to fruit with a 2% pretreatment infestation. The probability of a mating pair surviving is also determined. The model enables a priori determination of the required threshold levels for any of the three measures, based on quantification of the other two measures.
先前开发了一种系统方法来减轻南非出口柑橘果实中桔潜叶甲(Meyrick)的植物检疫风险,作为单独冷消毒处理的替代方法。本研究首先在 10 个Nova 橘园进行半商业规模的原系统方法测试。在生产、包装和模拟运输过程中的各个点检查果实,以评估系统方法的性能。还从 17 个 Valencia 橘园和 6 个包装厂获得了额外的数据。在本研究的第二部分,相应地修改和改进了系统方法,包括三个措施:1)收获前控制和测量以及采摘后的抽样、检查和包装厂程序;2)包装后抽样和检查;3)运输条件。通过纠正原始版本中的错误、更新参数值并添加一个组件来比较与单独消毒处理提供的风险减轻程度,改进了量化系统方法有效性的模型。因此,应用改进后的系统方法后,可能受到活桔潜叶甲侵染的果实的最大潜在比例不超过应用 Probit 9 功效收获后消毒处理对预处理感染率为 2%的果实后可能受到感染的果实比例。还确定了一对交配个体存活的概率。该模型能够根据对其他两个措施的量化,预先确定任何三个措施中的所需阈值水平。