Distribution and fixed-precision sampling plans for diamondback moth (Lepidoptera: Plutellidae), on winter-spring cabbage.

IF 2.2 2区 农林科学 Q1 ENTOMOLOGY Journal of Economic Entomology Pub Date : 2023-10-10 DOI:10.1093/jee/toad156
Derick Nomuh Forbanka, Mxolisi Arnold Stemele, Lelethu Unathi-Nkosi Peter Heshula, William Diymba Dzemo, Daniel Ashie Kotey, Amon Taruvinga, Pfarelo Grace Tshivhandekano
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Abstract

The diamondback moth (Plutella xylostella L.) is the most destructive insect pest on cabbage (Brassica oleracea var. capitata L.). Infestation by this pest usually results in the indiscriminate use of insecticides by farmers due to a lack of sampling plans for this pest. Sampling plans for P. xylostella management decisions on winter-spring cabbage in the Eastern Cape Province of South Africa were developed, through population monitoring that comprised weekly counts of immature stages of P. xylostella on 60 plants for 11 wk each during the winter and spring seasons. The mean density-variance relationship was used to describe the distribution of the pest, and number of infested plants was used to develop a fixed-precision sampling plan. All plant growth stages preceding maturation were vulnerable to P. xylostella damage resulting in yield losses. A high aggregation of P. xylostella on cabbage was observed in spring than in winter. The average sample number to estimate P. xylostella density within a 15% standard error of the mean was 35 plants. Furthermore, the estimated plant proportion action threshold (AT) was 51% with density action thresholds of 0.50 and 0.80 for spring and winter, respectively. Fitting P. xylostella cumulative counts in the winter and spring sampling plans resulted in 100% and 45% reduction in insecticide treatments. The similarity of sample size and ATs between both seasons provides evidence that a single sampling plan is practical for all cabbage growing seasons. The similarity of the estimated ATs to those acceptable in established integrated pest management programs indicates reliability.

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冬春甘蓝小菜蛾的分布和固定精度采样计划(鳞翅目:小菜蛾科)。
小菜蛾(Plutella xylostella L.)是甘蓝(Brassica oleracea var.capitata L.)上最具破坏性的害虫。由于缺乏对这种害虫的采样计划,这种害虫的感染通常会导致农民滥用杀虫剂。通过种群监测,制定了南非东开普省冬春甘蓝小菜蛾管理决策的抽样计划,包括在冬春季节对60株小菜蛾的未成熟期进行每周计数,每次11周。平均密度-方差关系用于描述害虫的分布,受感染植物的数量用于制定固定精度的采样计划。成熟前的所有植物生长阶段都容易受到小菜蛾的伤害,从而导致产量损失。小菜蛾在白菜上的聚集度春季高于冬季。在平均值15%的标准误差范围内估计小菜蛾密度的平均样本数为35株。此外,估计的植物比例作用阈值(AT)为51%,春季和冬季的密度作用阈值分别为0.50和0.80。在冬季和春季采样计划中拟合小菜蛾的累积计数,导致杀虫剂处理减少了100%和45%。两个季节之间样本量和AT的相似性证明,单一采样计划对所有卷心菜生长季节都是可行的。估计的AT与已建立的综合害虫管理计划中可接受的AT的相似性表明了可靠性。
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来源期刊
CiteScore
4.60
自引率
9.10%
发文量
198
审稿时长
3-6 weeks
期刊介绍: Journal of Economic Entomology the most-cited entomological journal – publishes articles on the economic significance of insects and other arthropods and includes sections on apiculture & social insects, insecticides, biological control, household & structural insects, crop protection, forest entomology, and more. In addition to research papers, Journal of Economic Entomology publishes Reviews, interpretive articles in a Forum section, Short Communications, and Letters to the Editor. The journal is published bimonthly in February, April, June, August, October, and December.
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Reviewers for Journal of Economic Entomology (November 2022–October 2023) 2-Methoxybenzaldehyde effectively repels ants Phenolic secondary metabolites from Acorus calamus (Acorales: Acoraceae) rhizomes: the feeding deterrents for Spodoptera litura (Lepidoptera: Noctuidae). Sampling Lasioderma serricorne (Coleoptera: Anobiidae) in 2 coffee bean warehouses in New Jersey. Biology and management of hemp russet mite (Acari: Eriophyidae).
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