Monitoring of Larinus spp. (Coleoptera Curculionidae) infesting cardoon and development of a binomial sampling plan for the estimation of Larinus cynarae infestation level in Mediterranean conditions

IF 2.5 2区 农林科学 Q1 AGRONOMY Crop Protection Pub Date : 2024-09-15 DOI:10.1016/j.cropro.2024.106955
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Abstract

The cultivation of cardoon, Cynara cardunculus var. altilis, for multi-purpose uses has increased substantially in recent decades. However, in some cardoon growing areas, the production of achenes is threatened by several insects, especially the weevils Larinus cynarae and Larinus scolymi. Due to the lack of specific monitoring and sampling programs for these pests, the aims of this work were to test the reliability of chromotropic traps for adult Larinus spp. monitoring and to develop binomial sequential sampling plans to assess the infestation level of L. cynarae in cardoon cultivations in a Mediterranean area. Field observations were conducted in two different cardoon growing areas in Sardinia (Italy) in 2019 and 2020. Purple- and red-colored cross-vane traps, placed at 1 m and 2 m above the ground, were utilized for monitoring Larinus spp. adults, and binomial sequential sampling plans were developed for L. cynarae based on the count of egg masses on flower heads for sample sizes of 30, 40, 50, 60, and 70 flower heads. The purple traps at 2 m above the ground were effective in monitoring L. scolymi, whereas red and purple traps were ineffective in monitoring L. cynarae adults at both 1 m and 2 m above the ground. Among different binomial sampling plans, a sample size of 70 flower heads is needed to obtain reliable estimates of L. cynarae infestations at or above 25% of infested flowers. Our findings constitute a baseline for the development of an integrated pest management program for the control of Larinus spp. infestations in cardoon-growing areas in Mediterranean environment.

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监测蚕蛾属(鞘翅目蝼蛄)为害褐花酢浆草的情况,并制定二项式取样计划,以估算蚕蛾属在地中海地区的为害程度
近几十年来,用于多种用途的牛心菜(Cynara cardunculus var. altilis)种植量大幅增加。然而,在一些芒苋种植区,瘦果的生产受到几种昆虫的威胁,尤其是象鼻虫 Larinus cynarae 和 Larinus scolymi。由于缺乏针对这些害虫的具体监测和采样计划,这项工作的目的是测试色谱诱捕器监测成虫的可靠性,并制定二项式顺序采样计划,以评估地中海地区豆瓣菜种植区的象鼻虫侵扰水平。2019 年和 2020 年,在撒丁岛(意大利)两个不同的卡杜牛种植区进行了实地观察。利用放置在离地面 1 米和 2 米处的紫色和红色交叉叶片诱捕器监测 Larinus spp.成虫,并根据 30、40、50、60 和 70 个花头的样本量对花头上的卵块计数制定了 L. cynarae 的二项式顺序取样计划。距地面 2 米处的紫色诱捕器能有效监测褐飞虱,而距地面 1 米和 2 米处的红色和紫色诱捕器则不能有效监测褐飞虱成虫。在不同的二项式取样计划中,需要 70 个花头的样本量才能可靠地估计出 L. cynarae 的侵染率达到或超过 25% 的侵染花朵。我们的研究结果为制定病虫害综合防治计划,控制地中海环境中豆蔻种植区的 Larinus spp.
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来源期刊
Crop Protection
Crop Protection 农林科学-农艺学
CiteScore
6.10
自引率
3.60%
发文量
200
审稿时长
29 days
期刊介绍: The Editors of Crop Protection especially welcome papers describing an interdisciplinary approach showing how different control strategies can be integrated into practical pest management programs, covering high and low input agricultural systems worldwide. Crop Protection particularly emphasizes the practical aspects of control in the field and for protected crops, and includes work which may lead in the near future to more effective control. The journal does not duplicate the many existing excellent biological science journals, which deal mainly with the more fundamental aspects of plant pathology, applied zoology and weed science. Crop Protection covers all practical aspects of pest, disease and weed control, including the following topics: -Abiotic damage- Agronomic control methods- Assessment of pest and disease damage- Molecular methods for the detection and assessment of pests and diseases- Biological control- Biorational pesticides- Control of animal pests of world crops- Control of diseases of crop plants caused by microorganisms- Control of weeds and integrated management- Economic considerations- Effects of plant growth regulators- Environmental benefits of reduced pesticide use- Environmental effects of pesticides- Epidemiology of pests and diseases in relation to control- GM Crops, and genetic engineering applications- Importance and control of postharvest crop losses- Integrated control- Interrelationships and compatibility among different control strategies- Invasive species as they relate to implications for crop protection- Pesticide application methods- Pest management- Phytobiomes for pest and disease control- Resistance management- Sampling and monitoring schemes for diseases, nematodes, pests and weeds.
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