Temperature and time of season are the predominant drivers of cabbage stem flea beetle, Psylliodes chrysocephala, arrival at oilseed rape crops

IF 2.5 2区 农林科学 Q1 AGRONOMY
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Abstract

Cabbage stem flea beetle (CSFB) is an economically important pest of oilseed rape crops responsible for substantial yield losses in recent years, particularly since the restrictions on neonicotinoid seed treatment use came into force in 2013. To effectively time sowing dates and target control measures, it is crucial that accurate estimates of when migratory adult CSFB will arrive at the crop can be made. A Bayesian hierarchical model was fitted to data from 19 sites containing adult CSFB traps over a period of three years to characterise the relationship between the day of year, temperature, rainfall, wind speed and solar radiation on beetle counts and to understand their relative importance. Day of the year was identified as the main driver of migration and temperature was the predominant environmental driver of CSFB migration. A hot day (based on the range of observed temperatures over the trapping window) resulted in approximately 300% of the expected CSFB migration relative to an average day during peak migration. The second most important environmental driver of migration was wind speed, but this resulted in a relatively negligible increase of approximately 15% from an average day to a still day. These findings suggest that efforts to predict timing of adult CSFB migration should focus on understanding how the phenology of CSFB and temperature interact to drive the timing of migration.

Abstract Image

温度和季节是影响甘蓝茎跳甲到达油菜作物的主要因素
卷心菜茎跳甲(CSFB)是油菜作物的一种重要经济害虫,近年来造成了巨大的产量损失,尤其是自 2013 年新烟碱类种子处理剂使用限制生效以来。为了有效地确定播种日期和有针对性地采取控制措施,准确估计迁徙性 CSFB 成虫到达作物的时间至关重要。贝叶斯分层模型适用于 19 个含有 CSFB 成虫诱捕器的地点三年来的数据,以确定甲虫数量与年月日、温度、降雨量、风速和太阳辐射之间的关系,并了解它们的相对重要性。年日被认为是甲虫迁徙的主要驱动因素,而温度则是 CSFB 迁徙的主要环境驱动因素。与迁徙高峰期的平均日相比,炎热日(基于诱捕窗口期间观测到的温度范围)导致的 CSFB 迁徙量约为预期的 300%。风速是影响迁徙的第二大环境因素,但从平均日到静止日,风速只增加了约 15%,相对来说可以忽略不计。这些研究结果表明,预测CSFB成虫迁徙时间的工作应侧重于了解CSFB的物候和温度是如何相互作用来驱动迁徙时间的。
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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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