无损昆虫代谢条形码作为澳大利亚谷物行业的监测工具:iMapPESTS智能诱捕器的首次试验

Francesco Martoni, Reannon L. Smith, Alexander M. Piper, N. Nancarrow, M. Aftab, P. Trębicki, R. Kimber, B. Rodoni, M. Blacket
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引用次数: 1

摘要

监测和长期监测害虫种群对限制扩散和为虫害管理提供信息至关重要。在过去的几十年里,分子方法已经被用于诊断、监视和监测,通常与依赖于形态学检查的更传统的技术相结合。在此背景下,“iMapPESTS:农业哨点监测”项目的概念是通过开发和部署能够收集昆虫并记录相关环境数据的智能陷阱来加强农场病虫害管理决策。在这里,我们在10周的时间内比较了iMapPESTS“哨兵”智能捕集器和另一种吸力捕集器。我们使用了一种非破坏性昆虫元条形码方法,辅以昆虫形态学诊断来评估和比较不同陷阱样本和时间内蚜虫的种类存在和多样性。此外,我们将其与整个采样期间记录的环境数据配对。该方法在10周的时间内,在维多利亚州西部的粮食种植区用70个诱捕器共记录了497个不同的分类群。这不仅包括14种蚜虫的目标物种,而且还包括12种蚜虫,其中包括维多利亚州的新记录。最终,检测到超过450种副渔获物,这突出了昆虫元条形码的价值,不仅在害虫监测方面,而且在更广泛的生态系统层面,在害虫综合管理和生物防治方面具有潜在的应用价值。
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Non-destructive insect metabarcoding as a surveillance tool for the Australian grains industry: a first trial for the iMapPESTS smart trap
Surveillance and long-term monitoring of insect pest populations are of paramount importance to limit dispersal and inform pest management. Molecular methods have been employed in diagnostics, surveillance and monitoring for the past few decades, often paired with more traditional techniques relying on morphological examinations. Within this context, the ‘iMapPESTS: Sentinel Surveillance for Agriculture’ project was conceptualised to enhance on-farm pest management decision-making via development and deployment of smart traps, able to collect insects, as well as recording associated environmental data. Here, we compared an iMapPESTS ‘Sentinel’ smart trap to an alternative suction trap over a 10-week period. We used a non-destructive insect metabarcoding approach complemented by insect morphological diagnostics to assess and compare aphid species presence and diversity across trap samples and time. Furthermore, we paired this with environmental data recorded throughout the sampling period. This methodology recorded a total of 497 different taxa from 70 traps over a 10-week period in the grain-growing region in western Victoria. This included not only the 14 aphid target species, but an additional 12 aphid species, including a new record for Victoria. Ultimately, with more than 450 bycatch species detected, this highlighted the value of insect metabarcoding, not only for pest surveillance, but also at a broader ecosystem level, with potential applications in integrated pest management and biocontrol.
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Metabarcoding and Metagenomics
Metabarcoding and Metagenomics Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
5.40
自引率
0.00%
发文量
25
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