大麻蚜、棉蚜和青桃蚜(半翅目:蚜科)对工业大麻的采食行为及生命表分析。

Alex E Leede, Jeffrey A Davis
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引用次数: 0

摘要

工业大麻(Cannabis sativa L.)是一种一年生草本植物,最近在美国的田间和温室中重新进入作物生产。像许多农作物一样,大麻的生产也面临着一些虫害的挑战。蚜虫对大麻构成了独特的威胁,在室内和室外生产中都有发现。蚜虫通过减少植物生长、芽生产、大麻素浓度和去除光合作用来影响大麻。此外,蚜虫是植物病毒的载体,已知有几种蚜虫会将病毒传播给大麻。关于大麻对路易斯安那州常见蚜虫寄主适宜性的研究有限。为此,通过对桃蚜、棉蚜和大麻蚜的生命表统计和取食行为的研究,确定了这些害虫对大麻的潜在种群动态。麻简历。Maverick对棉蚜和桃蚜都不是一个好的寄主,导致内生增长率为负,无法持续定殖。虽然桃蚜和大麻蚜的探测率相当,但桃蚜的探测持续时间明显更短,探测频率更高,表明桃蚜对大麻的探测没有积极的反应。棉蚜发起探针的个体百分比差异显著,探针持续时间显著短于大麻,显著长于桃。棉蚜和桃蚜在韧皮部的探测时间明显少于大麻。这些电侵图结果表明,棉蚜和桃蚜没有发现红花。特立独行,合适的主持人;然而,这两种蚜虫作为病毒载体仍可能对苜蓿的生产构成威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Life table analyses and feeding behaviors of cannabis aphid, cotton aphid, and green peach aphid (Hemiptera: Aphididae) on industrial hemp.

Industrial hemp, Cannabis sativa L., is an herbaceous annual plant that has recently re-entered crop production both in the field and in greenhouses within the United States. Like many agronomic crops, hemp production faces several insect pest challenges. Aphids pose a unique threat to hemp, being found in both indoor and outdoor production. Aphids affect hemp by reducing plant growth, bud production, concentrations of cannabinoids, and removing photosynthate. Additionally, aphids are vectors of plant viruses, and several species are known to transmit viruses to hemp. Limited research exists regarding the host suitability of hemp for common aphid pests in Louisiana. Thus, experiments were conducted to determine the life table statistics and feeding behaviors of Myzus persicae, Aphis gossypii, and Phorodon cannabis to determine the potential pest population dynamics of these pests on hemp. Hemp cv. Maverick was not a good host for either A. gossypii or M. persicae, resulting in negative intrinsic rates of increase and no sustained colonization. Although individuals of M. persicae and P. cannabis initiated probes at comparable rates, M. persicae probe durations were significantly shorter and probes were more frequent, indicating an absence of positive responses to probing hemp. A significant difference was observed in the percentage of individuals of A. gossypii initiating probes, and probe duration was significantly shorter than P. cannabis and significantly longer than M. persicae. Both A. gossypii and M. persicae spent significantly less time probing in phloem when compared with P. cannabis. These electrical penetration graph results indicate that A. gossypii and M. persicae do not find C. sativa cv. Maverick a suitable host; however, both species of aphids may still pose a threat to C. sativa production as virus vectors.

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