大粒螟圆角螟(鞘翅目:圆角螟科)的干燥性和耐温性:入侵成功的基础?

IF 1.6 4区 农林科学 Q2 ENTOMOLOGY
Reyard Mutamiswa, Honest Machekano, Charles Singano, Virgil Joseph, Frank Chidawanyika, Casper Nyamukondiwa
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引用次数: 7

摘要

较大的谷物螟虫(角)是一种全球经济关注的入侵害虫。然而,尚不清楚树干是如何在与预测的气候变化相关的温度升高和干燥效应下成功生存的。本研究研究了干燥和高温胁迫对树干木幼虫和成虫生理适宜度的影响。具体来说,我们测量了高温和干燥驯化后的临界热最大值、热击倒时间和水分损失率。结果表明,热驯化对耐热性(临界热最大值和热击倒时间)有有益的影响。同样,干燥驯化显著提高了这两种耐热性状,表明是交叉耐受效应,而不是热击倒时间。在所有情况下,成虫表现出比幼虫更强的耐热性。相反,热驯化增加了水分流失率,在幼虫中比在成虫中更明显。在热带干旱和气候变化的环境中,白杨具有较强的耐热性和非生物胁迫交叉耐受性,这可能是其生理生态适应性增强的原因。这些结果在解释昆虫入侵的生理作用方面具有重要意义,并可能为害虫管理和预测提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Desiccation and temperature resistance of the larger grain borer, Prostephanus truncatus (Horn) (Coleoptera: Bostrichidae): pedestals for invasion success?

Desiccation and temperature resistance of the larger grain borer, Prostephanus truncatus (Horn) (Coleoptera: Bostrichidae): pedestals for invasion success?

The larger grain borer, Prostephanus truncatus (Horn) is an invasive insect pest species of global economic concern. It however remains unknown how P. truncatus succeeds under increasing temperatures and desiccation effects associated with projected climate change. Here, we investigated the effects of desiccation and high-temperature stress on physiological fitness of P. truncatus larvae and adults. Specifically, we measured critical thermal maxima, heat knockdown time and water loss rates following heat and desiccation acclimation. Results showed beneficial heat acclimation effects on heat tolerance (critical thermal maxima and heat knockdown time). Similarly, desiccation acclimation significantly improved both heat tolerance traits, indicating cross-tolerance effects, not for heat knockdown time in larvae. In all cases, adults exhibited more improved heat tolerance than larvae. Conversely, heat acclimation increased water loss rates, and more so in larvae than adults. Improved heat tolerance plus abiotic stress cross-tolerance of P. truncatus may explain its enhanced physiological and ecological fitness in dry tropical and changing climate environments. These results are important in explaining the role of physiology in insect invasions and may inform pest management and forecasting.

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来源期刊
Physiological Entomology
Physiological Entomology 生物-昆虫学
CiteScore
2.80
自引率
6.70%
发文量
21
审稿时长
>12 weeks
期刊介绍: Physiological Entomology broadly considers “how insects work” and how they are adapted to their environments at all levels from genes and molecules, anatomy and structure, to behaviour and interactions of whole organisms. We publish high quality experiment based papers reporting research on insects and other arthropods as well as occasional reviews. The journal thus has a focus on physiological and experimental approaches to understanding how insects function. The broad subject coverage of the Journal includes, but is not limited to: -experimental analysis of behaviour- behavioural physiology and biochemistry- neurobiology and sensory physiology- general physiology- circadian rhythms and photoperiodism- chemical ecology
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