Spatial and temporal variability in the structure of the multiple-herbivore community of horsenettle, and evidence for evolutionary responses in host-plant resistance

IF 1.2 3区 农林科学 Q3 ENTOMOLOGY Arthropod-Plant Interactions Pub Date : 2024-04-05 DOI:10.1007/s11829-023-10036-3
Michael J. Wise
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Abstract

The geographic mosaic model of plant–herbivore coevolution asserts that interactions between a plant species and an herbivore species vary in intensity among populations across the plant’s geographic range. Despite this model’s intuitive appeal, data to investigate its implications for the type of complex, multiple-herbivore communities that occur in nature are scant. This paper reports on the results of 2 years of field surveys of damage by five leaf herbivores and one stem herbivore in four Solanum carolinense (horsenettle) populations, combined with results of a common-garden study quantifying the mean resistance levels of the plants from each field against each of the six herbivores. The relative amounts of damage caused by each species (representing the “herbivore-community structure”) differed significantly among the four fields. The plants were much more heavily damaged in the 2nd year than in the first, but the herbivore-community structure remained stable within each field between years. Overall, the amount of damage by species of herbivores in a field tended to be positively correlated with the plants’ levels of resistance that were measured in the common garden (r = 0.40, P = 0.05). Specifically, for five of the six herbivores, greater damage in the field was associated with greater plant resistance. This result suggests that horsenettle’s evolution of resistance against specific herbivores can occur rather quickly within fields, creating a local-scale mosaic of populations specifically adapted to the particular structure of the herbivore community that they are facing, but that herbivore-community structure is not strongly determined by plant resistance.

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马齿笕多食草动物群落结构的时空变异以及寄主植物抗性进化反应的证据
植物与食草动物共同进化的地理镶嵌模型认为,植物物种与食草动物物种之间的相互作用在植物地理分布范围内的不同种群中强度各异。尽管该模型具有直观的吸引力,但研究其对自然界中复杂的多食草动物群落类型的影响的数据却很少。本文报告了对四个马齿苋(Solanum carolinense)种群中五种叶食草动物和一种茎食草动物危害的两年实地调查结果,以及一项普通花园研究的结果,该研究量化了每个田地中植物对六种食草动物的平均抗性水平。每种食草动物造成的相对损害程度(代表 "食草动物群落结构")在四块田地之间存在显著差异。植物在第二年受到的破坏比第一年严重得多,但每块田地的 "食草动物-群落结构 "在不同年份之间保持稳定。总体而言,田间食草动物物种的危害程度往往与普通花园中测量的植物抗性水平呈正相关(r = 0.40,P = 0.05)。具体来说,对于六种食草动物中的五种来说,田间破坏程度越大,植物的抗性越强。这一结果表明,马齿笕对特定食草动物的抗性进化可以在田间迅速发生,形成局部范围的种群马赛克,专门适应它们所面临的食草动物群落的特定结构,但食草动物群落结构并不完全取决于植物的抗性。
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来源期刊
Arthropod-Plant Interactions
Arthropod-Plant Interactions 生物-昆虫学
CiteScore
3.00
自引率
6.20%
发文量
58
审稿时长
6 months
期刊介绍: Arthropod-Plant Interactions is dedicated to publishing high quality original papers and reviews with a broad fundamental or applied focus on ecological, biological, and evolutionary aspects of the interactions between insects and other arthropods with plants. Coverage extends to all aspects of such interactions including chemical, biochemical, genetic, and molecular analysis, as well reporting on multitrophic studies, ecophysiology, and mutualism. Arthropod-Plant Interactions encourages the submission of forum papers that challenge prevailing hypotheses. The journal encourages a diversity of opinion by presenting both invited and unsolicited review papers.
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