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简而言之:天蛾传粉生态位与相互作用网络的全球分析

The long and the short of it: a global analysis of hawkmoth pollination niches and interaction networks.

作者信息

Johnson Steven D, Moré Marcela, Amorim Felipe W, Haber William A, Frankie Gordon W, Stanley Dara A, Coccuci Andrea A, Raguso Robert A

机构信息

School of Life Sciences, University of KwaZulu-Natal, P Bag X01, Scottsville, Pietermaritzburg, 3209, South Africa.

Laboratorio de Biologıa Floral, Instituto Multidisciplinario de Biologıa Vegetal (CONICET-UNCba), CC 495, CP 5000, Cordoba, Argentina.

出版信息

Funct Ecol. 2017 Jan;31(1):101-115. doi: 10.1111/1365-2435.12753. Epub 2016 Sep 27.

Abstract
  1. Proboscis length has been proposed as a key dimension of plant pollination niches, but this niche space has not previously been explored at regional and global scales for any pollination system. Hawkmoths are ideal organisms for exploring pollinator niches as they are important pollinators in most of the biodiverse regions of the earth and vary greatly in proboscis length, with some species having the longest proboscides of all insects. 2. Using datasets for nine biogeographical regions spanning the Old and New World, we ask whether it is possible to identify distinct hawkmoth pollination niches based on the frequency distribution of proboscis length, and whether these niches are reflected in the depths of flowers that are pollinated by hawkmoths. We also investigate the levels of specialization in hawkmoth pollination systems at the regional and community level using data from interaction network studies. 3. We found that most regional hawkmoth assemblages have bimodal or multimodal distributions of proboscis length, and that these are matched by similar distributions of floral tube lengths. Hawkmoths, particularly those with longer proboscides, are polyphagous and at the network level show foraging specialization equivalent to or less than that of bees and hummingbirds. In the case of plants, shorter-tubed flowers are usually visited by numerous hawkmoth species, while those that are longer-tubed tend to exclude shorter-proboscid hawkmoths and thus become ecologically specialized on longer-proboscid hawkmoth species. Longer-tubed flowers tend to have greater nectar rewards and this promotes short-term constancy by long-proboscid hawkmoths. 4. Our results show that pollinator proboscis length is a key niche axis for plants and can account for patterns of evolution in functional traits such as floral tube length and nectar volume. We also highlight a paradoxical trend for nectar resource niche breadth to increase according to proboscis length of pollinators, while pollinator niche breadth decreases according to the tube length of flowers.
摘要
  1. 喙长已被提出作为植物授粉生态位的一个关键维度,但此前尚未在区域和全球尺度上对任何授粉系统的这种生态位空间进行探索。天蛾是探索传粉者生态位的理想生物,因为它们是地球上大多数生物多样性地区的重要传粉者,喙长差异很大,有些物种拥有所有昆虫中最长的喙。2. 利用涵盖新旧世界的九个生物地理区域的数据集,我们探讨是否有可能根据喙长的频率分布识别出不同的天蛾授粉生态位,以及这些生态位是否反映在由天蛾授粉的花的深度上。我们还利用相互作用网络研究的数据,在区域和群落水平上研究天蛾授粉系统的专业化程度。3. 我们发现,大多数区域天蛾组合的喙长呈双峰或多峰分布,花管长度的分布与之相似。天蛾,尤其是那些喙较长的天蛾,是多食性的,在网络层面上表现出的觅食专业化程度等同于或低于蜜蜂和蜂鸟。就植物而言,花管较短的花通常会被众多天蛾物种光顾,而花管较长的花往往会排除喙较短的天蛾,从而在生态上专门适应喙较长的天蛾物种。花管较长的花往往有更多的花蜜回报,这促进了长喙天蛾的短期专一性。4. 我们的结果表明,传粉者的喙长是植物的一个关键生态位轴,可以解释花管长度和花蜜量等功能性状的进化模式。我们还突出了一个矛盾的趋势,即花蜜资源生态位宽度随着传粉者喙长的增加而增加,而传粉者生态位宽度随着花管长度的增加而减小。

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