高山花与大黄蜂物候失配的机制及其对大黄蜂种群动态的影响

IF 2.3 2区 环境科学与生态学 Q2 ECOLOGY
Gaku Kudo, Tetsuo Imoto, Taietsu Nagase, Hai Xiang Liew
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引用次数: 0

摘要

为了确定全球变暖对传粉植物相互作用的影响,我们记录了日本北部10 ~ 12年高山花卉和大黄蜂的物候变化,并分析了气候条件和物候变化对4种大黄蜂工蜂种群动态的影响。高山植物的开花模式是由早花林地和晚花雪床群落相结合形成的,其中雪床花是工蜂的重要资源。林地群落的开花物候与早季气温相关,而雪床群落的开花物候与融雪时间相关。升温1°C,融雪时间提前10 d,林地和积雪群落的花期高峰分别提前3.6天和9.5 d,花期缩短9.2 d。相比之下,工蚁丰度的峰值时间在年份之间是一致的,与温度和融雪时间无关。结果表明,随着融雪时间的提前,雪床植物开花高峰与工蜂丰度高峰之间的时间差(物候失配)增大。盛夏温度与3种蜂属工蜂丰度呈负相关,物候失配效应在不同蜂属间存在差异。前一年伪善白僵菌的丰度随着物候错配的增加而降低,白僵菌和叶绿白僵菌的丰度增加,而矮僵菌的响应不明显。因此,全球变暖导致的高山植物物候变化以高度物种特异性的方式影响传粉者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Phenological mismatch between alpine flowers and bumble bees: its mechanism and impacts on the population dynamics of bumble bees.

Phenological mismatch between alpine flowers and bumble bees: its mechanism and impacts on the population dynamics of bumble bees.

Phenological mismatch between alpine flowers and bumble bees: its mechanism and impacts on the population dynamics of bumble bees.

Phenological mismatch between alpine flowers and bumble bees: its mechanism and impacts on the population dynamics of bumble bees.

To determine the impacts of global warming on pollinator-plant interactions, we recorded phenological variations in alpine flowers and bumble bees during 10-12 years in northern Japan, and analyzed the effects of weather conditions and phenological shift on worker population dynamics of four Bombus species. Flowering patterns of alpine plants were formed by the combination of early-flowering fellfield and late-flowering snowbed communities, where snowbed flowers were important resources for worker bees. The flowering phenology of the fellfield communities was correlated with early season air temperature, whereas that of the snowbed communities was clearly predicted by snowmelt time. It was predicted that 1 °C warming with 10 days earlier snowmelt would advance the peak flowering time of the fellfield and snowbed communities by 3.6 and 9.5 days, respectively, resulting in a 9.2 day shorter flowering period. In contrast, the peak time of worker abundance was consistent between years, independent of temperature and snowmelt time. As a result, the time lag between the peak flowering of snowbed plants and the peak abundance of worker bees, i.e., the phenological mismatch, increased with earlier snowmelt. Mid-summer temperature was negatively correlated with worker abundance for three Bombus species, and the effect of phenological mismatch varied between Bombus species. The abundance of B. hypocrita decreased with increasing phenological mismatch in the previous year, the abundance of B. beaticola and B. yezoensis increased, and B. hypnorum showed no clear response. Therefore, changes in the phenology of alpine plants due to global warming affect pollinators in highly species-specific ways.

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来源期刊
Oecologia
Oecologia 环境科学-生态学
CiteScore
5.10
自引率
0.00%
发文量
192
审稿时长
5.3 months
期刊介绍: Oecologia publishes innovative ecological research of international interest. We seek reviews, advances in methodology, and original contributions, emphasizing the following areas: Population ecology, Plant-microbe-animal interactions, Ecosystem ecology, Community ecology, Global change ecology, Conservation ecology, Behavioral ecology and Physiological Ecology. In general, studies that are purely descriptive, mathematical, documentary, and/or natural history will not be considered.
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