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短期干旱胁迫会改变大黄蜂在花朵上的行为,但不会改变其最初的吸引力。

Bumblebee Behavior on Flowers, but Not Initial Attraction, Is Altered by Short-Term Drought Stress.

作者信息

Höfer Rebecca J, Ayasse Manfred, Kuppler Jonas

机构信息

Department of Biology, Institute of Evolutionary Ecology and Conservation Genomics, Ulm University, Ulm, Germany.

出版信息

Front Plant Sci. 2021 Jan 13;11:564802. doi: 10.3389/fpls.2020.564802. eCollection 2020.

Abstract

Climate change is leading to increasing drought and higher temperatures, both of which reduce soil water levels and consequently water availability for plants. This reduction often induces physiological stress in plants, which in turn can affect floral development and production inducing phenotypic alterations in flowers. Because flower visitors notice and respond to small differences in floral phenotypes, changes in trait expression can alter trait-mediated flower visitor behavior. Temperature is also known to affect floral scent emission and foraging behavior and, therefore, might modulate trait-mediated flower visitor behavior. However, the link between changes in flower visitor behavior and floral traits in the context of increasing drought and temperature is still not fully understood. In a wind-tunnel experiment, we tested the behavior of 66 individuals in response to watered and drought-stressed plants and determined whether these responses were modulated by air temperature. Further, we explored whether floral traits and drought treatment were correlated with bumblebee behavior. The initial attractiveness of drought and watered plants did not differ, as the time to first visit was similar. However, bumblebees visited watered plants more often, their visitation rate to flowers was higher on watered plants, and bumblebees stayed for longer, indicating that watered plants were more attractive for foraging. Bumblebee behavior differed between floral trait expressions, mostly independently of treatment, with larger inflorescences and flowers leading to a decrease in the time until the first flower visit and an increase in the number of visits and the flower visitation rate. Temperature modulated bumblebee activity, which was highest at 25°C; the interaction of drought/water treatment and temperature led to higher visitation rate on watered plants at 20°C, possibly as a result of higher nectar production. Thus, bumblebee behavior is influenced by the watered status of plants, and bumblebees can recognize differences in intraspecific phenotypes involving morphological traits and scent emission, despite overall morphological traits and scent emission not being clearly separated between treatments. Our results indicate that plants are able to buffer floral trait expressions against short-term drought events, potentially to maintain pollinator attraction.

摘要

气候变化正导致干旱加剧和气温升高,这两者都会降低土壤水位,进而减少植物可获取的水分。这种减少常常会在植物中引发生理应激,进而可能影响花的发育和产量,导致花朵出现表型改变。由于访花者会注意到并对花的表型微小差异做出反应,性状表达的变化会改变性状介导的访花者行为。温度也已知会影响花香释放和觅食行为,因此可能调节性状介导的访花者行为。然而,在干旱和温度增加的背景下,访花者行为变化与花的性状之间的联系仍未完全了解。在一项风洞实验中,我们测试了66只个体对浇水和干旱胁迫植物的反应,并确定这些反应是否受气温调节。此外,我们探究了花的性状和干旱处理是否与熊蜂行为相关。干旱植物和浇水植物的初始吸引力没有差异,因为首次访花时间相似。然而,熊蜂更频繁地访问浇水植物,它们在浇水植物上对花的访问率更高,并且熊蜂停留的时间更长,这表明浇水植物对觅食更具吸引力。熊蜂行为在花的性状表达之间存在差异,大多不受处理影响,花序和花朵较大导致首次访花时间减少、访问次数和花访问率增加。温度调节熊蜂活动,在25°C时最高;干旱/浇水处理与温度的相互作用导致在20°C时浇水植物上的访问率更高,这可能是花蜜产量更高的结果。因此,熊蜂行为受植物浇水状况影响,并且熊蜂能够识别涉及形态性状和气味释放的种内表型差异,尽管处理之间整体形态性状和气味释放没有明显区分。我们的结果表明,植物能够缓冲花的性状表达以应对短期干旱事件,可能是为了维持对传粉者的吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef34/7838097/0341f833473f/fpls-11-564802-g001.jpg

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