全球鸟类果-果性状匹配向热带方向减少

IF 10.8 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION
Mingming Zhang, Yang Wang, Xifu Yang, Yueqin Yang, Fei Yu, Xianfeng Yi
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引用次数: 0

摘要

性状匹配是生态相互作用由亲和性介导的现象,是果-果相互作用网络动力学的基石。鉴于生物相互作用长期以来一直被假设为在热带地区更为激烈或专门,性状匹配模式的强度可能同样在果树网络中表现出纬度梯度,但这仍未得到证实。在此,我们建立了一个包含200个鸟类食果网络的数据集,以探索全球范围内食果鸟类的体重和开口大小与果实性状(大小和颜色)之间的关系。结果表明,无论气候如何,食果性状与果实性状密切相关,表明两者之间存在生物匹配。我们发现在热带地区,果-果性状匹配显著减少,考虑到那里的高生物多样性,这挑战了流行的概念。我们的结构方程模型表明,纬度和温度通过影响间隙大小和果实性状间接影响性状匹配。这些发现强调了温度的纬度梯度在驱动观察到的性状匹配模式中的影响。热带地区较弱的特征匹配可能表明其中更复杂的相互作用,也突出了在全球气候变化中改变网络结构的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Global Avian Frugivore-Fruit Trait Matching Decreases Toward the Tropics

Global Avian Frugivore-Fruit Trait Matching Decreases Toward the Tropics

Global Avian Frugivore-Fruit Trait Matching Decreases Toward the Tropics

Trait matching, the phenomenon where ecological interactions are mediated by compatibility, constitutes a cornerstone of frugivore–fruit interaction network dynamics. Given that biotic interactions have long been hypothesized to be more intense or specialized in the tropics, the intensity of trait matching patterns might likewise exhibit a latitudinal gradient in frugivory networks, yet this remains unverified. Here, we established a dataset encompassing 200 avian frugivorous networks to explore the relationships between the body mass and gape size of frugivore birds and fruit traits (size and color) on a global scale. Our results indicated that frugivore traits were closely associated with fruit traits regardless of the climate, demonstrating a biotic match between the two counterparts. We detected a significant decrease in frugivore–fruit trait matching toward the tropics, which challenges prevailing concepts considering the high biodiversity therein. Our structural equation modeling clarified that latitude and temperature exert an indirect influence on trait matching by affecting gape size and fruit traits. These discoveries emphasize the impact of the latitudinal gradient of temperature in driving the observed patterns of trait matching. The weaker trait matching in tropical regions may suggest more complex interactions therein and also highlights the potential for altered network structures amid global climate change.

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来源期刊
Global Change Biology
Global Change Biology 环境科学-环境科学
CiteScore
21.50
自引率
5.20%
发文量
497
审稿时长
3.3 months
期刊介绍: Global Change Biology is an environmental change journal committed to shaping the future and addressing the world's most pressing challenges, including sustainability, climate change, environmental protection, food and water safety, and global health. Dedicated to fostering a profound understanding of the impacts of global change on biological systems and offering innovative solutions, the journal publishes a diverse range of content, including primary research articles, technical advances, research reviews, reports, opinions, perspectives, commentaries, and letters. Starting with the 2024 volume, Global Change Biology will transition to an online-only format, enhancing accessibility and contributing to the evolution of scholarly communication.
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