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解析气候变化对植物繁殖性状和传粉者影响的复杂性:一项全球系统性综述

Untangling the Complexity of Climate Change Effects on Plant Reproductive Traits and Pollinators: A Systematic Global Synthesis.

作者信息

Martén-Rodríguez Silvana, Cristobal-Pérez Edson Jacob, de Santiago-Hernández Martín Hesajim, Huerta-Ramos Guillermo, Clemente-Martínez Lucero, Krupnick Gary, Taylor Orley, Lopezaraiza-Mikel Martha, Balvino-Olvera Francisco Javier, Sentíes-Aguilar Eugenia M, Díaz-Infante Sergio, Aguirre Jaimes Armando, Novais Samuel, Cortés-Flores Jorge, Lobo-Segura Jorge, Fuchs Eric J, Delgado-Carrillo Oliverio, Ruiz-Mercado Ilse, Sáyago-Lorenzana Roberto, Pérez-Arroyo Karen, Quesada Mauricio

机构信息

Laboratorio Nacional de Análisis y Síntesis Ecológica, ENES-Morelia, Universidad Nacional Autónoma de México, Morelia, Michoacán, Mexico.

Laboratorio Binacional, UNAM-UCR, Morelia, Michoacán, Mexico.

出版信息

Glob Chang Biol. 2025 Feb;31(2):e70081. doi: 10.1111/gcb.70081.

Abstract

Climate change is expected to affect the morphological, physiological, and life-history traits of plants and animal pollinators due to more frequent extreme heat and other altered weather patterns. This systematic literature review evaluates the effects of climate change on plant and pollinator traits on a global scale to determine how species responses vary among Earth's ecosystems, climate variables, taxonomic groups, and organismal traits. We compiled studies conducted under natural or experimental conditions (excluding agricultural species) and analyzed species response patterns for each trait (advance vs. delay or no change for phenology, decrease vs. increase or no change for other traits). Climate change has advanced plant and animal phenologies across most Earth's biomes, but evidence for temporal plant-pollinator mismatches remains limited. Flower production and plant reproductive success showed diverse responses to warming and low water availability in Alpine and Temperate ecosystems, and a trend for increased or neutral responses in Arctic and Tropical biomes. Nectar rewards mainly experienced negative effects under warming and drought across Alpine and Temperate biomes, but scent emissions increased or changed in composition. Life form (woody vs. nonwoody species) did not significantly influence trait response patterns to climate change. Pollinator fecundity, size, life-history, developmental, and physiological traits mostly declined with warming across biomes; however, animal abundance and resource acquisition traits showed diverse responses. This review identified critical knowledge gaps that limit our understanding of the impacts of climate change, particularly in tropical/subtropical biomes and southern latitudes. It also highlights the urgent need to sample across a greater range of plant families and pollinator taxa (e.g., beetles, wasps, vertebrates). The diversity of climate change effects should be assessed in the context of other anthropogenic drivers of global change that threaten critically important pollination interactions.

摘要

由于极端高温天气愈发频繁以及其他天气模式的改变,气候变化预计会影响植物和传粉动物的形态、生理及生活史特征。本系统文献综述评估了气候变化对全球范围内植物和传粉动物特征的影响,以确定物种的反应在地球的生态系统、气候变量、分类群和生物体特征之间如何变化。我们汇总了在自然或实验条件下开展的研究(不包括农业物种),并分析了每种特征的物种反应模式(物候提前与延迟或无变化,其他特征减少、增加或无变化)。气候变化已使地球上大多数生物群落中的动植物物候提前,但植物 - 传粉动物时间错配的证据仍然有限。在高山和温带生态系统中,花卉产量和植物繁殖成功率对变暖和低水分可利用性表现出多样的反应,而在北极和热带生物群落中则呈现增加或中性反应的趋势。在高山和温带生物群落中,花蜜回报在变暖和干旱条件下主要受到负面影响,但气味排放增加或成分发生变化。生活型(木本与非木本物种)对气候变化的特征反应模式没有显著影响。传粉动物的繁殖力、体型、生活史、发育和生理特征大多随着生物群落变暖而下降;然而,动物丰度和资源获取特征表现出多样的反应。本综述确定了一些关键的知识空白,这些空白限制了我们对气候变化影响的理解,特别是在热带/亚热带生物群落和南半球纬度地区。它还强调迫切需要对更广泛的植物科和传粉动物类群(如甲虫、黄蜂、脊椎动物)进行采样。应在威胁至关重要的传粉相互作用的其他全球变化人为驱动因素的背景下评估气候变化影响的多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14e9/11851268/27eefd5df023/GCB-31-e70081-g002.jpg

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