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与气候因素相比,植物功能性状能更好地解释全球叶片昆虫取食的纬度格局。

Plant Functional Traits Better Explain the Global Latitudinal Patterns of Leaf Insect Herbivory than Climatic Factors.

作者信息

Ji Yuhui, Yan Xiaoxu, Xu Jiali, Jumak Mira, Zhang Ruizhi, Wang Lan, Gao Jie

机构信息

College of Grassland Science, Xinjiang Agricultural University, Urumqi 830052, China.

College of Life Sciences, Xinjiang Normal University, Urumqi 830054, China.

出版信息

Plants (Basel). 2025 Apr 25;14(9):1303. doi: 10.3390/plants14091303.

Abstract

Herbivory reflects the interaction between plants and insects in ecosystems, and its latitudinal patterns at the global scale have attracted widespread attention. While many studies support the latitudinal herbivory hypothesis, it remains contentious. This study, based on a global dataset of 1206 herbivory records, explored the global latitudinal patterns of insect herbivory on leaves and their influencing factors. We found that herbivory decreased with increasing latitude from the equator to the poles, supporting the latitudinal herbivory hypothesis. Latitude affected the variation in climate, soil nutrients, and plant functional traits, which ultimately affected herbivory. Plant functional traits were the key factors affecting the global latitudinal patterns of herbivory, with climatic factors playing an important regulatory role, while soil nutrients had a relatively minor impact, explaining 7.3%, 4.66%, and 0.98% of the latitudinal variation in herbivory, respectively. Specifically, plant height and mean annual temperature were the most important drivers of the global latitudinal patterns of herbivory, explaining 3.39% and 3.03%, respectively. Our study focused on two new perspectives-plant functional traits and soil nutrients. Although soil nutrients had a relatively minor influence on the latitudinal patterns of herbivory, we emphasized the significant impact of plant functional traits on the latitudinal patterns of herbivory. Our findings provide new insights into understanding and predicting the geographic patterns of herbivory and ecological interactions in the context of global climate change, offering important references and ecological significance.

摘要

食草作用反映了生态系统中植物与昆虫之间的相互作用,其在全球尺度上的纬度格局已引起广泛关注。尽管许多研究支持纬度食草作用假说,但该假说仍存在争议。本研究基于1206条食草作用记录的全球数据集,探讨了昆虫对叶片的食草作用的全球纬度格局及其影响因素。我们发现,从赤道到两极,食草作用随纬度升高而降低,支持了纬度食草作用假说。纬度影响气候、土壤养分和植物功能性状的变化,最终影响食草作用。植物功能性状是影响食草作用全球纬度格局的关键因素,气候因素起重要调节作用,而土壤养分的影响相对较小,分别解释了食草作用纬度变化的7.3%、4.66%和0.98%。具体而言,株高和年均温度是食草作用全球纬度格局的最重要驱动因素,分别解释了3.39%和3.03%。我们的研究聚焦于植物功能性状和土壤养分这两个新视角。尽管土壤养分对食草作用的纬度格局影响相对较小,但我们强调了植物功能性状对食草作用纬度格局的显著影响。我们的研究结果为理解和预测全球气候变化背景下食草作用的地理格局及生态相互作用提供了新见解,具有重要的参考价值和生态学意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f76e/12073595/275c7817092c/plants-14-01303-g001.jpg

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