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入侵植物对土壤线虫的影响随二氧化碳浓度升高处理的持续时间而变化。

The effects of the invasive plants on soil nematodes vary with the duration of elevated CO treatment.

作者信息

Lu Xiu-Rong, Liu Ming-Chao, Feng Wei-Wei, Qu Bo, Wang Jing-Kuan, Feng Yu-Long

机构信息

College of Land and Environment, Shenyang Agricultural University, Shenyang 110866, Liaoning, China.

Liaoning Key Laboratory for Biological Invasions and Global Changes, College of Bioscience and Biotechnology, Shenyang Agricultural University, Shenyang 110866, Liaoning, China.

出版信息

Plant Divers. 2024 Dec 19;47(4):681-689. doi: 10.1016/j.pld.2024.12.002. eCollection 2025 Jul.

Abstract

Exotic plant invasions and increased atmospheric carbon dioxide (CO) concentration have been determined to independently affect soil nematodes, a key component of soil biota. However, little is known about the long-term effects of these two global change factors and their interactive effects. Over three consecutive years, we cultivated invasive alien plant and its two phylogenetically related natives under both ambient (aCO) and elevated (eCO) atmospheric CO concentrations, and determined the effects of the invader and natives on soil nematodes under different CO concentrations and the relevant mechanism. The abundance of total soil nematodes and that of the dominant trophic group (herbivores) were significantly affected by plant species and CO concentration, and these effects were dependent on the experimental duration, however, the Shannon-diversity of nematodes was not affected by these factors. Under aCO, both invasive and native species significantly increased the total nematode abundance and that of the dominant trophic group with increasing experimental duration, and the amplitude of the increase was greater under the invader relative to the natives. The eCO increased total nematode abundance (second year) and that of the dominant trophic group (third year) under the invader, but not under the natives (or even decreased) with increasing experimental duration. Root litter had greater effects on soil nematode abundance than leaf litter and root exudates did. This study indicates that eCO would aggravate effects of invasive plants on soil nematodes by increasing abundance, and these effects would vary with the duration.

摘要

外来植物入侵和大气二氧化碳(CO₂)浓度升高已被确定会分别影响土壤线虫,而土壤线虫是土壤生物群的关键组成部分。然而,对于这两个全球变化因素的长期影响及其交互作用,我们却知之甚少。连续三年,我们在环境(aCO₂)和升高(eCO₂)的大气CO₂浓度条件下,种植入侵外来植物及其两种系统发育相关的本地植物,并确定了入侵者和本地植物在不同CO₂浓度下对土壤线虫的影响及相关机制。土壤线虫总数和优势营养类群(食草动物)的丰度受植物种类和CO₂浓度的显著影响,且这些影响取决于实验持续时间,然而,线虫的香农多样性不受这些因素影响。在aCO₂条件下,随着实验持续时间的增加,入侵物种和本地物种均显著增加了线虫总数和优势营养类群的丰度,且入侵者的增加幅度相对于本地物种更大。随着实验持续时间的增加,eCO₂增加了入侵者条件下的线虫总数(第二年)和优势营养类群的丰度(第三年),但在本地物种条件下却没有增加(甚至减少)。根际凋落物对土壤线虫丰度的影响大于叶凋落物和根系分泌物。本研究表明,eCO₂会通过增加丰度来加剧入侵植物对土壤线虫的影响,且这些影响会随持续时间而变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d02f/12302496/884b951fe182/ga1.jpg

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