Key Laboratory of Southwest China Wildlife Resources Conservation (Ministry of Education), China West Normal University, Nanchong, Sichuan 637009, China.
School of Life Sciences, Southwest University of Science and Technology, Mianyang, Sichuan 621010, China.
Sci Total Environ. 2020 Dec 10;747:141534. doi: 10.1016/j.scitotenv.2020.141534. Epub 2020 Aug 5.
Exotic invasive plants possess the capacity to disrupt and extirpate populations of native species. Native plants' increased sensitivity to invaders' allelochemicals is a mechanism by which this can occur. However, it is not clear whether and how the allelopathic effects of invasive plants affect members of the soil faunal community - particularly the important functional guild of earthworms. We used the model earthworm Eisenia fetida to investigate the responses to extracts from the widely invasive Asterids (Ageratina adenophora, Bidens pilosa, Erigeron annuus) and closely-related native species in a greenhouse experiment. We observed declines in body mass and respiration, and increases in oxidative and DNA damage biomarkers in the native earthworm E. fetida when grown under root and leaf extracts from these invasive plants. These effects were concentration-dependent, and worm growth and physiology was most negatively affected under the highest concentrations of leaf extracts. Most importantly, extracts from invasive plants caused significantly more negative effects on E. fetida than did extracts from native plant species, indicating allelopathy from invasive plants may inhibit earthworm physiological functioning. These results expand the domain of the novel weapons hypothesis to the earthworm guild and demonstrate the utility of E. fetida as a bioindicator for plant allelochemicals.
外来入侵植物具有破坏和消灭本地物种种群的能力。本地植物对入侵植物化感物质的敏感性增加是这种情况发生的一种机制。然而,目前尚不清楚外来入侵植物的化感作用是否以及如何影响土壤动物群落的成员——特别是蚯蚓这一重要的功能类群。我们使用模式蚯蚓赤子爱胜蚓(Eisenia fetida)在温室实验中研究了广泛入侵的菊科(Ageratina adenophora、Bidens pilosa、Erigeron annuus)和近缘本地物种的提取物对其的反应。我们观察到,当在这些入侵植物的根和叶提取物下生长时,本地蚯蚓赤子爱胜蚓的体重和呼吸作用下降,氧化和 DNA 损伤生物标志物增加。这些影响与浓度有关,在叶提取物的最高浓度下,蚯蚓的生长和生理功能受到的负面影响最大。最重要的是,入侵植物的提取物对赤子爱胜蚓的负面影响明显大于本地植物物种的提取物,这表明入侵植物的化感作用可能会抑制蚯蚓的生理功能。这些结果将新武器假说的范围扩展到了蚯蚓类群,并证明了赤子爱胜蚓作为植物化感物质生物指示剂的效用。