Soil Biota in a Nonnative Range has a Net Positive Effect on the Perennial Herb Lupinus polyphyllus

Q4 Multidisciplinary Ohio Journal of Sciences Pub Date : 2023-08-30 DOI:10.18061/ojs.v123i2.9219
Danielle Sirivat, S. Ramula, J. H. Burns
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Abstract

Invasive species can have detrimental effects on the health of local ecosystems. Lupinus polyphyllus is an herb native to western and northeast North America, but the species has become invasive worldwide. In northeastern Ohio, United States, the species is nonnative, but not invasive and not spreading rapidly. Because physical distance is not a barrier, there are other reasons behind the inability of the species to become locally invasive. Here, the net effect of the local soil biota on the range expansion of the species was tested to explore 2 alternative, non-mutually exclusive, hypotheses. First, if belowground enemies limit this species range, thenet effect of the soil biota would be negative. Alternatively, soil mutualists might have a relatively greater net effect on plant fitness. A greenhouse experiment was conducted with 3 populations of seeds from the invasive range across 2 experimental treatments: a general fungicide (ZeroTol®) treatment and a water-control treatment. Fungicide treatment reduced total biomass in 2 out of 3 populations, consistent with limitations by the abundance of belowground mutualists. Fungicide treatment also changed root structure by reducing the number of nodules, root length, and diameter, while increasing root tissue density. Although the fungicidetreatment hindered the growth of lupines overall, the changes in root structure indicate that the treated individuals were able to partially compensate by shifting to more of an outsourcing method of resource acquisition. The results suggest that in addition to belowground mutualistic interactions, phenotypic plasticity and intraspecific genetic variation may also contribute to the success of L. polyphyllus in its nonnative ranges.
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非本地区土壤生物群对多年生草本植物多叶羽扇豆的净正效应
入侵物种可能对当地生态系统的健康产生有害影响。羽扇豆是一种原产于北美洲西部和东北部的草本植物,但该物种已在全球范围内入侵。在美国俄亥俄州东北部,该物种是非本地物种,但没有入侵性,传播速度也不快。由于物理距离不是障碍,该物种无法成为本地入侵物种的背后还有其他原因。在这里,测试了当地土壤生物群对物种范围扩展的净影响,以探索两种非互斥的替代假设。首先,如果地下的敌人限制了这个物种的范围,土壤生物群的负面影响将是负面的。或者,土壤互惠主义者可能对植物适应性产生相对更大的净影响。对来自入侵范围的3个种子种群进行了温室实验,共有2个实验处理:一般杀菌剂(ZeroTol®)处理和水分控制处理。杀菌剂处理降低了三分之二种群的总生物量,这与地下互惠生物丰度的限制一致。杀菌剂处理还通过减少根瘤数量、根系长度和直径来改变根系结构,同时增加根系组织密度。尽管杀菌剂处理总体上阻碍了羽扇豆的生长,但根系结构的变化表明,经过处理的个体能够通过转向更多的资源获取外包方法来进行部分补偿。结果表明,除了地下互惠相互作用外,表型可塑性和种内遗传变异也可能有助于多叶L.polyphyllus在其非本地范围内的成功。
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来源期刊
Ohio Journal of Sciences
Ohio Journal of Sciences Multidisciplinary-Multidisciplinary
CiteScore
0.30
自引率
0.00%
发文量
13
期刊介绍: Published quarterly, plus the Annual Meeting Program Abstracts, The Ohio Journal of Science is the official publication of the Academy. The Journal publishes peer-reviewed, refereed papers contributing original knowledge to science, engineering, technology, education and their applications. The Journal is indexed and abstracted by many of the world"s leading indexing and abstracting services including State Academies of Science Abstracts which indexes the past 50 years of The Ohio Journal of Science.
期刊最新文献
Soil Biota in a Nonnative Range has a Net Positive Effect on the Perennial Herb Lupinus polyphyllus Book Review - The Brilliance of Charles Whittlesey: Geologist, Surveyor, Military Engineer, Civil War Strategist, 2022. SM Totten Book Review - Mammals of Ohio, 2022. JD Harder, GN Cameron Letter to a Young Scientist Ecological Impacts of Anthropogenic Fire in Southwestern Ohio, USA, Documented from Public Land Survey Records from 1802 and 1803
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