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"Roth, Alexander M."
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No evidence of a long-lived seedbank in common buckthorn, Rhamnus cathartica L., within Minnesota deciduous forests
by
Wragg, Peter D
,
Reich, Peter B
,
Roth, Alexander M
in
Deciduous forests
,
Environmental monitoring
,
Forests
2023
The persistence of invasive plant species in soil seedbanks can pose a significant obstacle to effectively managing invasive plant populations. Rhamnus cathartica (common buckthorn, hereafter ‘buckthorn’) is a wide-spread invader of forest understories in North America that can quickly re-establish following removal, in part due to germination of buckthorn seedbanks. Although empirical evidence seems slight, influential organizations communicate that buckthorn seedbanks endure for at least six years. In order to assess the accuracy of such messaging, we characterize the duration of buckthorn in soil seedbanks by monitoring germination of both planted and naturally-occurring seeds. Across the 13,232 buckthorn seeds planted, germination occurred almost entirely in the first two years after planting (96.6% and 3.3% in the first and second year after planting, respectively). Our observations of naturally-occurring seedbanks displayed similar patterns, with 97.9% and 1.9% of all newly emerged seedlings found in the first and second years following removal of mature buckthorn stands, respectively. These findings indicate that re-occupation by buckthorn following removal results more from incomplete removal, an initial flush of germinants, and dispersal from outside the site than from long-lived seedbanks. Therefore, if buckthorn is removed comprehensively during two years of intensive initial management then subsequent buckthorn re-invasion is likely to be sporadic and to require less intensive, targeted follow-up management.
Journal Article
Invasive earthworms interact with abiotic conditions to influence the invasion of common buckthorn (Rhamnus cathartica)
by
Roth, Alexander M.
,
Eisenhauer, Nico
,
Whitfeld, Timothy J. S.
in
Abiotic factors
,
Animals
,
Biomass
2015
Common buckthorn (Rhamnus cathartica L.) is one of the most abundant and ecologically harmful nonnative plants in forests of the Upper Midwest United States. At the same time, European earthworms are invading previously glaciated areas in this region, with largely anecdotal evidence suggesting they compound the negative effects of buckthorn and influence the invasibility of these forests. Germination and seedling establishment are important control points for colonization by any species, and manipulation of the conditions influencing these life history stages may provide insight into why invasive species are successful in some environments and not others. Using a greenhouse microcosm experiment, we examined the effects of important biotic and abiotic factors on the germination and seedling establishment of common buckthorn. We manipulated light levels, leaf litter depth and earthworm presence to investigate the independent and interactive effects of these treatments on buckthorn establishment. We found that light and leaf litter depth were significant predictors of buckthorn germination but that the presence of earthworms was the most important factor; earthworms interacted with light and leaf litter to increase the number and biomass of buckthorn across all treatments. Path analysis suggested both direct and moisture-mediated indirect mechanisms controlled these processes. The results suggest that the action of earthworms may provide a pathway through which buckthorn invades forests of the Upper Midwest United States. Hence, researchers and managers should consider co-invasion of plants and earthworms when investigating invasibility and creating preemptive or post-invasion management plans.
Journal Article
Invasive plants in Minnesota are \joining the locals\: A trait-based analysis
by
Roth, Alexander M.
,
Whitfeld, Timothy J. S.
,
Lodge, Alexandra G.
in
Alliaria petiolata
,
carbon nitrogen ratio
,
cold
2018
Questions: Predicting which newly arrived species will establish and become invasive is a problem that has long vexed researchers. In a study of cold temperate oak forest stands, we examined two contrasting hypotheses regarding plant functional traits to explain the success of certain non-native species. Under the \"join the locals\" hypothesis, successful invaders are expected to share traits with resident species because they employ successful growth strategies under light-limited understorey conditions. Instead, under the \"try harder\" hypothesis, successful invaders are expected to have traits different from native species in order to take advantage of unused niche space. Location: Minnesota, USA. Methods: We examined these two theories using 109 native and 11 non-native plants in 68 oak forest stands. We focused on traits related to plant establishment and growth, including specific leaf area (SLA), leaf carbon-to-nitrogen ratio (C:N), wood density, plant maximum height, mycorrhizal type, seed mass and growth form. We compared traits of native and non-native species using ordinations in multidimensional trait space and compared community-weighted mean (CWM) trait values across sites. Results: We found few differences between trait spaces occupied by native and non-native species. Non-native species occupied smaller areas of trait space than natives, yet were within that of the native species, indicating similar growth strategies. We observed a higher proportion of non-native species in sites with higher native woody species CWM SLA and lower CWM C:N. Higher woody CWM SLA was observed in sites with higher soil pH, while lower CWM C:N was found in sites with higher light levels. Conclusions: Non-native plants in this system have functional traits similar to natives and are therefore \"joining the locals.\" However, non-native plants may possess traits toward the acquisitive end of the native plant trait range, as evidenced by higher non-native plant abundance in high-resource environments.
Journal Article
A tale of two studies: Detection and attribution of the impacts of invasive plants in observational surveys
by
Roth, Alexander M.
,
Whitfeld, Timothy J. S.
,
Lodge, Alexandra G.
in
Abundance
,
analysis of covariance
,
Biodiversity
2018
1. Short-term experiments cannot characterize how long-lived, invasive shrubs influence ecological properties that can be slow to change, including native diversity and soil fertility. Observational studies are thus necessary, but often suffer from methodological issues. 2. To highlight ways of improving the design and interpretation of observational studies that assess the impacts of invasive plants, we compare two studies of nutrient cycling and earthworms along two separate gradients of invasive shrub abundance. By considering the divergent sampling strategies and statistical analyses of these two studies, and interpreting their contradictory results in the context of other studies, we also aim to better describe the impacts of the focal invader, Rhamnus cathartica. 3. In a new study of a single site in Minnesota, we observed positive correlations between buckthorn abundance and soil pH, soil nutrient pools, nutrient fluxes through leaf litterfall, earthworm abundance and root biomass. Multiple regression models showed these relationships persisted after accounting for variability in soil texture and tree species composition. For a separate, more expansive study in Illinois, other authors reported little to no correlation between buckthorn abundance and 10 soil properties, including earthworm abundance, pH and nutrient concentrations. However, like many other studies, their regression models only assessed predictors related to invader abundance. R²-values for models of ecosystem properties ranged from 0 to .79 (adjusted-R²) for our study in Minnesota and from <.05 to .16 (unadjusted) for the prior study in Illinois. 4. Differences in sampling error and use of predictor variables between the two studies likely explain the contrasting results. 5. Synthesis and applications. To reduce the uncertainty of conclusions from observational studies of invasive plants, future studies must ensure that heterogeneity of soils and vegetation is adequately accounted for in the sampling strategy and statistical analyses (e.g. analysis of covariance, multiple regression). Particular attention should be given to ecosystem properties with variability that likely predates the invader (e.g. geophysical features and tree community composition). In our study, effects of buckthorn on ecosystem properties were not only robust to the inclusion of potentially confounding predictors, but also consistent with expectations based on ecological stoichiometry and mass balance of element flow.
Journal Article
Resident plant diversity and introduced earthworms have contrasting effects on the success of invasive plants
by
Lodge, Alexandra G
,
Eisenhauer, Nico
,
Frelich, Lee E
in
Animal and plant ecology
,
Animal, plant and microbial ecology
,
Annelida and closely related phyla: sipuncula. Echiura. Nemertinea
2014
Theoretical predictions and empirical studies suggest that resident species diversity is an important driver of community invasibility. Through trait-based processes, plants in communities with high resident species diversity occupy a wider range of ecological niches and are more productive than low diversity communities, potentially reducing the opportunities for invasion through niche preemption. In terrestrial plant communities, biotic ecosystem engineers such as earthworms can also affect invasibility by reducing leaf litter stocks and influencing soil conditions. In a greenhouse experiment, we simultaneously manipulated resident species diversity and earthworm presence to investigate independent and interactive effects of these two variables on the success of several invasive plants. Higher diversity of resident species was associated with lower biomass of invasives, with the effect mediated through resident species biomass. The presence of earthworms had a strong positive effect on the biomass of invasive species across all levels of resident species diversity and a weaker indirect negative effect via decreased soil moisture. Earthworms also weakened the positive correlation between resident species diversity and productivity. We did not observe any interactive effects of resident species biomass and earthworms on invasive species success. Partitioning the net biodiversity effect indicated that selection effects increased with resident species diversity whereas complementarity effects did not. Results suggest that managing for diverse forest communities may decrease the susceptibility of these communities to invasions. However, the presence of introduced earthworms in previously earthworm-free sites may undermine these efforts. Furthermore, future studies of plant community invasibility should account for the effects of introduced earthworms.
Journal Article
Release of genetically engineered insects: a framework to identify potential ecological effects
by
Morey, Amy C.
,
Roth, Alexander M.
,
Kaser, Joe M.
in
Agriculture
,
Anopheles gambiae
,
Aquatic insects
2013
Genetically engineered (GE) insects have the potential to radically change pest management worldwide. With recent approvals of GE insect releases, there is a need for a synthesized framework to evaluate their potential ecological and evolutionary effects. The effects may occur in two phases: a transitory phase when the focal population changes in density, and a steady state phase when it reaches a new, constant density. We review potential effects of a rapid change in insect density related to population outbreaks, biological control, invasive species, and other GE organisms to identify a comprehensive list of potential ecological and evolutionary effects of GE insect releases. We apply this framework to the Anopheles gambiae mosquito – a malaria vector being engineered to suppress the wild mosquito population – to identify effects that may occur during the transitory and steady state phases after release. Our methodology reveals many potential effects in each phase, perhaps most notably those dealing with immunity in the transitory phase, and with pathogen and vector evolution in the steady state phase. Importantly, this framework identifies knowledge gaps in mosquito ecology. Identifying effects in the transitory and steady state phases allows more rigorous identification of the potential ecological effects of GE insect release. Genetically engineered insects have the potential to radically change pest management worldwide, but there remains a need for a synthesized framework to identify their potential adverse ecological and evolutionary effects. We propose that potential effects associated with insect release may occur during two distinct phases of release ‐ a transitory and a steady state phase. We apply our framework to the Anopheles gambiae mosquito, a malaria vector being engineered to suppress the wild mosquito population, to illustrate how our framework allows for more rigorous identification of the potential ecological and evolutionary effects of a GE insect release.
Journal Article
High-dose methotrexate with or without whole brain radiotherapy for primary CNS lymphoma (G-PCNSL-SG-1): a phase 3, randomised, non-inferiority trial
by
Leithäuser, Malte
,
Birnbaum, Tobias
,
Kanz, Lothar
in
Aged
,
Antimetabolites, Antineoplastic - administration & dosage
,
Antimetabolites, Antineoplastic - adverse effects
2010
High-dose methotrexate is the standard of care for patients with newly diagnosed primary CNS lymphoma. The role of whole brain radiotherapy is controversial because delayed neurotoxicity limits its acceptance as a standard of care. We aimed to investigate whether first-line chemotherapy based on high-dose methotrexate was non-inferior to the same chemotherapy regimen followed by whole brain radiotherapy for overall survival.
Immunocompetent patients with newly diagnosed primary CNS lymphoma were enrolled from 75 centres and treated between May, 2000, and May, 2009. Patients were allocated by computer-generated block randomisation to receive first-line chemotherapy based on high-dose methotrexate with or without subsequent whole brain radiotherapy, with stratification by age (<60
vs ≥60 years) and institution (Berlin
vs Tübingen
vs all other sites). The biostatistics centre assigned patients to treatment groups and informed local centres by fax; physicians and patients were not masked to treatment group after assignment. Patients enrolled between May, 2000, and August, 2006, received high-dose methotrexate (4 g/m
2) on day 1 of six 14-day cycles; thereafter, patients received high-dose methotrexate plus ifosfamide (1·5 g/m
2) on days 3–5 of six 14-day cycles. In those assigned to receive first-line chemotherapy followed by radiotherapy, whole brain radiotherapy was given to a total dose of 45 Gy, in 30 fractions of 1·5 Gy given daily on weekdays. Patients allocated to first-line chemotherapy without whole brain radiotherapy who had not achieved complete response were given high-dose cytarabine. The primary endpoint was overall survival, and analysis was per protocol. Our hypothesis was that the omission of whole brain radiotherapy does not compromise overall survival, with a non-inferiority margin of 0·9. This trial is registered with
ClinicalTrials.gov, number
NCT00153530.
551 patients (median age 63 years, IQR 55–69) were enrolled and randomised, of whom 318 were treated per protocol. In the per-protocol population, median overall survival was 32·4 months (95% CI 25·8–39·0) in patients receiving whole brain radiotherapy (n=154), and 37·1 months (27·5–46·7) in those not receiving whole brain radiotherapy (n=164), hazard ratio 1·06 (95% CI 0·80–1·40; p=0·71). Thus our primary hypothesis was not proven. Median progression-free survival was 18·3 months (95% CI 11·6–25·0) in patients receiving whole brain radiotherapy, and 11·9 months (7·3–16·5; p=0·14) in those not receiving whole brain radiotherapy. Treatment-related neurotoxicity in patients with sustained complete response was more common in patients receiving whole brain radiotherapy (22/45, 49% by clinical assessment; 35/49, 71% by neuroradiology) than in those who did not (9/34, 26%; 16/35, 46%).
No significant difference in overall survival was recorded when whole brain radiotherapy was omitted from first-line chemotherapy in patients with newly diagnosed primary CNS lymphoma, but our primary hypothesis was not proven. The progression-free survival benefit afforded by whole brain radiotherapy has to be weighed against the increased risk of neurotoxicity in long-term survivors.
German Cancer Aid.
Journal Article
Global data on earthworm abundance, biomass, diversity and corresponding environmental properties
2021
Earthworms are an important soil taxon as ecosystem engineers, providing a variety of crucial ecosystem functions and services. Little is known about their diversity and distribution at large spatial scales, despite the availability of considerable amounts of local-scale data. Earthworm diversity data, obtained from the primary literature or provided directly by authors, were collated with information on site locations, including coordinates, habitat cover, and soil properties. Datasets were required, at a minimum, to include abundance or biomass of earthworms at a site. Where possible, site-level species lists were included, as well as the abundance and biomass of individual species and ecological groups. This global dataset contains 10,840 sites, with 184 species, from 60 countries and all continents except Antarctica. The data were obtained from 182 published articles, published between 1973 and 2017, and 17 unpublished datasets. Amalgamating data into a single global database will assist researchers in investigating and answering a wide variety of pressing questions, for example, jointly assessing aboveground and belowground biodiversity distributions and drivers of biodiversity change.
Journal Article
Global distribution of earthworm diversity
2019
Earthworms are key components of soil ecological communities, performing vital functions in decomposition and nutrient cycling through ecosystems. Using data from more than 7000 sites, Phillips et al. developed global maps of the distribution of earthworm diversity, abundance, and biomass (see the Perspective by Fierer). The patterns differ from those typically found in aboveground taxa; there are peaks of diversity and abundance in the mid-latitude regions and peaks of biomass in the tropics. Climate variables strongly influence these patterns, and changes are likely to have cascading effects on other soil organisms and wider ecosystem functions.Science, this issue p. 480; see also p. 425Soil organisms, including earthworms, are a key component of terrestrial ecosystems. However, little is known about their diversity, their distribution, and the threats affecting them. We compiled a global dataset of sampled earthworm communities from 6928 sites in 57 countries as a basis for predicting patterns in earthworm diversity, abundance, and biomass. We found that local species richness and abundance typically peaked at higher latitudes, displaying patterns opposite to those observed in aboveground organisms. However, high species dissimilarity across tropical locations may cause diversity across the entirety of the tropics to be higher than elsewhere. Climate variables were found to be more important in shaping earthworm communities than soil properties or habitat cover. These findings suggest that climate change may have serious implications for earthworm communities and for the functions they provide.
Journal Article
Utility of transesophageal echocardiography in determining the source of arterial embolization
by
MARIANO, Myron C
,
GUTIERREZ, Charles J
,
ALEXANDER, Jason Q
in
Aged
,
Aorta - diagnostic imaging
,
Aortography
2002
Arterial embolism is frequently the product of a cardiac source. Arterial-arterial embolization and paradoxical embolization also occur. Failure to identify the point of origin may subject the patient to an important incidence of preventable events. Conventional echocardiography is insensitive in identifying a cardiac origin of emboli and is of little use in identifying sources of arterial-arterial emboli. Aortography is invasive and not as sensitive in detecting mobile aortic thrombus, which is a recently reported embolic source. Herein we describe seven cases in which transesophageal echocardiography was uniquely valuable in identifying the source or mechanism of arterial embolization. We performed chart reviews of patients with arterial emboli definitively diagnosed after utilizing transesophageal echocardiography. Four females and three males with a mean age of 68 years were included in the study. Peripheral embolization occurred in four patients, visceral embolization occurred in one patient, and two patients experienced cerebrovascular events. Six patients had transthoracic echocardiography and six patients had aortography. None of these studies identified the source of embolization. All patients were diagnosed with transesophageal echocardiography. Mobile aortic thrombus was the primary embolic source in three patients, paradoxical embolization occurred in two patients, and two patients had a combination of findings including one patient with atrial thrombus. Two patients received operative repair of the aorta and five underwent nonoperative management. There was one mortality in the operative group. The source of arterial emboli remains obscure in some patients. Transesophageal ultrasound can be valuable in identifying the source or mechanism of embolization even when angiography and conventional echocardiography are negative.
Conference Proceeding