52 research outputs found

    Nutrient limitations to bacterial and fungal growth during cellulose decomposition in tropical forest soils

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    Nutrients constrain the soil carbon cycle in tropical forests, but we lack knowledge on how these constraints vary within the soil microbial community. Here, we used in situ fertilization in a montane tropical forest and in two lowland tropical forests on contrasting soil types to test the principal hypothesis that there are different nutrient constraints to different groups of microorganisms during the decomposition of cellulose. We also tested the hypotheses that decomposers shift from nitrogen to phosphorus constraints from montane to lowland forests, respectively, and are further constrained by potassium and sodium deficiency in the western Amazon. Cellulose and nutrients (nitrogen, phosphorus, potassium, sodium, and combined) were added to soils in situ, and microbial growth on cellulose (phospholipid fatty acids and ergosterol) and respiration were measured. Microbial growth on cellulose after single nutrient additions was highest following nitrogen addition for fungi, suggesting nitrogen as the primary limiting nutrient for cellulose decomposition. This was observed at all sites, with no clear shift in nutrient constraints to decomposition between lowland and montane sites. We also observed positive respiration and fungal growth responses to sodium and potassium addition at one of the lowland sites. However, when phosphorus was added, and especially when added in combination with other nutrients, bacterial growth was highest, suggesting that bacteria out-compete fungi for nitrogen where phosphorus is abundant. In summary, nitrogen constrains fungal growth and cellulose decomposition in both lowland and montane tropical forest soils, but additional nutrients may also be of critical importance in determining the balance between fungal and bacterial decomposition of cellulose

    Convergence in phosphorus constraints to photosynthesis in forests around the world

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    This is the final version. Available on open access from Nature Research via the DOI in this recordData availability: The photosynthesis and leaf nutrient data reported in the paper are available at https://doi.org/10.6084/m9.figshare.20010485.v1, and the model results are available on the European open-access repository Zenodo at https://doi.org/10.5281/zenodo.6619615. All other data reported in the paper are presented in the supplementary materials.Code availability: The R code used for analyses is at https://github.com/ellswor2/photo_p_repo2.git. The source code for ORCHIDEE is at https://doi.org/10.14768/20200407002.1.Tropical forests take up more carbon (C) from the atmosphere per annum by photosynthesis than any other type of vegetation. Phosphorus (P) limitations to C uptake are paramount for tropical and subtropical forests around the globe. Yet the generality of photosynthesis-P relationships underlying these limitations are in question, and hence are not represented well in terrestrial biosphere models. Here we demonstrate the dependence of photosynthesis and underlying processes on both leaf N and P concentrations. The regulation of photosynthetic capacity by P was similar across four continents. Implementing P constraints in the ORCHIDEE-CNP model, gross photosynthesis was reduced by 36% across the tropics and subtropics relative to traditional N constraints and unlimiting leaf P. Our results provide a quantitative relationship for the P dependence for photosynthesis for the front-end of global terrestrial C models that is consistent with canopy leaf measurements

    Temperature sensitivity of soil enzymes along an elevation gradient in the Peruvian Andes

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    Soil enzymes are catalysts of organic matter depolymerisation, which is of critical importance for ecosystem carbon (C) cycling. Better understanding of the sensitivity of enzymes to temperature will enable improved predictions of climate change impacts on soil C stocks. These impacts may be especially large in tropical montane forests, which contain large amounts of soil C. We determined the temperature sensitivity (Q 10) of a range of hydrolytic and oxidative enzymes involved in organic matter cycling from soils along a 1900 m elevation gradient (a 10 °C mean annual temperature gradient) of tropical montane forest in the Peruvian Andes. We investigated whether the activity (V max) of selected enzymes: (i) exhibited a Q 10 that varied with elevation and/or soil properties; and (ii) varied among enzymes and according to the complexity of the target substrate for C-degrading enzymes. The Q 10 of V max for β-glucosidase and β-xylanase increased with increasing elevation and declining mean annual temperature. For all other enzymes, including cellobiohydrolase, N-acetyl β-glucosaminidase and phosphomonoesterase, the Q 10 of V max did not vary linearly with elevation. Hydrolytic enzymes that degrade more complex C compounds had a greater Q 10 of V max, but this pattern did not apply to oxidative enzymes because phenol oxidase had the lowest Q 10 value of all enzymes studied here. Our findings suggest that regional differences in the temperature sensitivities of different enzyme classes may influence the terrestrial C cycle under future climate warming

    Heritable symbionts in a world of varying temperature

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    Heritable microbes represent an important component of the biology, ecology and evolution of many plants, animals and fungi, acting as both parasites and partners. In this review, we examine how heritable symbiont–host interactions may alter host thermal tolerance, and how the dynamics of these interactions may more generally be altered by thermal environment. Obligate symbionts, those required by their host, are considered to represent a thermally sensitive weak point for their host, associated with accumulation of deleterious mutations. As such, these symbionts may represent an important determinant of host thermal envelope and spatial distribution. We then examine the varied relationship between thermal environment and the frequency of facultative symbionts that provide ecologically contingent benefits or act as parasites. We note that some facultative symbionts directly alter host thermotolerance. We outline how thermal environment will alter the benefits/costs of infection more widely, and additionally modulate vertical transmission efficiency. Multiple patterns are observed, with symbionts being cold sensitive in some species and heat sensitive in others, with varying and non-coincident thresholds at which phenotype and transmission are ablated. Nevertheless, it is clear that studies aiming to predict ecological and evolutionary dynamics of symbiont–host interactions need to examine the interaction across a range of thermal environments. Finally, we discuss the importance of thermal sensitivity in predicting the success/failure of symbionts to spread into novel species following natural/engineered introduction

    A systematic review of randomised controlled trials assessing effectiveness of prosthetic and orthotic interventions.

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    BACKGROUND: Assistive products are items which allow older people and people with disabilities to be able to live a healthy, productive and dignified life. It has been estimated that approximately 1.5% of the world's population need a prosthesis or orthosis. OBJECTIVE: The objective of this study was to systematically identify and review the evidence from randomized controlled trials assessing effectiveness and cost-effectiveness of prosthetic and orthotic interventions. METHODS: Literature searches, completed in September 2015, were carried out in fourteen databases between years 1995 and 2015. The search results were independently screened by two reviewers. For the purpose of this manuscript, only randomized controlled trials which examined interventions using orthotic or prosthetic devices were selected for data extraction and synthesis. RESULTS: A total of 342 randomised controlled trials were identified (319 English language and 23 non-English language). Only 4 of these randomised controlled trials examined prosthetic interventions and the rest examined orthotic interventions. These orthotic interventions were categorised based on the medical conditions/injuries of the participants. From these studies, this review focused on the medical condition/injuries with the highest number of randomised controlled trials (osteoarthritis, fracture, stroke, carpal tunnel syndrome, plantar fasciitis, anterior cruciate ligament, diabetic foot, rheumatoid and juvenile idiopathic arthritis, ankle sprain, cerebral palsy, lateral epicondylitis and low back pain). The included articles were assessed for risk of bias using the Cochrane Risk of Bias tool. Details of the clinical population examined, the type of orthotic/prosthetic intervention, the comparator/s and the outcome measures were extracted. Effect sizes and odds ratios were calculated for all outcome measures, where possible. CONCLUSIONS: At present, for prosthetic and orthotic interventions, the scientific literature does not provide sufficient high quality research to allow strong conclusions on their effectiveness and cost-effectiveness

    Caratterizzazione di alcuni siti della rete accelerometrica nazionale al fine di individuare la risposta sismica locale

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    Le indagini geotecniche finalizzate alla stima della risposta sismica locale si limitano molto spesso ai primi 30 m di profondità, valore che è diventato uno standard per la classificazione delle caratteristiche di un sito. Negli anni ’90 Borcherdt (1994) e Martin e Dobry (1994) suggerirono 30 m come la profondità standard di indagine per la verifica delle strutture. Boore et al. (1993, 1994, 1997) e Boore e Joyner (1997) basarono le regressioni per il calcolo delle leggi predittive del moto del suolo sullo stesso parametro. Nel 1997 negli Stati Uniti il National Earthquake Hazards Reduction Program (NEHRP) nella stesura delle norme tecniche per le costruzioni in zona sismica (FEMA, 1997) utilizza per la prima volta il parametro Vs30 come indice per la classificazione dei suoli, con lo scopo di definirne l’amplificazione. Le norme tecniche per le costruzioni in zona sismica della comunità Europea, EC8 (ENV, 1998) ente da dati provenienti dagli Stati Uniti occidentali e, utilizzando dati provenienti dalla stessa regione, Wald & Mori (2000) segnalano che le VS,30 non sono molto ben correlate con l’entità dell’amplificazione, in quanto esiste una forte dispersione dei dati. La figura 1.1 mostra il rapporto tra le amplificazioni, mediate sull’intervallo di frequenza compreso tra 3-5 Hz. raccomandano lo stesso parametro per suddividere i terreni, anche se le classi differiscono in parte dalla classificazione NEHRP. Infine, anche in Italia, le Norme Tecniche per le Costruzioni (Normative Tecniche per le Costruzioni, Gazzetta Ufficiale del 14/01/2008) adottano la stessa suddivisione dei terreni adottata dall’EC8.L’attendibilità della velocità delle onde di taglio nei primi 30 m (VS,30) come estimatore della risposta sismica di un sito, in termini di frequenza e amplificazione, è tuttavia molto discussa.Innanzitutto il parametro è stato ricavato unicamente da dati provenienti dagli Stati Uniti occidentali e, utilizzando dati provenienti dalla stessa regione, Wald & Mori (2000) segnalano che le Vs30 non sono molto ben correlate con l’entità dell’amplificazione, in quanto esiste una forte dispersione dei dati. La figura 1.1 mostra il rapporto tra le amplificazioni, mediate sull’intervallo di frequenza compreso tra 3-5 Hz. I valori risultano effettivamente molto dispersi, ma questo risultato può essere spiegato col fatto che non tutte le classi di sito hanno frequenza di risonanza compreso in questo intervallo di frequenza. Perciò per alcuni siti la media è stata calcolata nell’intorno della frequenza di risonanza (sulle amplificazioni massime), mentre per altri è stata calcolata sulle armoniche superiori, che hanno ampiezze minori. Lavori eseguiti con dati provenienti da altre regioni sottolineano come le Vs30 non siano buoni estimatori per la predizione di amplificazioni in bacini profondi (Park & Hashash, 2004), per la stima delle amplificazioni in altre regioni (Stewart et al., 2003) o in presenza di inversioni di velocità (Di Giacomo et al., 2005). Uno studio recente, eseguito su dati giapponesi (Zhao et al., 2006) si è evitato l’uso della Vs30 perché strati spessi di terreno rigido posti sopra il substrato roccioso amplificano il moto di lungo periodo, mentre gli strati sottili e soffici tendono ad amplificare il moto di corto periodo: ciò significa che la VS,30 non può rappresentare il periodo predominante del sito, dato che si basa solo sugli strati superficiali. Secondo Mucciarelli e Gallipoli (2006) il confronto tra l’amplificazione sismica al sito e la Vs30 mostra che quest’ultimo parametro non è adeguato per spiegare gli effetti di sito osservati in Italia a causa delle situazioni geologiche particolari che sono diffuse nel nostro paese. La figura 1.2 mostra la distribuzione dell’ampiezza rispetto alla classe di sito, in cui si vede che le classi sono mal discriminate e le mediane delle classi A e B (indicate dalla linea nera) sono uguali. È però necessario notare che questo grafico è stato costruito utilizzando le ampiezze ricavate col metodo dei rapporti spettrali H/V, ma in letteratura (Bard, 1999) è dimostrato che tali rapporti spettrali permettono di stimare la frequenza di risonanza, ma falliscono nella stima del valore di amplificazione. In particolare la Vs30 sottostima gli effetti locali ai siti con inversione di velocità e li sovrastima in siti con bacini profondi. La Vs30 sembra fornire dei buoni risultati solo in siti che abbiano un profilo di velocità monotono, crescente con la profondità e un forte contrasto di impedenza nella prima decina di metri. Questo studio si propone di verificare l’attendibilità della velocità delle onde di taglio valutate nei primi 30 m come estimatore della risposta sismica di un sito. Per questo scopo sono state selezionate 45 stazioni della Rete Accelerometrica Nazionale, di cui si conoscono i profili stratigrafici e i profili di velocità delle onde di taglio e di compressione. Inoltre sono state raccolte le registrazioni strong motion relative ai terremoti registrati da queste stazioni. Gli effetti di sito sono stati valutati in due modi: · Le registrazioni sono state utilizzate per calcolare i rapporti spettrali H/V per ricavare la frequenza fondamentale propria di ciascun sito (f0) e il relativo valore di amplificazione; · I profili di velocità delle onde di taglio sono serviti per ricavare il modello teorico monodimensionale per il calcolo della funzione di trasferimento del sito, eseguito per mezzo del modello proposto da Haskell e Thomson (Haskell, 1953, Thomson 1950), da cui ricavare la f0 e l’amplificazione. I valori ottenuti con i due metodi sono stati poi confrontati per verificare la congruenza dei risultati. I profili di velocità hanno permesso di classificare le stazioni utilizzando la velocità media delle onde di taglio nei primi 30 m (Vs30), secondo la normativa italiana. I risultati ottenuti dalla valutazione della risposta di ciascun sito, espressi in termini di frequenza fondamentale e amplificazione, sono stati correlati con la rispettiva classe di sito per verificare l’attendibilità del parametro delle Vs30 come estimatore degli effetti di sito

    Investigating the controls on soil organic matter decomposition in tussock tundra soil and permafrost after fire

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    This is the author accepted manuscript. The final version is available from Elsevier via the DOI in this record.Rapid warming in Arctic ecosystems is resulting in increased frequency of disturbances such as fires, changes in the distribution and productivity of different plant communities, increasing thaw depths in permafrost soils and greater nutrient availability, especially nitrogen. Individually and collectively, these factors have the potential to strongly affect soil C decomposition rates, with implications for the globally significant stores of carbon in this region. However, considerable uncertainty remains regarding how C decomposition rates are controlled in Arctic soils. In this study we investigated how temperature, nitrogen availability and labile C addition affected rates of CO2 production in short (10-day for labile C) and long-term (1.5 year for temperature and N) incubations of samples collected from burned and unburned sites in the Anaktuvuk river burn on the North Slope of Alaska from different depths (organic horizon, mineral horizon and upper permafrost). The fire in this region resulted in the loss of several cms of the organic horizon and also increased active layer depth allowing the impacts of four years of thaw on deeper soil layers to be investigated. Respiration rates did not decline substantially during the long-term incubation, although decomposition rates per unit organic matter were greater in the organic horizon. In the mineral and upper permafrost soil horizons, CO2 production was more temperature sensitive, while N addition inhibited respiration in the mineral and upper permafrost layers, especially at low temperatures. In the short-term incubations, labile C additions promoted the decomposition of soil organic matter in the mineral and upper permafrost samples, but not in the organic samples, with this effect being lost following N addition in the deeper layers. These results highlight that (i) there are substantial amounts of labile organic matter in these soils (ii), the organic matter stored in mineral and upper permafrost in the tussock tundra is less readily decomposable than in the organic horizon, but that (iii) its decomposition is more sensitive to changes in temperature and that (iv) microbial activity in deeper soil layers is limited by labile C availability rather than N. Collectively, these results indicate that in addition to the loss of C by combustion of organic matter, increasing fire frequency also has the potential to indirectly promote the release of soil C to the atmosphere in the years following the disturbance
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