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1.
Proc Natl Acad Sci U S A ; 121(16): e2320623121, 2024 Apr 16.
Article in English | MEDLINE | ID: mdl-38607930

ABSTRACT

Fine root lifespan is a critical trait associated with contrasting root strategies of resource acquisition and protection. Yet, its position within the multidimensional "root economics space" synthesizing global root economics strategies is largely uncertain, and it is rarely represented in frameworks integrating plant trait variations. Here, we compiled the most comprehensive dataset of absorptive median root lifespan (MRL) data including 98 observations from 79 woody species using (mini-)rhizotrons across 40 sites and linked MRL to other plant traits to address questions of the regulators of MRL at large spatial scales. We demonstrate that MRL not only decreases with plant investment in root nitrogen (associated with more metabolically active tissues) but also increases with construction of larger diameter roots which is often associated with greater plant reliance on mycorrhizal symbionts. Although theories linking organ structure and function suggest that root traits should play a role in modulating MRL, we found no correlation between root traits associated with structural defense (root tissue density and specific root length) and MRL. Moreover, fine root and leaf lifespan were globally unrelated, except among evergreen species, suggesting contrasting evolutionary selection between leaves and roots facing contrasting environmental influences above vs. belowground. At large geographic scales, MRL was typically longer at sites with lower mean annual temperature and higher mean annual precipitation. Overall, this synthesis uncovered several key ecophysiological covariates and environmental drivers of MRL, highlighting broad avenues for accurate parametrization of global biogeochemical models and the understanding of ecosystem response to global climate change.


Subject(s)
Ecosystem , Longevity , Biological Evolution , Climate Change , Head
5.
Clin Oncol (R Coll Radiol) ; 34(7): e281-e290, 2022 07.
Article in English | MEDLINE | ID: mdl-35000828

ABSTRACT

AIMS: Overall survival and progression-free survival with concomitant chemoradiotherapy for locally advanced cervical carcinoma have been described as 66% and 58%, respectively, at 5 years. Para-aortic lymph node involvement significantly increases the risk of relapse and death. The role of additional chemotherapy in these patients is as yet undefined. This aim of the present study was to determine the outcome of a cohort of para-aortic lymph node-positive patients treated with neoadjuvant chemotherapy followed by extended-field chemoradiation compared with patients treated with extended-field chemoradiation without neoadjuvant chemotherapy. MATERIALS AND METHODS: We reviewed patients with International Federation of Gynaecology and Obstetrics (FIGO) 2014 stage IB1-IVA cervical carcinoma who received extended-field radiotherapy in addition to standard pelvic chemoradiotherapy with or without neoadjuvant chemotherapy, at University College London Hospital (January 2007 to January 2018). Patients in open clinical trials were excluded. RESULTS: Overall, 47 patients (15.8% of 298 eligible patients) with pelvic and/or para-aortic lymph node-positive cervical carcinoma received extended-field radiotherapy. Nineteen patients (40.4%) had both neoadjuvant chemotherapy (all received six cycles) and extended-field radiotherapy (median 44 days); 28 (59.6%) patients received extended-field radiotherapy alone (median 43 days). All patients completed radical radiotherapy within 49 days. We observed evidence that patients receiving neoadjuvant chemotherapy and extended-field radiotherapy had a lower risk of death (median follow-up 4.8 years, three deaths) compared with extended-field radiotherapy alone (median follow-up 3.0 years, 11 deaths; hazard ratio = 0.27, 95% confidence interval 0.08-1.00; P = 0.05). Three-year overall survival rates were 83.3% (95% confidence interval 66.1-100) and 64.6% (95% confidence interval 44.6-84.6), respectively. A PFS benefit was seen (hazard ratio 0.25, 95% confidence interval 0.08-0.77; P = 0.02), with 3-year PFS rates of 77.8% (95% confidence interval 58.6-97.0) and 35.0% (95% confidence interval 14.0-56.0), respectively. CONCLUSIONS: Our institutional experience suggests that the use of additional systemic therapy before chemoradiotherapy benefits patients with locoregionally advanced (FIGO 2018 IIIC2) cervical cancer. Neoadjuvant chemotherapy was associated with longer overall survival and PFS, without compromising definitive extended-field chemoradiation.


Subject(s)
Uterine Cervical Neoplasms , Chemoradiotherapy , Female , Humans , Lymph Nodes/pathology , Lymphatic Metastasis/pathology , Neoadjuvant Therapy , Neoplasm Recurrence, Local/pathology , Neoplasm Staging , Retrospective Studies , Uterine Cervical Neoplasms/drug therapy , Uterine Cervical Neoplasms/pathology
6.
New Phytol ; 232(3): 973-1122, 2021 11.
Article in English | MEDLINE | ID: mdl-34608637

ABSTRACT

In the context of a recent massive increase in research on plant root functions and their impact on the environment, root ecologists currently face many important challenges to keep on generating cutting-edge, meaningful and integrated knowledge. Consideration of the below-ground components in plant and ecosystem studies has been consistently called for in recent decades, but methodology is disparate and sometimes inappropriate. This handbook, based on the collective effort of a large team of experts, will improve trait comparisons across studies and integration of information across databases by providing standardised methods and controlled vocabularies. It is meant to be used not only as starting point by students and scientists who desire working on below-ground ecosystems, but also by experts for consolidating and broadening their views on multiple aspects of root ecology. Beyond the classical compilation of measurement protocols, we have synthesised recommendations from the literature to provide key background knowledge useful for: (1) defining below-ground plant entities and giving keys for their meaningful dissection, classification and naming beyond the classical fine-root vs coarse-root approach; (2) considering the specificity of root research to produce sound laboratory and field data; (3) describing typical, but overlooked steps for studying roots (e.g. root handling, cleaning and storage); and (4) gathering metadata necessary for the interpretation of results and their reuse. Most importantly, all root traits have been introduced with some degree of ecological context that will be a foundation for understanding their ecological meaning, their typical use and uncertainties, and some methodological and conceptual perspectives for future research. Considering all of this, we urge readers not to solely extract protocol recommendations for trait measurements from this work, but to take a moment to read and reflect on the extensive information contained in this broader guide to root ecology, including sections I-VII and the many introductions to each section and root trait description. Finally, it is critical to understand that a major aim of this guide is to help break down barriers between the many subdisciplines of root ecology and ecophysiology, broaden researchers' views on the multiple aspects of root study and create favourable conditions for the inception of comprehensive experiments on the role of roots in plant and ecosystem functioning.


Subject(s)
Ecosystem , Plants , Databases, Factual , Ecology , Phenotype
8.
New Phytol ; 232(1): 42-59, 2021 10.
Article in English | MEDLINE | ID: mdl-34197626

ABSTRACT

Plant trait variation drives plant function, community composition and ecosystem processes. However, our current understanding of trait variation disproportionately relies on aboveground observations. Here we integrate root traits into the global framework of plant form and function. We developed and tested an overarching conceptual framework that integrates two recently identified root trait gradients with a well-established aboveground plant trait framework. We confronted our novel framework with published relationships between above- and belowground trait analogues and with multivariate analyses of above- and belowground traits of 2510 species. Our traits represent the leaf and root conservation gradients (specific leaf area, leaf and root nitrogen concentration, and root tissue density), the root collaboration gradient (root diameter and specific root length) and the plant size gradient (plant height and rooting depth). We found that an integrated, whole-plant trait space required as much as four axes. The two main axes represented the fast-slow 'conservation' gradient on which leaf and fine-root traits were well aligned, and the 'collaboration' gradient in roots. The two additional axes were separate, orthogonal plant size axes for height and rooting depth. This perspective on the multidimensional nature of plant trait variation better encompasses plant function and influence on the surrounding environment.


Subject(s)
Ecosystem , Plants , Phenotype , Plant Leaves
9.
Nat Ecol Evol ; 5(8): 1123-1134, 2021 08.
Article in English | MEDLINE | ID: mdl-34112996

ABSTRACT

Ecological theory is built on trade-offs, where trait differences among species evolved as adaptations to different environments. Trade-offs are often assumed to be bidirectional, where opposite ends of a gradient in trait values confer advantages in different environments. However, unidirectional benefits could be widespread if extreme trait values confer advantages at one end of an environmental gradient, whereas a wide range of trait values are equally beneficial at the other end. Here, we show that root traits explain species occurrences along broad gradients of temperature and water availability, but model predictions only resembled trade-offs in two out of 24 models. Forest species with low specific root length and high root tissue density (RTD) were more likely to occur in warm climates but species with high specific root length and low RTD were more likely to occur in cold climates. Unidirectional benefits were more prevalent than trade-offs: for example, species with large-diameter roots and high RTD were more commonly associated with dry climates, but species with the opposite trait values were not associated with wet climates. Directional selection for traits consistently occurred in cold or dry climates, whereas a diversity of root trait values were equally viable in warm or wet climates. Explicit integration of unidirectional benefits into ecological theory is needed to advance our understanding of the consequences of trait variation on species responses to environmental change.


Subject(s)
Forests , Plant Dispersal , Climate , Phenotype , Water
10.
Glob Chang Biol ; 27(16): 3859-3869, 2021 08.
Article in English | MEDLINE | ID: mdl-33934467

ABSTRACT

Harsh environmental conditions affect both leaf structure and root traits. However, shoot growth in high-latitude systems is predominately under photoperiod control while root growth may occur for as long as thermal conditions are favorable. The different sensitivities of these organs may alter functional relationships above- and belowground along environmental gradients. We examined the relationship between absorptive root and foliar traits of Scots pine trees growing in situ along a temperate-boreal transect and in trees grown in a long-term common garden at a temperate latitude. We related changes in foliar nitrogen, phosphorus, specific leaf area, needle mass and 13 C signatures to geographic trends in absorptive root biomass to better understand patterns of altered tree nutrition and water balance. Increased allocation to absorptive fine roots was associated with greater uptake of soil nutrients and subsequently higher needle nutrient contents in the northern provenances compared with more southern provenances when grown together in a common garden setting. In contrast, the leaf δ13 C in northern and southern provenances were similar within the common garden suggesting that higher absorptive root biomass fractions could not adequately increase water supply in warmer climates. These results highlight the importance of allocation within the fine-root system and its impacts on needle nutrition while also suggesting increasing stomatal limitation of photosynthesis in the context of anticipated climatic changes.


Subject(s)
Pinus sylvestris , Pinus , Biomass , Climate , Plant Leaves , Plant Roots , Trees
11.
New Phytol ; 230(5): 1856-1867, 2021 06.
Article in English | MEDLINE | ID: mdl-33586131

ABSTRACT

Whether and how warming alters functional traits of absorptive plant roots remains to be answered across the globe. Tackling this question is crucial to better understanding terrestrial responses to climate change as fine-root traits drive many ecosystem processes. We carried out a detailed synthesis of fine-root trait responses to experimental warming by performing a meta-analysis of 964 paired observations from 177 publications. Warming increased fine-root biomass, production, respiration and nitrogen concentration as well as decreased root carbon : nitrogen ratio and nonstructural carbohydrates. Warming effects on fine-root biomass decreased with greater warming magnitude, especially in short-term experiments. Furthermore, the positive effect of warming on fine-root biomass was strongest in deeper soil horizons and in colder and drier regions. Total fine-root length, morphology, mortality, life span and turnover were unresponsive to warming. Our results highlight the significant changes in fine-root traits in response to warming as well as the importance of warming magnitude and duration in understanding fine-root responses. These changes have strong implications for global soil carbon stocks in a warmer world associated with increased root-derived carbon inputs into deeper soil horizons and increases in fine-root respiration.


Subject(s)
Ecosystem , Plant Roots , Biomass , Global Warming , Nitrogen/analysis , Plant Roots/chemistry , Soil
12.
Acute Med ; 20(4): 280-281, 2021.
Article in English | MEDLINE | ID: mdl-35072385

ABSTRACT

A 73-year-old female attended the Emergency Department with a twenty four hour history of a progressive, diffuse macular rash, predominantly affecting limbs and trunk, with associated oral and ocular discharge.


Subject(s)
Exanthema , Aged , Emergency Service, Hospital , Exanthema/diagnosis , Exanthema/etiology , Female , Humans
13.
Acute Med ; 20(4): 298-301, 2021.
Article in English | MEDLINE | ID: mdl-35072390

ABSTRACT

A 73-year-old female patient with epilepsy presented to hospital with a progressive, diffuse macular rash over the trunk and limbs with associated mucosal blistering and discharge. Ocular symptoms initially predominated and she was treated for presumed bacterial conjunctivitis by her General Practitioner the previous day. On the acute medical unit supportive management was initiated for suspected adverse drug reaction (ADR) to a recent lamotrigine dose increase. Skin biopsy confirmed a diagnosis of toxic epidermal necrolysis. We present this case to highlight the importance of medication history taking and raise awareness of indolent presentations of life-threatening ADRs. Caution should be applied following dose changes to anti-epileptics, even if previously stable.


Subject(s)
Exanthema , Stevens-Johnson Syndrome , Aged , Exanthema/chemically induced , Exanthema/diagnosis , Female , Humans , Stevens-Johnson Syndrome/diagnosis , Stevens-Johnson Syndrome/etiology , Stevens-Johnson Syndrome/therapy
14.
Int J Biometeorol ; 65(4): 479-488, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33089367

ABSTRACT

Heat exposure of a population is often estimated by applying temperatures from outdoor monitoring stations. However, this can lead to exposure misclassification if residents do not live close to the monitoring station and temperature varies over small spatial scales due to land use/built environment variability, or if residents generally spend more time indoors than outdoors. Here, we compare summertime temperatures measured inside 145 homes in low-income households in Baltimore city with temperatures from the National Weather Service weather station in Baltimore. There is a large variation in indoor temperatures, with daily-mean indoor temperatures varying from 10 °C lower to 10 °C higher than outdoor temperatures. Furthermore, there is only a weak association between the indoor and outdoor temperatures across all houses, indicating that the outdoor temperature is not a good predictor of the indoor temperature for the residences sampled. It is shown that much of the variation is due to differences in the availability of air conditioning (AC). Houses with central AC are generally cooler than outdoors (median difference of - 3.4 °C) while those with no AC are generally warmer (median difference of 1.4 °C). For the collection of houses with central or room AC, there is essentially no relationship between indoor and outdoor temperatures, but for the subset of houses with no AC, there is a weak relationship (correlation coefficient of 0.36). The results presented here suggest future epidemiological studies of indoor exposure to heat would benefit from information on the availability of AC within the population.


Subject(s)
Hot Temperature , Housing , Air Conditioning , Baltimore , Temperature
15.
New Phytol ; 232(3): 1123-1158, 2021 11.
Article in English | MEDLINE | ID: mdl-33159479

ABSTRACT

The effects of plants on the biosphere, atmosphere and geosphere are key determinants of terrestrial ecosystem functioning. However, despite substantial progress made regarding plant belowground components, we are still only beginning to explore the complex relationships between root traits and functions. Drawing on the literature in plant physiology, ecophysiology, ecology, agronomy and soil science, we reviewed 24 aspects of plant and ecosystem functioning and their relationships with a number of root system traits, including aspects of architecture, physiology, morphology, anatomy, chemistry, biomechanics and biotic interactions. Based on this assessment, we critically evaluated the current strengths and gaps in our knowledge, and identify future research challenges in the field of root ecology. Most importantly, we found that belowground traits with the broadest importance in plant and ecosystem functioning are not those most commonly measured. Also, the estimation of trait relative importance for functioning requires us to consider a more comprehensive range of functionally relevant traits from a diverse range of species, across environments and over time series. We also advocate that establishing causal hierarchical links among root traits will provide a hypothesis-based framework to identify the most parsimonious sets of traits with the strongest links on functions, and to link genotypes to plant and ecosystem functioning.


Subject(s)
Ecosystem , Plants , Atmosphere , Ecology , Phenotype
16.
Sci Adv ; 6(27)2020 07.
Article in English | MEDLINE | ID: mdl-32937432

ABSTRACT

Plant economics run on carbon and nutrients instead of money. Leaf strategies aboveground span an economic spectrum from "live fast and die young" to "slow and steady," but the economy defined by root strategies belowground remains unclear. Here, we take a holistic view of the belowground economy and show that root-mycorrhizal collaboration can short circuit a one-dimensional economic spectrum, providing an entire space of economic possibilities. Root trait data from 1810 species across the globe confirm a classical fast-slow "conservation" gradient but show that most variation is explained by an orthogonal "collaboration" gradient, ranging from "do-it-yourself" resource uptake to "outsourcing" of resource uptake to mycorrhizal fungi. This broadened "root economics space" provides a solid foundation for predictive understanding of belowground responses to changing environmental conditions.

17.
New Phytol ; 228(6): 1824-1834, 2020 12.
Article in English | MEDLINE | ID: mdl-32654151

ABSTRACT

Fine roots mediate below-ground resource acquisition, yet understanding of how fine-root functional traits vary along environmental gradients, within branching orders and across phylogenetic scales remains limited. Morphological and architectural fine-root traits were measured on individual root orders of 20 oak species (genus Quercus) from divergent climates of origin that were harvested after three growing seasons in a glasshouse. These were then compared with similar measurements obtained from a phylogenetically diverse dataset of woody species from the Fine-Root Ecology Database (FRED). For the oaks, only precipitation seasonality and growing season moisture availability were correlated to aspects of root diameter and branching. Strong correlations among root diameters and architecture of different branch orders were common, while correlations between diameter and length were weakly negative. By contrast, the FRED dataset showed strong positive correlations between diameter and length and fewer correlations between root diameter and architectural traits. Our findings suggest that seasonal patterns of water availability are more important drivers of root adaptation in oaks than annual averages in precipitation and temperature. Furthermore, contrasting patterns of trait relationships between the oak and FRED datasets suggest that branching patterns are differentially constrained at narrow vs broad phylogenetic scales.


Subject(s)
Climate , Quercus , Phenotype , Phylogeny , Plant Roots/genetics , Quercus/genetics , Seasons
18.
Personal Ment Health ; 14(3): 263-283, 2020 08.
Article in English | MEDLINE | ID: mdl-32073223

ABSTRACT

There is ongoing controversy regarding the borderline personality disorder (BPD) diagnosis. Whilst the experiences of people living with BPD have been widely acknowledged, the process of receiving the diagnosis is poorly described. This systematic review aimed to synthesize the existing research exploring people's experiences of receiving a diagnosis of BPD, as well as examining what is considered best practice in the diagnostic delivery process. The findings from 12 qualitative studies were synthesized using thematic analysis, generating two overarching themes: negative and positive experiences of receiving a diagnosis of BPD. These themes were described using the following sub-themes: the communication of diagnosis and meaning made of it, validity around diagnosis and attitudes of others. Results indicate that there is a substantial difference between a well-delivered and poorly delivered diagnosis. The diagnostic delivery process is fundamental to how people understand and interpret the BPD diagnosis. The way in which the BPD diagnosis is shared with people can ultimately shape their views about hope for recovery and their subsequent engagement with services. © 2020 John Wiley & Sons, Ltd.


Subject(s)
Borderline Personality Disorder/diagnosis , Health Communication , Mentally Ill Persons/psychology , Professional-Patient Relations , Truth Disclosure , Humans , Qualitative Research
19.
Front Plant Sci ; 10: 1215, 2019.
Article in English | MEDLINE | ID: mdl-31681355

ABSTRACT

Since their emergence onto land, terrestrial plants have developed diverse strategies to acquire soil resources. However, we lack a framework that adequately captures how these strategies vary among species. Observations from around the world now allow us to quantify the variation observed in commonly-measured fine-root traits but it is unclear how root traits are interrelated and whether they fall along an "economic" spectrum of acquisitive to conservative strategies. We assessed root trait variation and mycorrhizal colonization rates by leveraging the largest global database of fine-root traits (the Fine-Root Ecology Database; FRED). We also developed a heuristic model to explore the role of mycorrhizal fungi in defining belowground exploration efficiency across a gradient of thin- to thick-diameter roots. In support of the expectations of the "root economic spectrum," we found that root diameter was negatively related to specific root length (Pearson's r=-0.76). However, we found an unexpected negative relationship between root diameter and root tissue density (Pearson's r = -0.40), and we further observed that root nitrogen content was largely unrelated to other economic traits. Mycorrhizal colonization was most closely associated with root diameter (Pearson's r = 0.62) and was unrelated to root tissue density and root nitrogen. The heuristic model demonstrated that while thinner roots have inherently greater capacity to encounter soil resources based on higher surface area per unit mass, the potential for increased associations with mycorrhizal fungi in thicker roots, combined with greater hyphal growth, can result in equally acquisitive strategies for both thin- and thick roots. Taken together, our assessments of root trait variation, trade-offs with mycorrhizal fungi, and broader connections to root longevity allowed us to propose a series of fundamental constraints on belowground resource acquisition strategies. Physical tradeoffs based on root construction (i.e., economic traits) and functional limitations related to the capacity of a root to encounter and acquire soil resources combine to limit the two-dimensional belowground trait space. Within this trait space there remains a diversity of additional variation in root traits that facilitates a wide range of belowground resource acquisition strategies.

20.
Nat Commun ; 10(1): 5077, 2019 11 07.
Article in English | MEDLINE | ID: mdl-31700000

ABSTRACT

Vegetation impacts on ecosystem functioning are mediated by mycorrhizas, plant-fungal associations formed by most plant species. Ecosystems dominated by distinct mycorrhizal types differ strongly in their biogeochemistry. Quantitative analyses of mycorrhizal impacts on ecosystem functioning are hindered by the scarcity of information on mycorrhizal distributions. Here we present global, high-resolution maps of vegetation biomass distribution by dominant mycorrhizal associations. Arbuscular, ectomycorrhizal, and ericoid mycorrhizal vegetation store, respectively, 241 ± 15, 100 ± 17, and 7 ± 1.8 GT carbon in aboveground biomass, whereas non-mycorrhizal vegetation stores 29 ± 5.5 GT carbon. Soil carbon stocks in both topsoil and subsoil are positively related to the community-level biomass fraction of ectomycorrhizal plants, though the strength of this relationship varies across biomes. We show that human-induced transformations of Earth's ecosystems have reduced ectomycorrhizal vegetation, with potential ramifications to terrestrial carbon stocks. Our work provides a benchmark for spatially explicit and globally quantitative assessments of mycorrhizal impacts on ecosystem functioning and biogeochemical cycling.


Subject(s)
Biomass , Carbon , Mycorrhizae , Plants , Soil/chemistry , Ecosystem , Geographic Mapping
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