Publications by authors named "Boland W"

Article Synopsis
  • The study aimed to evaluate the relationship between the perfusion index (PI), a noninvasive tool, and clinical markers of perfusion in critically ill children hospitalized with severe malaria, investigating its potential to identify those at higher risk of mortality.
  • Conducted in two hospitals in Uganda, the research analyzed data from 600 children under five with severe malaria and found that lower admission PI correlated with clinical signs of poor perfusion and complications, as well as higher mortality odds.
  • The results indicated that consecutive low PI measures (< 1%) were predictive of mortality, suggesting that PI could serve as an important indicator for managing severe malaria in pediatric patients.
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Objective: Individuals with obesity face unique challenges when visiting healthcare providers, including inadequate equipment. These negative care experiences, often exacerbated by weight stigma, frequently lead to mistrust and reluctance to seek future care. Currently, few instruments exist to ensure that an ambulatory clinic is welcoming to patients with obesity.

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Mutualistic ectomycorrhizal symbiosis requires the exchange of signals even before direct contact of the partners. Volatiles, and specifically volatile terpenoids, can be detected at a distance and may trigger downstream signaling and reprogramming of metabolic responses. The late-stage ectomycorrhizal fungus shows high host specificity with its main host spruce, while rarely associations can be found with pine, .

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The unceasing circulation of SARS-CoV-2 leads to the continuous emergence of novel viral sublineages. Here, we isolated and characterized XBB.1, XBB.

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Terpenoids account for more than 60% of all natural products, and their carbon skeletons originate from common isoprenoid units of different lengths such as geranyl pyrophosphate and farnesyl pyrophosphate. Here we characterize a metal-dependent, bifunctional isoprenyl diphosphate synthase from the leaf beetle Phaedon cochleariae by structural and functional analyses. Inter- and intramolecular cooperative effects in the homodimer strongly depend on the provided metal ions and regulate the biosynthetic flux of terpene precursors to either biological defence or physiological development.

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Quinolinic carboxylic acids are known for their metal ion chelating properties in insects, plants and bacteria. The larval stages of the lepidopteran pest, , produce 8-hydroxyquinoline-2-carboxylic acid (8-HQA) in high concentrations from tryptophan in the diet. At the same time, the larval midgut is known to harbor a bacterial population.

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Covering: 1951 to 2022Packed with nutrients and unable to escape, eggs are the most vulnerable stage of an animal's life cycle. Consequently, many species have evolved chemical defenses and teamed up their eggs with a vast array of toxic molecules for defense against predators, parasites, or pathogens. However, studies on egg toxins are rather scarce and the available information is scattered.

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is an ectomycorrhizal basidiomycete with high host specificity. The slow-growing fungus is able to produce twenty sesquiterpenes, including α-barbatene, sativene, isocaryophyllene, α-cuprenene, β-cedrene, ß-copaene, 4-epi-α-acoradiene, and chamigrene in axenic culture. For the three major compounds, Δ-protoilludene, β-barbatene, and an unidentified oxygenated sesquiterpene ( 218.

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Phytochemical investigation of the ethanol extract of underground parts of Pall. afforded five new compounds; an unusual macrolide termed moniristenulide (), 5-methoxy-6,7-methylenedioxy-4--2'-cycloflavan (), 5,7,2',3'-tetrahydroxyflavanone (), 5-hydroxy-6,7-dimethoxyisoflavone-2'---d-glucopyranoside (), 5,2',3'-dihydroxy-6,7-dimethoxyisoflavone (), along with seven known compounds (-, -). The structures of all purified compounds were established by analysis of 1D and 2D NMR spectroscopy and HR-ESI-MS.

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is a rare Mongolian plant species that has been traditionally used as an ingredient in various remedies. Bioactivity-guided fractionation performed on the methanol extract of its aerial parts led to the isolation of 2 previously undescribed guaianolide-type sesquiterpene lactones, namely 1,10-epoxy-8-hydroxyguaia-3,11(13)-dien-6,12-olide (1: ) and 1,8,10-trihydroxyguaia-3,11(13)-dien-6,12-olide (2: ), along with the isolation or chromatographic identification of 11 compounds, arglabin (3: ), 3-hydroxycostunolide (4: ), isocostic acid (5: ), ()-9-(2-thienyl)-6-nonen-8-yn-3-ol (6: ), ()-9-(2-thienyl)-6-nonen-8-yn-3-ol (7: ), , , , -tetra-p-coumaroyl spermine (8: ), chlorogenic acid (9: ), 3,5-di--caffeoylquinic acid (10: ), 3,5-di--caffeoylquinic acid methyl ester (11: ), 3,4-di--caffeoylquinic acid (12: ), and tryptophan (13: ). Their structures were assigned based on spectroscopic and spectrometric data.

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Chrysomelina beetlesstore 3-nitropropionic acid in form of a pretoxin, isoxazolin-5-one glucoside-conjugated ester, to protect themselves against predators. Here we identified a cytochrome P450 monooxygenase, CYP347W1, to be involved in the production of the 3-nitropropionic acid moiety of the isoxazolin-5-one glucoside ester. Knocking down CYP347W1 led to a significant depletion in the concentration of the isoxazolin-5-one glucoside ester and an increase in the concentration of the isoxazolin-5-one glucoside in the larval hemolymph.

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In UV sexual systems, sex is determined during the haploid phase of the life cycle and males have a V chromosome whereas females have a U chromosome. Previous work in the brown alga Ectocarpus revealed that the V chromosome has a dominant role in male sex determination and suggested that the female developmental programme may occur by 'default'. Here, we describe the identification of a genetically male giant kelp strain presenting phenotypic features typical of a female, despite lacking the U-specific region.

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The complex interaction between a higher organism and its resident gut flora is a subject of immense interest in the field of symbiosis. Many insects harbor a complex community of microorganisms in their gut. Larvae of Spodoptera littoralis, a lepidopteran pest, house a bacterial community that varies both spatially (along the length of the gut) and temporally (during the insect's life cycle).

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Article Synopsis
  • Wood serves as a habitat for various organisms, including fungi and bacteria crucial for its decomposition.
  • The study found that the volatiles released by the fungus Schizophyllum commune can inhibit the growth of wood-decay fungi and affect bacterial movement, with sesquiterpenes identified as the active compounds.
  • An analysis of the microbial community in S. commune's mycosphere revealed a dominance of Actinobacteria and Proteobacteria, suggesting that fungal volatiles play a significant role in interactions among microorganisms in wood ecosystems.
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The ectomycorrhizospheric habitat contains a diverse pool of organisms, including the host plant, mycorrhizal fungi, and other rhizospheric microorganisms. Different signaling molecules may influence the ectomycorrhizal symbiosis. Here, we investigated the potential of the basidiomycete Tricholoma vaccinum to produce communication molecules for the interaction with its coniferous host, Norway spruce (Picea abies).

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The 2017 Event Horizon Telescope (EHT) observations of the central source in M87 have led to the first measurement of the size of a black-hole shadow. This observation offers a new and clean gravitational test of the black-hole metric in the strong-field regime. We show analytically that spacetimes that deviate from the Kerr metric but satisfy weak-field tests can lead to large deviations in the predicted black-hole shadows that are inconsistent with even the current EHT measurements.

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Plants can use volatiles for remote suppression of competitors. Mints produce essential oils, which are known to affect the growth of other plants. We used a comparative approach to identify allelopathic compounds from different Mints (genus , but also including Cat Mint, , and Corean Mint, , belonging to sisters clades within the ) using the standard cress germination assay as readout.

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Chlorophyll (Chl) is a natural compound that is found in all autotrophic plants. Since phytophagous insects ingest the photosynthetically active material with the plant leaves, the question arises if and how herbivores deal with Chl and its degradation products. Here we review findings on Chl degradation in phytophagous insects and highlight the role of these ubiquitous plant metabolites for plant-feeding insects.

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Mulberry () is an economically important woody tree that is suitable for use in sericulture as forage and in medicine. However, this broad-leaved tree is facing multiple threats ranging from phytopathogens to insect pests. Here, a Gram-positive, endospore-forming bacterium (ZJU1) was frequently isolated from healthy mulberry plants by screening for foliar endophytes showing antagonism against pathogens and pests.

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The degradation of chlorophyll, the omnipresent green pigment, has been investigated intensively over the last 30 years resulting in many elucidated tetrapyrrolic degradation products. With a comparison to the degradation of the structurally similar heme, we hereby propose a novel additional chlorophyll degradation mechanism to mono- and dipyrrolic products. This is the first proof of the occurrence of a family of mono- and dipyrrols in leaves that are previously only known as heme degradation products.

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Physician communication surrounding vaccination is important in driving patient compliance with schedules and recommendations, but patient psychological factors suggest that communication strategies may have differential effects on patients. This paper investigates how psychological reactance, defined as an individuals' propensity to restore their autonomy when they perceive that others are trying to impose their will on them, impacts perceptions about physician communication and perceptions and prioritizations of vaccination. We propose and describe the results of a study that was conducted to assess the relationship between individual differences in reactance, perceived quality of pediatrician communication, perceptions of vaccination safety, and vaccination prioritization using a sample of parents.

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Induction of jasmonate-mediated plant defense against insect herbivory is initiated by a combination of both mechanical wounding and chemical factors. In order to study both effects independently on plant defense induction, SpitWorm, a computer-controlled device which mimics the damage pattern of feeding insect larvae on leaves and, in addition, can apply oral secretions (OS) or other solutions to the 'biting site' during 'feeding,' was developed and evaluated. The amount of OS left by a larva during feeding on (lima bean) leaves was estimated by combining larval foregut volume, biting rate, and quantification of a fluorescent dye injected into the larvae's foregut prior to feeding.

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Jasmonates are fatty acid derivatives that control several plant processes including growth, development and defense. Despite the chemical diversity of jasmonates, only jasmonoyl-L-isoleucine (JA-Ile) has been clearly characterized as the endogenous ligand of the jasmonate co-receptors (COI1-JAZs) in higher plants. Currently, it is accepted that ω-hydroxylation of JA-Ile leads to inactivation of the molecule.

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Larvae of the leaf beetle Phaedon cochleariae synthesize the iridoid chysomelidial via the mevalonate pathway to repel predators. The normal terpenoid biosynthesis is integrated into the dedicated defensive pathway by the ω-hydroxylation of geraniol to (2E,6E)-2,6-dimethylocta-2,6-diene-1,8-diol (ω-OH-geraniol). Here we identify and characterize the P450 monooxygenase CYP6BH5 as the geraniol hydroxylase using integrated transcriptomics, proteomics and RNA interference (RNAi).

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