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1.
Plant Biotechnol J ; 2024 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-38561972

RESUMO

Cell fate determination and primordium initiation on the placental surface are two key events for ovule formation in seed plants, which directly affect ovule density and seed yield. Despite ovules form in the marginal meristematic tissues of the carpels, angiosperm carpels evolved after the ovules. It is not clear how the development of the ovules and carpels is coordinated in angiosperms. In this study, we identify the S. lycopersicum CRABS CLAW (CRC) homologue SlCRCa as an essential determinant of ovule fate. We find that SlCRCa is not only expressed in the placental surface and ovule primordia but also functions as a D-class gene to block carpel fate and promote ovule fate in the placental surface. Loss of function of SlCRCa causes homeotic transformation of the ovules to carpels. In addition, we find low levels of the S. lycopersicum AINTEGUMENTA (ANT) homologue (SlANT2) favour the ovule initiation, whereas high levels of SlANT2 promote placental carpelization. SlCRCa forms heterodimer with tomato INNER NO OUTER (INO) and AGAMOUS (AG) orthologues, SlINO and TOMATO AGAMOUS1 (TAG1), to repress SlANT2 expression during the ovule initiation. Our study confirms that angiosperm basal ovule cells indeed retain certain carpel properties and provides mechanistic insights into the ovule initiation.

2.
J Hazard Mater ; 469: 133999, 2024 May 05.
Artigo em Inglês | MEDLINE | ID: mdl-38493627

RESUMO

Thermal treatment can be an effective method for soil remediation, and numerical models play a crucial role in elucidating the underlying processes that affect efficacy. In this study, experiments were conducted to examine the low-temperature thermal treatment for removing n-hexane and n-octane from soil. The results showed that the removal of two alkanes followed the pseudo-first-order kinetics. Additionally, a quantitative relationship between kinetics constant and temperature was established. Based on experimental results, a simple mathematical model was presented via COMSOL Multiphysics 6.0. The processes considered in the model incorporated conductive and convective heat transfer, the vaporization latent heat, and the removal of organic contaminants which was quantified using an advection-dispersion equation combined with a pseudo-first-order kinetic. The developed model was first validated by a thermal treatment in a soil column, demonstrating conformity with the measured temperature and concentration values. Subsequently, the temporal and spatial changes in soil temperature and contaminant levels were evaluated for different heating temperatures. It was found that thermal conduction dominated heat transfer, whereas thermal convection caused by the migration of liquid water intensified when the temperature was higher than the boiling point. The completion time exhibited a correlation with the heating temperature. It was predicted that the time required to achieve a 90% removal efficiency could be shortened from 14 h to 9.5 h by elevating the heating temperature from 80 â„ƒ to 120 â„ƒ. The study also investigated the impact of the initial water content on heat transfer. It was observed that the saturated soil showed the slowest heating rate and the longest boiling stage.

3.
Plant Commun ; 5(4): 100790, 2024 Apr 08.
Artigo em Inglês | MEDLINE | ID: mdl-38168638

RESUMO

Floral meristem termination is a key step leading to carpel initiation and fruit development. The frequent occurrence of heat stress due to global warming often disrupts floral determinacy, resulting in defective fruit formation. However, the detailed mechanism behind this phenomenon is largely unknown. Here, we identify CRABS CLAW a (SlCRCa) as a key regulator of floral meristem termination in tomato. SlCRCa functions as an indispensable floral meristem terminator by suppressing SlWUS activity through the TOMATO AGAMOUS 1 (TAG1)-KNUCKLES (SlKNU)-INHIBITOR OF MERISTEM ACTIVITY (SlIMA) network. A direct binding assay revealed that SlCRCa specifically binds to the promoter and second intron of WUSCHEL (SlWUS). We also demonstrate that SlCRCa expression depends on brassinosteroid homeostasis in the floral meristem, which is repressed by heat stress via the circadian factor EARLY FLOWERING 3 (SlELF3). These results provide new insights into floral meristem termination and the heat stress response in flowers and fruits of tomato and suggest that SlCRCa provides a platform for multiple protein interactions that may epigenetically abrogate stem cell activity at the transition from floral meristem to carpel initiation.


Assuntos
Solanum lycopersicum , Solanum lycopersicum/genética , Frutas/genética , Meristema , Flores/genética , Resposta ao Choque Térmico/genética
4.
Chemosphere ; 344: 140291, 2023 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-37769915

RESUMO

Cabbage waste returned soil was studied to assess the short-term influences of the application of cabbage waste biochar (CB), pine wood biochar (PB), and co-pyrolysed biochar (PCB) on soil dissolved organic matter (DOM) evolution. The decrease in DOM and soil organic matter (SOM) content was greater in the biochar-added soils during 35 days of decomposition. The DOM and SOM content in PCB added group decreased by 26.96 mg L-1 and 4.48 g kg-1, respectively. The increase in relative abundance of humic acid-like substances in DOMs was higher in the biochar-added soils during decomposition, which increased by 4.29% in PCB added group. PCB addition also resulted in a high SOM content (initial content of 78.82 g kg-1), and mineral elements were introduced into the soil, thus increasing soil pH (7.81) and electrical conductivity (574.67 µs cm-1). Moreover, the addition of biochars attenuated the decrease in average relative abundance of Bacillaceae and promoted bacterial proliferation during decomposition. The application of biochars regulated the soil bacterial community and promoted organic matter conversion and soil DOM evolution.


Assuntos
Brassica , Solo , Solo/química , Matéria Orgânica Dissolvida , Carvão Vegetal/química
5.
Ann Clin Lab Sci ; 53(3): 409-417, 2023 May.
Artigo em Inglês | MEDLINE | ID: mdl-37437935

RESUMO

OBJECTIVE: Sepsis-associated encephalopathy (SAE), characterized by cognitive and emotional impairments, is not well investigated in sepsis survivors. Growth arrest-specific gene 6 (Gas6) has been extensively used to treat cerebral diseases. This study aimed to evaluate the neuroprotective effects of Gas6 in post-septic mice and to determine the underlying mechanisms of action. METHODS: Mice underwent cecal ligation and puncture (CLP) for sepsis induction. Mice were then immediately injected with 6 µg of Gas6 via the tail vein, and the effect was evaluated after 24 hours. The neurological severity score (NSS) was used to assess neurological deficits in post-septic mice. In addition, brain edema was evaluated by measuring the brain water content and blood-brain barrier (BBB) permeability using Evans blue (EB) dye extravasation. Western blotting and immunofluorescence assays were performed to determine the expression of tight junction (TJ)-associated proteins such as occludin and zonula occludens-1 (ZO-1). RESULTS: Post-septic mice exhibited increased NSS, brain edema, and BBB permeability. However, acute Gas6 treatment attenuated the severe effects of sepsis on neurologic function in mice. Therefore, Gas6 attenuates brain edema and restores BBB permeability. These findings suggest that Gas6 could alleviate neurological deficits, brain edema, BBB damage, and reverse the decreased expression of occludin and ZO-1 in the brain tissue to protect against SAE. CONCLUSION: Gas6 protects against SAE by restoring the impaired BBB permeability.


Assuntos
Edema Encefálico , Peptídeos e Proteínas de Sinalização Intercelular , Fármacos Neuroprotetores , Encefalopatia Associada a Sepse , Animais , Camundongos , Barreira Hematoencefálica , Edema Encefálico/complicações , Fármacos Neuroprotetores/farmacologia , Ocludina , Peptídeos e Proteínas de Sinalização Intercelular/metabolismo
6.
Water Sci Technol ; 88(1): 278-287, 2023 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-37452547

RESUMO

Sewage treatment plants (STPs) are significant routes through which microplastics (MPs) are released into the aquatic environment. Constructed wetland is an effective facility for deep treatment of tailwater. At present, research on the removal of MPs in the tailwater of STPs by multi-stage constructed wetlands is limited. This work investigated and analyzed the removal characteristics of MPs in the tailwater treatment system of Cihu wetland park in Huangshi, Hubei Province of China. The abundance/removal of MPs in the Cihu Lake-wetland microcosm system was investigated. The results showed that the multi-stage constructed wetlands achieved a total removal rate of 94.7% for MPs with 2.2 particles/L MPs in the effluent. The removal rates of MPs reached 89 and 37.5%, respectively, in the (horizontal/vertical) subsurface flow constructed wetland and surface flow constructed wetland. The abundance of MPs in receiving water of Cihu Lake substantially decreased due to the dilution of wetland effluents. This study partially bridged the knowledge gap hypothesis on the treatment of MPs in tailwater by multi-stage constructed wetlands.


Assuntos
Águas Residuárias , Áreas Alagadas , Eliminação de Resíduos Líquidos/métodos , Microplásticos , Plásticos , Lagos
7.
Chemosphere ; 329: 138588, 2023 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-37019405

RESUMO

Industrial-scale aerobic fermentation was conducted with livestock manures. Microbial inoculation promoted the growth of Bacillaceae and consolidated its position as the dominant microorganism. Microbial inoculation substantially influenced dissolved organic matter (DOM) derivation and variations of related components in the fermentation system. The relative abundance of humic acid-like substances of DOM increased from 52.19% to 78.27% in microbial inoculation system, resulting in a high humification level. Moreover, lignocellulose degradation and microbial utilization were the important factors influencing DOM content in fermentation systems. The fermentation system was regulated by microbial inoculation, thus achieving a high level of fermentation maturity.


Assuntos
Esterco , Microbiota , Solo , Animais , Matéria Orgânica Dissolvida , Fermentação , Substâncias Húmicas/análise , Gado , Esterco/microbiologia
8.
Environ Sci Pollut Res Int ; 30(9): 22929-22940, 2023 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-36307567

RESUMO

Pretreatments for delignification are required for the enzymatic saccharification of lignocellulosic biomasses. However, in the current literature, various pretreatment approaches have been applied for the same kinds of biomass. To find the optimum pretreatments for biomaterials containing various lignin contents, in this study, a quantitative comparison was carried out on the delignification performance of 15 categories of pretreatments. In total, 1729 sets of biomass, cellulose, hemicellulose, and lignin recovery data were collected from 214 relevant studies. Box plots and Cate-Nelson-like graphs were applied for analyses. The results showed that alkali, oxidation, organic solvent, and multistep pretreatments generally were better at removing lignin and recovering cellulose. Moreover, among these four categories, alkali pretreatments had the best performance, increasing the saccharification efficiency by approximately five-fold. Considering both delignification performance and saccharification improvement, alkali pretreatments are currently considered to be the optimum pretreatment methods for enzymatic saccharification.


Assuntos
Celulose , Lignina , Biomassa , Hidrólise , Álcalis
9.
Rev. bras. med. esporte ; 29(spe1): e2022_0180, 2023. tab
Artigo em Inglês | LILACS | ID: biblio-1394849

RESUMO

ABSTRACT Introduction A tennis match may last up to four hours with long intervals between moves of medium to high exercise intensity for 10 minutes and aerobic characteristic that requires specific sources of energy. Inappropriate diets can negatively impact sports performance and delay the recovery phase. Fortified wheat germ protein powder has the supplementation characteristics required in aerobic activities, although there are no practical studies on its impacts on the work performance of female tennis athletes. Objective Explore the influence of two weeks of training in a warm environment combined with nutritional intervention on the performance of female tennis players. Methods It was observed by testing the immunological indices of elite female tennis players while training their changes and their effects on nutritional intervention. Results The increase in serum CK activity was closely related to the amount of exercise. Many studies have shown that serum CK activity increased significantly after strenuous exercise, and the serum CK value of subjects in the test group was significantly lower than that of the control group, showing better adaptability to exercise. Compared with before the nutritional intervention, the athletes' weight decreased slightly, and the body fat percentage decreased significantly after the nutritional intervention. Compared with before nutritional intervention, sugar and salt supplements in athletes were significantly increased (P<0.05). Sweating rate, hydration rate, and hydration/sudden rate were also significantly increased (P<0.05). Conclusion Strengthening wheat germ protein supplementation may improve the nutritional albumin level in female tennis players, manifested in blood levels and immune function performance. Level of evidence II; Therapeutic studies - investigation of treatment outcomes.


RESUMO Introdução Partidas de tênis podem durar até quatro horas com intervalos longos entre jogadas de intensidade de exercício média a alta por 10 minutos, características aeróbicas que requerem fontes específicas de energia. Dietas inapropriadas podem impactar negativamente o desempenho esportivo e retardar o período de recuperação. O pó de proteína de germe de trigo fortificado apresenta as características de suplementação requeridas nas atividades aeróbicas, embora não haja estudos práticos sobre seus impactos no desempenho profissional de atletas do tênis feminino. Objetivo Explorar a influência no treinamento de duas semanas em ambiente quente combinado com a intervenção nutricional sobre o desempenho das atletas tenistas. Métodos Ao testar os índices imunológicos das tenistas de elite durante o treinamento, observamos suas mudanças e seus efeitos na intervenção nutricional. Resultados O aumento da atividade de CK sérico esteve intimamente relacionado à quantidade de exercício. Muitos estudos mostraram que a atividade do soro CK aumentou significativamente após o exercício extenuante, e o valor sérico CK dos sujeitos no grupo de teste foi significativamente menor do que o do grupo controle, mostrando melhor adaptabilidade ao exercício. Em comparação com antes da intervenção nutricional, o peso dos atletas diminuiu ligeiramente e o percentual de gordura corporal diminuiu significativamente após a intervenção nutricional. Em comparação com antes da intervenção nutricional, os suplementos de açúcar e sal em atletas foram significativamente incrementados (P<0,05). A taxa de sudorese, a taxa de hidratação e a taxa de hidratação/sudorese também aumentaram significativamente (P<0,05). Conclusão Fortalecer a suplementação com proteína de germe de trigo pode melhorar o nível nutricional de albumina nas tenistas, manifestadamente nos níveis sanguíneos e desempenho da função imunológica. Nível de evidência II; Estudos terapêuticos - investigação dos resultados do tratamento.


RESUMEN Introducción Los partidos de tenis pueden durar hasta cuatro horas con largos intervalos entre jugadas de intensidad de ejercicio media a alta durante 10 minutos, características aeróbicas que requieren fuentes de energía específicas. Las dietas inadecuadas pueden afectar negativamente al rendimiento deportivo y retrasar el periodo de recuperación. La proteína de germen de trigo en polvo enriquecida presenta las características de suplementación requeridas en las actividades aeróbicas, aunque no existen estudios prácticos sobre sus impactos en el rendimiento profesional de las atletas de tenis. Objetivo Explorar la influencia de dos semanas de entrenamiento en un ambiente cálido combinado con una intervención nutricional en el rendimiento de las atletas de tenis. Métodos Mediante el análisis de los índices inmunológicos de las tenistas de élite durante el entrenamiento, observamos sus cambios y sus efectos en la intervención nutricional. Resultados El aumento de la actividad de la CK en suero estaba estrechamente relacionado con la cantidad de ejercicio. Muchos estudios han demostrado que la actividad de la CK en suero aumenta significativamente después de un ejercicio extenuante, y el valor de la CK en suero de los sujetos del grupo de prueba fue significativamente menor que el del grupo de control, lo que demuestra una mejor adaptabilidad al ejercicio. En comparación con antes de la intervención nutricional, el peso de los atletas disminuyó ligeramente y el porcentaje de grasa corporal se redujo significativamente después de la intervención nutricional. En comparación con antes de la intervención nutricional, los suplementos de azúcar y sal en las atletas aumentaron significativamente (P<0,05). La tasa de sudoración, la tasa de hidratación y la tasa de hidratación/sudoración también aumentaron significativamente (P<0,05). Conclusión El refuerzo de la suplementación con proteínas de germen de trigo puede mejorar el nivel nutricional de albúmina en las jugadoras de tenis, manifestándose en los niveles sanguíneos y en el rendimiento de la función inmunitaria. Nivel de evidencia II; Estudios terapéuticos - investigación de los resultados del tratamiento.


Assuntos
Humanos , Feminino , Adolescente , Adulto Jovem , Tênis , Clima , Suplementos Nutricionais , Desempenho Atlético , Atletas
10.
Ecotoxicol Environ Saf ; 245: 114113, 2022 Oct 15.
Artigo em Inglês | MEDLINE | ID: mdl-36179450

RESUMO

Biochar is an effective adsorbent commonly used in pollutants adsorption. However, natural constituents, such as dissolved organic matter (DOM), could affect pollutants adsorption. In this study, we analyzed the mechanisms underlying phenol adsorption on pine biochar under perturbation by fertilizer-derived DOM. In addition, biochar property alterations were characterized and further analyzed. The results showed that phenol and DOM combined to a certain extent in the adsorption system. DOM affected the adsorption pathway, which increased the biochar adsorption efficiency for phenol. The addition of DOM2 promoted phenol adsorption efficiency (70.31%), with total DOM adsorption capacity of 61.45 mg g-1 onto biochar.


Assuntos
Matéria Orgânica Dissolvida , Poluentes Ambientais , Adsorção , Carvão Vegetal , Fertilizantes , Compostos Orgânicos , Fenóis
11.
Environ Pollut ; 310: 119891, 2022 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-35934152

RESUMO

Microplastics have been proven to be hotspots of bacterial pathogens and antibiotic resistance genes (ARGs). The enrichment of ARGs in microplastisphere, the specific niche for diverse microbial communities attached to the surface of microplastic, has attracted worldwide attention. By collecting 477 pairs of ARG abundance data belonging to 26 ARG types, based on the standardized mean difference (SMD) under the random effect model, we have performed the first meta-analysis of the ARG enrichment on microplastics in aquatic environments in order to quantitatively elucidate the enrichment effect, with comparison of non-microplastic materials. It was found that ARGs enriched on the microplastics were more abundant than that on the inorganic substrates (SMD = 0.26) and natural water environments (SMD = 0.10), but lower abundant than that on the natural organic substrates (SMD = -0.52). Furthermore, microplastics in freshwater tended to have a higher degree of ARG enrichment than those in saline water and sewage. The biofilm formation stage, structure, and component of microplastisphere may play a significant role in the enrichment of ARGs.


Assuntos
Antibacterianos , Microplásticos , Resistência Microbiana a Medicamentos , Genes Bacterianos , Plásticos
12.
Environ Sci Pollut Res Int ; 29(8): 11027-11038, 2022 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-35013952

RESUMO

Microplastics are generally considered as an emerging contaminant in the environment due to their toxic additives and transport of other contaminants. However, the potential threats of microplastics in soil should be concerned due to inconsistent research results. In this study, a meta-analysis based on 32 recent relevant studies was conducted to compare the response of soil system parameters including microbial community, aggregate structure, soil nutrient contents, and crop growth to the presence of microplastics. The results showed that microplastics presented no significant effects on soil dissolved organic carbon contents and the amounts of available phosphate, nitrate, and ammonium. Although microplastics would not significantly influence the diversity of soil microorganisms, they could significantly increase soil microorganism amounts with a standard mean difference at 19.32. We also found that microplastics tended to significantly decrease soil water stable macro-aggregate (> 0.25 mm) contents with a significantly negative standard mean difference (- 0.90) in meta-analysis. Moreover, soil microplastics seemed not to affect crop growth by having non-significant effects on both crop under-ground and above-ground biomasses. These results indicate that up to date, the main negative impacts caused by microplastics on soil systems could be their negative functions on soil aggregation.


Assuntos
Microplásticos , Poluentes do Solo , Matéria Orgânica Dissolvida , Plásticos , Solo , Poluentes do Solo/análise
13.
Mol Microbiol ; 117(2): 261-273, 2022 02.
Artigo em Inglês | MEDLINE | ID: mdl-34278632

RESUMO

The infection and colonization of pathogenic fungi are often regulated by transcription factors. In our previous study, the zinc finger protein-encoding gene StMR1 was found to be highly expressed during the infection process of Setosphaeria turcica, the pathogen causing northern corn leaf blight. Evolutionary tree analysis showed that this gene was associated with regulatory factors of melanin synthesis. However, the regulatory mechanism of melanin synthesis and its effect on pathogenicity remain unclear. In this study, the function of StMR1 was analyzed by gene knockout. When the expression level of StMR1 in the mutants was significantly reduced, the colony color became lighter, the mycelia were curved and transparent, and the mutant showed a significant loss of pathogenicity. In addition, compared with wild-type, the accumulation of melanin decreased significantly in ΔStmr1. RNA-seq analysis revealed 1,981 differentially expressed genes between the wild-type and knockout mutant, among which 39 genes were involved in melanin metabolism. qPCR revealed that the expression levels of six key genes in the melanin synthesis pathway were significantly reduced. ChIP-PCR and yeast one-hybrid assays confirmed that StMR1 directly binds to the promoters of St3HNR, St4HNR, StPKS, and StLAC2 in the DHN melanin synthesis pathway and regulates gene expression. The C2H2-type zinc fingers and Zn(Ⅱ)2Cys6 binuclear cluster in StMR1 were important for the binding to targets.


Assuntos
Melaninas , Doenças das Plantas , Ascomicetos , Proteínas Fúngicas/genética , Proteínas Fúngicas/metabolismo , Regulação Fúngica da Expressão Gênica , Doenças das Plantas/microbiologia , Virulência , Dedos de Zinco
14.
Chemosphere ; 291(Pt 2): 132984, 2022 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-34801568

RESUMO

Microplastics are an emerging threat to soils, but little is known about their effects on soil nitrogen (N) and phosphorus (P) cycling. In this study, a three-month soil incubation experiment has been conducted to analyze the effects of polyethene (PE) and polypropylene (PP) microplastics in sizes of 0-1 mm and 1-5 mm on soil available phosphate, nitrate, and ammonium contents under different fertilization regimes. Soil phosphorus and nitrogen availability were continuously determined in-situ by ion-exchange membrane method during the incubation. Microplastic surface chemical composition and the specific surface area were analyzed by FTIR and BET, respectively. The 16s rRNA sequencing of soil bacterial communities as well as soil pH have been determined after the incubation. The results showed that the presence of microplastics could significantly (P < 0.05) decrease soil available phosphate content from 122.61 mg P L-1 to 63.43 mg P L-1. The addition of PP microplastics could significantly increase soil available ammonium content from 0.94 mg N L-1 to 1.53 mg N L-1. Since microplastics had undetectable specific surface area and limited effects on soil microorganisms, adsorption and microorganism alteration functions might not be the main drivers of microplastic effects on soil phosphorus and nitrogen.


Assuntos
Microplásticos , Solo , Nitrogênio , Fósforo , Plásticos , Polietilenos , Polipropilenos , RNA Ribossômico 16S , Microbiologia do Solo
15.
Talanta ; 236: 122875, 2022 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-34635255

RESUMO

Molecularly imprinted polymers (MIPs) have aroused great attention as a new material for the removal or detection of pharmaceuticals and personal care products (PPCPs). However, it is not clear about the superiority and deficiency of MIPs in the process of removing or detecting PPCPs. Herein, we evaluated the performance of MIPs in the aspects of adsorption capacity, binding affinity, adsorption rate, and compatibility to other techniques, and proposed ways to improve its performance. Without regard to the selectivity of MIPs, for the PPCPs adsorption, MIPs surprisingly did not always perform better than the conventional adsorbents (non-imprinted polymers, biochar, activated carbon and resin), indicating that MIPs should be used where selectivity is crucial, for example recovery of specific PPCPs in an environmental sample extraction process. Compared to the traditional solid-phase extraction for PPCPs detection pretreatment, the usage of MIPs as substitute extraction agents could obtain high selectivity of specific substance, due to the uniformity and effectiveness of the specific sites. A promising development in the future would be to combine other simple and rapid quantitative technologies, such as electro/photochemical sensor and catalytic degradation, to realize rapid and sensitive detection of trace PPCPs.


Assuntos
Impressão Molecular , Adsorção , Polímeros Molecularmente Impressos , Polímeros , Extração em Fase Sólida
16.
Sci Total Environ ; 793: 148577, 2021 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-34328989

RESUMO

Plastic gauzes have been widely used in the BTH region against haze events and for agricultural practices. The breakage of plastic gauzes would lead to the release of microplastics into soils, but it is difficult to estimate the inputs due to their wide implementation. In this study, we have conducted an estimation model based on the remote sensing technology for plastic gauze identification and the data from field experiments and literature. This model first managed to interpret the distribution of plastic gauzes from the Landsat8 images with the average overall accuracy at 0.92 and the average kappa at 0.77. By deeming the implementation duration of plastic gauzes from their distribution and using the breakage rates of plastic materials in soils reported in the literature, the model estimated that on average 1629.68 tons of microplastics have been released to soils from plastic gauze annually in the BTH region. Comparing with the microplastics released from other sources (e.g., personal care products, household dusts, laundry, and tire wear), plastic gauze could be a considerable contributor to soil microplastics.


Assuntos
Microplásticos , Plásticos , Agricultura , Monitoramento Ambiental , Solo
17.
Environ Pollut ; 278: 116833, 2021 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-33689945

RESUMO

Microplastics are highly accumulated in soils and supposed to migrate vertically due to water infiltration, fauna activities, and root growth. In this study, the vertical migration of microplastics along soil profile under three crop roots (corn, soybean, and ryegrass) was analyzed by a laboratory-scale incubation experiment. When microplastics were initially distributed in the surface layer, crop roots showed little effects on the vertical migration of microplastics. But in terms of homogenous microplastic distribution along soil profile, corn roots could contribute to the upward movement of microplastics in the middle layers (7-12 cm). It could be related to more pores and fissures created by primary and secondary corn roots and buoyancy effects once the pores and fissures were filled with water. Additionally, a significant positive correlation between microplastic numbers and tertiary roots of ryegrass has been observed and indicated the microplastic retention ability of fine crop roots. According to the results, in contrast to the downward microplastic migration caused by water infiltration and soil fauna activities, crop roots tended to move microplastics upwards or maintain them in soil layers.


Assuntos
Poluentes do Solo , Poluentes Químicos da Água , Microplásticos , Plásticos , Solo , Poluentes do Solo/análise , Poluentes Químicos da Água/análise
18.
Sci Rep ; 11(1): 3900, 2021 02 16.
Artigo em Inglês | MEDLINE | ID: mdl-33594152

RESUMO

Applying organic matters into the soil would help to improve soil quality and sustain crop production. In addition, the small molecular organic matters could be active in influencing soil nutrient cycling and crop development. Thus, this study has firstly induced a new technology of quick artificial decomposition to produce fertilizers containing small molecular organic compounds from crop residues and other biological wastes. The fertilizers were produced via the quick artificial decomposition from biological wastes. The small organic species in the fertilizers were identified by the LC-MS. Field experiments of kiwifruit were conducted to test the effects of fertilizers. In total, 341 species of small organic matters have been determined in the produced fertilizers. The results showed that the organic fertilizers could significantly increase the yields of kiwifruit by 15.2% in contrast with mineral fertilizer treatments. Whereas, the organic fertilizers could enhance the contents of nutritive components in kiwifruits. These results proved that the organic fertilizers containing more small organic matter could be more efficient in promoting crop production.

19.
Environ Dev Sustain ; 23(6): 8234-8251, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-32874127

RESUMO

The online food ordering business in China is developing rapidly in recent years with considerable environmental impacts. However, the impacts caused by the express food delivery and the differences between the regions with different economic levels have seldom been quantified. Changing personal consumption behavior might help to reduce such impacts. But to what extent personal consumption changing could alter the environmental impacts caused by express food delivery remained uncertain. Thus, we have conducted a quantitative study based on the data collected from a 45-persons survey to determine the environmental impacts caused by the express food delivery in the different regions of China. Additionally, the reducible environmental impacts were estimated by establishing a scenario of personal consumption behavior changing. The results showed that each express food delivery order would generate 111.80 g CO2 emission equivalent on average. Most (86%) of the CO2 equivalent of the express food delivery came from the food packages. Compared to the orders in the second-class and third-class cities, the orders in the first-class cities had a significantly higher CO2 equivalent due to the greater use of food packages. The results also demonstrated that by walking to take the food in the restaurants nearby (< 1 km), 68% of the CO2 equivalent derived from the express food delivery could be reduced. People's willingness to change consumption behavior plays an important role to achieve the environmental impact reduction.

20.
Environ Pollut ; 272: 115589, 2021 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-33234380

RESUMO

Antibiotics are a typical group of pharmaceutical and personal care products (PPCPs) with emerging pollutant effects. The presence of residual antibiotics in the environment is a prominent issue owing to their potential hazards, toxic effects, and persistence. Several treatments have been carried out in aquatic environments in order to eliminate antibiotic residues. Among these, photodegradation is regarded as an environmentally-friendly and efficient option. Indirect photodegradation is the main pathway for the degradation of residual antibiotics in natural water, as opposed to direct photodegradation. Algae, working as photosensitizers, play an important role in the indirect photolysis of residual antibiotics in natural water bodies. They promote this reaction by secreting extracellular organic matters (EOMs) and inducing the generation of active species. In order to provide a thorough understanding of the effects of algae on residual antibiotic degradation in the environment, this paper comprehensively reviews the latest research regarding algae-induced antibiotic photodegradation. The summary of the different pathways and photosensitive mechanisms involved in this process show that EOMs are indispensable to antibiotic photodegradation. The influencing factors of algae-induced photodegradation are also discussed here: these include algae species, antibiotic types, and environmental variables such as light source, ferric ion presence, temperature, and ultrasound treatment. Based on the review of existing literature, this paper also considers several pathways for the future study of algae-induced antibiotic photodegradation.


Assuntos
Antibacterianos , Poluentes Químicos da Água , Ferro , Fotólise , Água , Poluentes Químicos da Água/análise
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