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    U

    University of Agricultural Engineering

    院校
    816论文总数
    4.9万引用总数

    University of Agricultural Engineering, Valladolid, is a university run by the Society of Jesus which began in 1964 as the Nevares Institute of Agricultural Employers (INEA). It is currently affiliated with the University of Valladolid.

    论文量&引用量时间轴

    机构学者

    排序
    Ingolf Nes
    Ingolf Nes
    Laboratory of Microbial Gene Technology and Food Microbiology, The Norwegian University of Life Sciences
    论文:22引用:0H-index:0
    Brit Salbu
    Brit Salbu
    Norges Miljø- og Biovitenskapelige Universitet
    论文:15引用:0H-index:0
    Lars Bakken
    Lars Bakken
    Fakultet for Kjemi, Bioteknologi Og Matvitenskap, Norwegian University of Life Sciences
    论文:12引用:0H-index:0
    Gunnar Klemetsdal
    Gunnar Klemetsdal
    Department of Animal and Aquacultural Sciences, Norwegian University of Life Sciences (UMB)
    论文:11引用:0H-index:0
    Per Olav Skjervold
    Per Olav Skjervold
    Dept Agr Engn, Agr Univ Norway
    论文:10引用:0H-index:0
    Shivcharn S. Dhillion
    Shivcharn S. Dhillion
    DEPT BIOL SCI, ILLINOIS STATE UNIV
    论文:9引用:0H-index:0
    Å. Bjørnstad
    Å. Bjørnstad
    Dept Plant & Environm Sci, Norwegian Univ Life Sci
    论文:9引用:0H-index:0
    Bjørg Heringstad
    Bjørg Heringstad
    Institutt for Husdyr- og Akvakulturvitenskap, Fakultet for Biovitenskap, Norges Miljø- og Biovitenskapelige Universitet
    论文:8引用:0H-index:0
    Asmund Bjornstad
    Asmund Bjornstad
    Department of Plant and Environmental Sciences, Norwegian University of Life Sciences
    论文:7引用:0H-index:0

    论文(816)

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    1An Evaluation of Carbon Indicators of Soil Health in Long-Term Agricultural Experiments
    Daniel Liptzin,Elizabeth L. Rieke,Shannon B. Cappellazzi,G. Mac Bean,Michael Cope,Kelsey L. H. Greub,Charlotte E. Norris,Paul W. Tracy,Ezra Aberle,Amanda Ashworth,Oscar Banuelos Tavarez,Andy I. Bary,

    Soil organic carbon (SOC) is closely tied to soil health. However, additional biological indicators may also provide insight about C dynamics and microbial activity. We used SOC and the other C indicators (potential C mineralization, permanganate oxidizable C, water extractable organic C, and beta-glucosidase enzyme activity) from the North American Project to Evaluate Soil Health Measurements to examine the continental-scale drivers of these indicators, the relationships among indicators, and the effects of soil health practices on indicator values. All indicators had greater values at cooler temperatures, and most were greater with increased precipitation and clay content. The indicators were strongly correlated with each other at the site-level, with the strongest relationship between SOC and permanganate oxidizable C. The indicator values responded positively to decreased tillage, inclusion of cover crops, application of organic nutrients, and retention of crop residue, but not the number of harvested crops in a rotation. The effect of decreased tillage on the C indicators was generally greater at sites with higher precipitation. The magnitude and direction of the response to soil health practices was consistent across indicators within a site but measuring at least two indicators would provide additional confi-dence of the effects of management, especially for tillage. All C indicators responded to management, an essential criterion for evaluating soil health. Balancing the cost, sensitivity, interpretability, and availability at commercial labs, a 24-hr potential C mineralization assay could deliver the most benefit to measure in conjunction with SOC.

    2023SOIL SCIENCE SOCIETY OF AMERICA JOURNAL(2023)引用:156
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    2The Effects of Beauveria Bassiana Infection on the Gene Expression Profiles of Diaphorina Citri Adults
    Luyang Liu,Xianmei Yang,Xueming Cai,Yuting Huang,Jintian Lin,Benshui Shu

    The Asian citrus psyllid, Diaphorina citri Kuwayama, is a citrus pest worldwide. This pest transmits the pathogens of Huanglongbing, Candidatus Liberibacter asiaticus (CLas), and has led to huge economic losses. The use of chemical pesticides is the first choice for field pest control, while resistance, resurgence, and residue (3R) problems have received widespread attention. Biological control is an optional and effective method for D. citri management and needs to be developed. In this study, eleven entomopathogenic fungi strains were collected, and their morphologies were recorded. After blasting with the ITS sequences, eight strains were identified as Beauveria bassiana, and three strains were Metarhizium anisopliae. The pathogenicity of these fungi on D. citri adults at 1.0 x 107 conidia/mL was tested, with the LT50 ranging from 4.764 to 8.551. The virulence of B. bassiana strain XM-D1 was further evaluated, and the LC50 was 4.93 x 105 conidia/mL. A total of 155 and 894 differentially expressed genes (DEGs) were identified in the samples after 24 and 48 h of XM-D1 infection, respectively. Further analyses found that the pathways of apoptosis, cholesterol metabolism, fatty acid biosynthesis, and vitamin digestion and absorption could be involved in the response of D. citri adults to 48 h of infection, and DEGs encoding chaperone proteins, cuticle protein 12.5, P450s, and lysozymes may play important roles in immune defense. Our preliminary findings enrich the entomopathogenic fungi repository and shed light on the defense mechanism of D. citri in response to B. bassiana infection at the molecular level.

    2023BIOLOGICAL CONTROL(2023)引用:5
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    3Evaluation of Aggregate Stability Methods for Soil Health
    Elizabeth L. Rieke,Dianna K. Bagnall,Cristine L. S. Morgan,Kade D. Flynn,Julie A. Howe,Kelsey L. H. Greub,G. Mac Bean,Shannon B. Cappellazzi,Michael Cope,Daniel Liptzin,Charlotte E. Norris,Paul W. Tracy,

    Aggregate stability is a commonly used indicator of soil health because improvements in aggregate stability are related to reduced erodibility and improved soil-water dynamics. During the past 80 to 90 years, numerous methods have been developed to assess aggregate stability. Limited comparisons among the methods have resulted in varied magnitudes of response to soil health management practices and varied influences of inherent soil properties and climate. It is not clear whether selection of a specific method creates any advantage to the investigator. This study assessed four commonly used methods of measuring aggregate stability using data collected as part of the North American Project to Evaluate Soil Health Measurements. The methods included water stable aggregates using the Cornell Rainfall Simulator (WSACASH), wet sieved water stable aggregates (WSAARS), slaking captured and adapted from SLAKES smart-phone image recognition software (STAB10), and the mean weight diameter of water stable aggregates (MWD). Influence of climate and inherent soil prop-erties at the continental scale were analyzed in addition to method responses to rotation diversity, cash crop count, residue management, organic nutrient amendments, cover crops, and tillage. The four methods were moderately correlated with each other. All methods were sensitive to differences in climate and inherent soil properties between sites, although to different degrees. None measured significant effects from rotation diversity or crop count, but all methods detected significant increases in aggregate stability resulting from reduced tillage. Significant increases or positive trends were observed for all methods in relation to cover cropping, increased residue retention, and organic amendments, except for STAB10, which expressed a slightly negative response to organic amendments. Considering these results, no single method was clearly superior and all four are viable options for measuring aggregate stability. Therefore, secondary considerations (e.g., cost, method availability, increased sensitivity to a specific management practice, or minimal within-treatment variability) driven by the needs of the investigator, should determine the most suitable method.

    2022GEODERMA(2022)引用:72
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    4Selecting Soil Hydraulic Properties As Indicators of Soil Health: Measurement Response to Management and Site Characteristics
    Dianna K. Bagnall,Cristine L. S. Morgan,G. Mac Bean,Daniel Liptzin,Shannon B. Cappellazzi,Michael Cope,Kelsey L. H. Greub,Elizabeth L. Rieke,Charlotte E. Norris,Paul W. Tracy,Ezra Aberle,Amanda Ashworth,

    Farmers, scientists, and other soil health stakeholders require interpretable indicators of soil hydraulic function. Determining which indicators to use has been difficult because of measurement disconformity, spatial and temporal variability, recently established treatments, and the effect of site characteristics on management practice differences. The North American Project to Evaluate Soil Health Measurements includes 124 sites uniformly sampled across a range of soil health management practices in North America in 2019. We compare and recommend indicators of hydraulic function that best characterize soil health. We assessed the relationship of each indicator to a suite of soil inherent properties and climate variables, the response of each indicator to soil health management practices, the effect that soil inherent properties (clay content, sand content, and pH) and climatic variables (10-yr mean annual precipitation and temperature) had on response to management practices, and the relationship among the responses of the indicators to soil health management practices. Field capacity measured on intact cores (theta(FC_INTACT)) was the best measure of soil hydraulic function, because it responded to management, represents a direct measure of soil hydraulic function, is proximal to stakeholder values, and its response to management was not significantly influenced by inherent and climatic variables. Other suitable indicators are bulk density, soil organic carbon (SOC), and aggregate stability, which are not direct measures of soil hydraulic function but do respond to management and may be practical in situations in which measuring theta(FC_INTACT) is not. This study informs selection of soil health indicators to measure soil hydraulic function.

    2022SOIL SCIENCE SOCIETY OF AMERICA JOURNAL(2022)引用:48
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    5Linking Soil Microbial Community Structure to Potential Carbon Mineralization: A Continental Scale Assessment of Reduced Tillage
    Elizabeth L. Rieke,Shannon B. Cappellazzi,Michael Cope,Daniel Liptzin,G. Mac Bean,Kelsey L. H. Greub,Charlotte E. Norris,Paul W. Tracy,Ezra Aberle,Amanda Ashworth,Oscar Banuelos Tavarez,Andy Bary,

    Potential carbon mineralization (Cmin) is a commonly used indicator of soil health, with greater Cmin values interpreted as healthier soil. While Cmin values are typically greater in agricultural soils managed with minimal physical disturbance, the mechanisms driving the increases remain poorly understood. This study assessed bacterial and archaeal community structure and potential microbial drivers of Cmin in soils maintained under various degrees of physical disturbance. Potential carbon mineralization, 16S rRNA sequences, and soil characterization data were collected as part of the North American Project to Evaluate Soil Health Measurements (NAPESHM). Results showed that type of cropping system, intensity of physical disturbance, and soil pH influenced microbial sensitivity to physical disturbance. Furthermore, 28% of amplicon sequence variants (ASVs), which were important in modeling Cmin, were enriched under soils managed with minimal physical disturbance. Sequences identified as enriched under minimal disturbance and important for modeling Cmin, were linked to organisms which could produce extracellular polymeric substances and contained metabolic strategies suited for tolerating environmental stressors. Understanding how physical disturbance shapes microbial communities across climates and inherent soil properties and drives changes in Cmin provides the context necessary to evaluate management impacts on standardized measures of soil microbial activity.

    2022SOIL BIOLOGY & BIOCHEMISTRY(2022)引用:38
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    合作机构(100)

    University of Agriculture, Peshawar合作论文 100
    奥斯陆大学合作论文 41
    瑞典农业科学大学合作论文 30
    Korea Food Research Institute合作论文 13
    Norwegian School of Veterinary Science合作论文 10
    康奈尔大学合作论文 9
    Ontario Forest Research Institute,Ministry of Natural Resources and Forestry,Government of Canada合作论文 8
    Norwegian Radiation and Nuclear Safety Authority,Government of Norway合作论文 8
    挪威科技大学合作论文 7
    特罗姆瑟大学合作论文 7

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