62 results match your criteria: "Shenyang Institute of Technology[Affiliation]"

Online vibration state identification of multi-rigid-body system based on self-healing model.

Sci Rep

December 2024

School of Mechanical Engineering, Liaoning Engineering Vocational College, Tieling, 112008, Liaoning, People's Republic of China.

The paper proposes a multi-rigid-body system state identification method based on self-healing model in order to improve the accuracy and reliability of CNC machine tools. Firstly, considering the influence of the joint surface, the Lagrange method is used to establish the mechanical model of the multi-rigid-body system. We input acceleration information and use the second-order modulation function to complete the online real-time identification of the joint surface parameters, thereby establishing the self-healing mechanical model of the multi-rigid-body system.

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The impact of pine wilt disease on the endophytic microbial communities structure of .

Front Microbiol

October 2024

Key Laboratory of Nation Forestry and Grassland Administration on Northeast Area Forest and Grass Dangerous Pest Management and Control, Fushun, China.

Pine Wilt Disease (PWD) is a devastating pine tree disease characterized by rapid onset, high mortality rate, quick spread, and difficulty in control. Plant microbiome plays a significant role in the development of PWD. However, the endophytic microbial communities of infected by pine wood nematode (PWN) remain largely unexplored.

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Understanding the properties of explosives is the basis for investigating and analyzing explosion cases. To date, due to the strict legal control of standard explosives and initiators, homemade pyrotechnics composed of oxidizers and fuels have become popular explosive sources of improvised explosive devices (IEDs) threatening greatly social stability and personal safety. The reactivity of pyrotechnics strongly depends on their intrinsic characteristics and operating conditions, which determine the efficiencies of heat and mass transfer between the reaction zone and the unreacted zone.

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Caffeic acid: A game changer in pine wood nematode overwintering survival.

Mol Plant Pathol

October 2024

Key Laboratory of Alien Forest Pest Detection and Control-Heilongjiang Province, School of Forestry, Northeast Forestry University, Harbin, China.

Article Synopsis
  • Following the invasion of the pine wood nematode (PWN) in northeast China, different species in the Pinaceae family showed varying levels of susceptibility, with Larix olgensis being particularly resilient and experiencing low fatality rates compared to Pinus koraiensis.
  • Research indicated that PWN in L. olgensis had 13.43% less lipid content due to the accumulation of caffeic acid, resulting in decreased overwintering survival rates of the nematodes.
  • The findings suggest that the lower lipid reserves led to stunted growth in PWNs, which helped explain the minimal fatalities in L. olgensis, indicating that targeting caffeic acid pathways may help manage PWN in forest ecosystems.
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Whole-Genome Sequences of 13 Chinese Indigenous Pinewood Nematodes, .

Int J Mol Sci

September 2024

Key Laboratory of Forest Disaster Warning and Control in Yunnan Province, College of Forestry, Southwest Forestry University, Kunming 650224, China.

The pinewood nematode ( PWN) induces pine wilt disease in Pinaceae plants, causing severe destruction to pine forests. Previous studies report that by 2023, 663 cities across 18 provinces in China had been infested by the PWN, necessitating immediate control measures. To identify the genetic variations associated with the PWN's adaptation to new environments, we conducted whole-genome sequencing (WGS) on 13 indigenous PWN samples from two distinct geographic zones within China, specifically Anhui, Liaoning, and Jiangxi provinces.

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Unveiling the antibacterial potential of anthocyanins - a comprehensive review on this natural plant extract.

Crit Rev Food Sci Nutr

October 2024

College of Chemistry and Environmental Engineering, Shenzhen University, Shenzhen, Guangdong, China.

With the gradual prohibition of antibiotic fungicides, it is of great significance to develop high-efficient, nontoxic and environmental-friendly antimicrobial agents. Anthocyanin is a natural plant polyphenol pigment which shows antibacterial, anti-inflammatory and antioxidant effects through inhibiting the synthesis of bacterial cell wall, interfering bacterial respiratory metabolism, and inducing bacterial autolysis. As a typical antibacterial agent, anthocyanins have been widely used in various fields, including biological pesticides or feed additives in agricultural production, anti-inflammatory and antibacterial wound dressings in medicine, etc.

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Introduction: The present study explores the effect of ginseng stem leaf (GSL) extract on the production performance, meat quality, antioxidant status, immune function, and lipid metabolism of white feathered broilers.

Methods: There were 6 replicates in each group, with 10 broilers in each replicate. In the 42 day trial, 300 AA broilers were randomly divided into five groups: control group (CON), 1.

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Methyl jasmonate induced tolerance effect of Pinus koraiensis to Bursaphelenchus xylophilus.

Pest Manag Sci

January 2025

Key Laboratory of Alien Forest Pests Detection and Control-Heilongjiang Province, College of Forestry, Northeast Forestry University, Harbin, P. R. China.

Background: Methyl jasmonate (MeJA) can affect the balance of hormones and regulate the disease resistance of plants. Exploring the application and mechanism of MeJA in inducing the tolerance of Pinus koraiensis to pine wood nematode (PWN) infection is of great significance for developing new strategies for pine wilt disease control.

Results: Different concentrations (0.

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Expression and characterization of recombinant antibodies against H7 subtype avian influenza virus and their diagnostic potential.

Front Microbiol

August 2024

State Key Laboratory for Animal Disease Control and Prevention, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, China.

Article Synopsis
  • * In this study, researchers sequenced and analyzed two mAbs against H7 avian influenza viruses, cloning their DNA into expression vectors and producing them in stable cell lines derived from CHO-S cells.
  • * The recombinant antibodies demonstrated comparable efficacy to traditional animal-derived mAbs and highlight a method that could reduce animal usage in mAb production, supporting better animal welfare practices.
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Article Synopsis
  • Rhodococcus equi (R. equi) is a dangerous pathogen affecting young horses, and this study details the complete genome sequence of strain BJ13, isolated from a racehorse farm in Beijing, China.
  • The BJ13 genome is 5.30 Mb long and contains numerous genes related to virulence and drug resistance, including 4,929 coding genes and several identified factors that contribute to its pathogenicity.
  • Animal experiments showed that this strain can cause severe damage and inflammation in mice, with a 50% mortality rate by day 7 post-infection, highlighting the need for further research on how R. equi causes disease.
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Subsurface wastewater infiltration systems for nitrogen pollution control.

Water Environ Res

June 2024

School of Resources and Civil Engineering, Northeastern University, Shenyang, China.

Subsurface wastewater infiltration systems (SWISs) are suggested to be a cost-effective and environmentally friendly method for sewage treatment. However, a comprehensive summary of the relevant mechanisms and optimization methods for nitrogen (N) removal in SWIS is currently lacking. In this review, we first summarize the N transformation mechanisms in SWIS.

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is a medicinal macrofungus cultivated extensively in China. Both the mycelia and fruiting bodies of have remarkable therapeutic properties, but it remains unclear whether the mycelia may serve as a substitute for the fruiting bodies. Furthermore, is a perennial fungus with therapeutic components that vary significantly depending on the growing year of the fruiting bodies.

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Characterization of a novel multifunctional β-glucosidase/xylanase/feruloyl esterase and its effects on improving the quality of Longjing tea.

Food Chem

September 2024

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Key Laboratory of Industrial Microbiology, Tianjin University of Science and Technology, Tianjin, China. Electronic address:

Herein, a novel multifunctional enzyme β-glucosidase/xylanase/feruloyl esterase (GXF) was constructed by fusion of β-glucosidase and bifunctional xylanase/feruloyl esterase. The activities of β-glucosidase, xylanase, feruloyl esterase and acetyl xylan esterase displayed by GXF were 67.18 %, 49.

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Response analysis of to pine wood nematode infection through transcriptomics and metabolomics study.

Front Plant Sci

May 2024

Key Laboratory of Alien Forest Pests Detection and Control-Heilongjiang Province, College of Forestry, Northeast Forestry University, Harbin, China.

is primarily distributed in Siberia. Owing to its excellent cold resistance and development potential, it has become an important introduced tree species in the Greater Xing'an area of China. Pine wilt disease, triggered by the pine wood nematode (PWN, ), constitutes a profoundly critical affliction within forest ecosystems.

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Study on curve optimization and structural safety effect of south roof of solar greenhouse in China.

R Soc Open Sci

May 2024

College of Mechanical and Power Engineering, Shenyang University of Chemical Technology, Shenyang, Liaoning, 110142 , People's Republic of China.

To maximize the use of solar energy and increase the building area of solar greenhouses in China, a light radiation model for solar greenhouses is established. This model integrates previous research results with the solar motion principle, meteorological data and the optical properties of materials. The results indicate that optimizing the structural curve of the south roof of the greenhouse improves both internal land utilization and solar capture.

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Soil microbiome of shiro reveals the symbiotic relationship between and .

Front Microbiol

March 2024

Primorye State Agricultural Academy, Ussuriysk, Russia.

Article Synopsis
  • The study focuses on an ectomycorrhizal fungus whose cultivation is limited due to insufficient knowledge of its symbiotic relationships with host plants, particularly within a structure known as shiro.
  • Soil samples collected from different regions in Liaoning Province, China revealed notable differences between shiro and rhizosphere environments, including variations in nutrient levels and the diversity of fungal and bacterial communities.
  • Analysis showed that the ectomycorrhizal fungus altered the fungal community by suppressing certain species while promoting a richer bacterial community, suggesting a complex and beneficial symbiotic relationship which enhances nutrient cycling.
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Article Synopsis
  • The study focused on the Chinese "Lingzhi" genus, exploring the metabolite differences among four edible and medicinal species using advanced chromatography techniques.
  • A total of 575-764 significant metabolites were identified, with notable differences mainly in amino acids, terpenes, nucleotides, alkaloids, and lipids.
  • The research suggests these advantageous metabolites may impact various diseases and highlights potential targets for product development in food and medicine.
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Hydrogen peroxide(H2O2), as a reliable signaling biomolecule for oxidative stress, its accurate detection during agent-stimulated oxidative stress plays a vital role in pathological and physiological mechanism exploration for disease theranostics. It's necessary to develop an efficient method for their detection. In view of the advantages of fluorescent probes, we rationally constructed a novel fluorescent probe Compound 2 based on 4-(Bromomethyl)benzeneboronic acid pinacol ester_Herein, a small molecule fluorescent probe was fabricated using isoflore nitrile as fluorescent group, phenylboronic acid pinacol ester as the response group, to detect H2O2.

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In this research, a class of nonlinear interconnected systems with sensor faults were investigated and an estimation method was proposed for system sensor faults based on the theory of system state reconstruction. Considering sensor fault vectors in nonlinear interconnected systems, this method constructed a generalized nonlinear interconnected system, whose state was designed by augmenting the original system state and fault vectors, which provides a foundation for fault estimation of nonlinear interconnected systems. An augmented observer was developed by equivalent transformation of generalized interconnected system, so as to realize robust estimations of sensor faults in interconnected systems.

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Subsurface wastewater infiltration system (SWIS) has been recognized as a simple operation and environmentally friendly technology for wastewater purification. However, effectively removing nitrogen (N) remains a challenge, hindering the widespread application of SWIS. In this study, zero-valent iron (ZVI) and porous mineral material (PMM) were applied in SWIS to improve the soil matrix.

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Subsurface wastewater infiltration system (SWIS) has been recognized as a cost-effective and environmentally friendly tool for wastewater treatment. However, there is a lack of knowledge on the transformation processes of nitrogen (N), hindering the improvement of the N removal efficiency in SWIS. Here, the migration and transformation mechanisms of ammonium (NH-N) and nitrate (NO-N) over 10 days were explored by N labeling technique.

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SlMYB7, an AtMYB4-Like R2R3-MYB Transcription Factor, Inhibits Anthocyanin Accumulation in Fruits.

J Agric Food Chem

December 2023

Key Laboratory of Agriculture Biotechnology, Key Laboratory of Protected Horticulture (Ministry of Education), College of Biosciences and Biotechnology, Shenyang Agricultural University, Liaoning 110161, China.

Tomato is a horticultural crop with an incomplete flavonoid metabolic pathway that does not typically accumulate anthocyanins in the fruit. In recent years, intensive studies of the loci () and () have clarified the functions of positive regulators (R2R3-MYBs) and a negative regulator (CPC-MYB) in anthocyanin biosynthesis in the fruits. However, little is known about the R2R3-MYB repressors.

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L. is a species of willow tree that is widely cultivated worldwide as an ornamental plant, but its medicinal resources have not yet been reasonably developed or utilized. Herein, we extracted and purified the total flavonoids from willow buds (PTFW) for component analysis in order to evaluate their in vitro anti-tumor and hypoglycemic activities.

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Physiological response mechanism of European birch ( Roth) to PEG-induced drought stress and hydration.

Front Plant Sci

August 2023

Key Laboratory of Forest Tree Genetics and Breeding of Liaoning Province, Shenyang Agricultural University, Shenyang, China.

Drought stress is also one of the important abiotic factors limiting plant growth and development, and the global temperature is rising year by year, resulting in a dry environment in most terrestrial forests, which will continue to affect the growth, development and reproduction of tree species in forests. European birch() native to Europe, introduced to the mountains of eastern Liaoning in 1981 (annual precipitation of about 800mm), European birch relative to downy birch ()has strong adaptability and drought tolerance and cold tolerance, can grow normally in eastern Liaoning, but it is easy to be affected by drought at the seedling stage and cause death, many arid and semi-arid areas have no introduction and practical application of European birch, and there is less research on the drought resistance of European birch. This study used different concentrations of PEG-6000 treatment to simulate drought stress and clarify the changes of various growth physiological parameters and photosynthetic characteristics of European birch seedlings under drought stress, in order to investigate the physiological response mechanism of European birch under drought stress .

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