Publications by authors named "Ya-Jie Yin"

Based on network Meta-analysis, we compared the effects of four traditional Chinese medicine(TCM) injections combined with conventional treatment on clinical total effective rate, recovery time of body temperature, cough disappearance time, lung rale disappearance time, wheezing relief time, and lung shadow disappearance time of bronchopneumonia in children and evaluated the safety of the four TCM injections in the treatment of bronchopneumonia in children, so as to provide an evidence-based basis for the clinical use of medication for bronchopneumonia in children. Computer retrieval was performed on CNKI, Wanfang, VIP, SinoMed, PubMed, EMbase, Web of Science, and Cochrane Library databases for randomized controlled trial(RCT) on the treatment of bronchopneumonia in children with TCM injections. The search time limit was from the establishment of each database to 2 January 2024.

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Backgroud: Reindeer is the only deer species that both male and female produce antlers, which provides a particularly interesting case in studying the differences between antlers of the two sexes. Alpha 3(VI) Collagen Gene (COL6A3), forms a microfibrillar network associated with the structural integrity and biomechanical properties, has been found to be one of the differentially expressed genes in antler mesenchyme of female and male reindeer.

Objective And Methods: The promoter sequence of reindeer COL6A3 gene was obtained using the cloning technology and analyzed by the bioinformatics methods.

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Article Synopsis
  • The Ewenki people in China manage the southernmost reindeer population in the world, which is crucial for their survival due to its genetic diversity.
  • A study analyzed 163 reindeer from 8 populations, revealing an average of 7.7 alleles per genetic locus and a notable deficiency of heterozygotes across populations.
  • To enhance the conservation of these endangered reindeer, increasing interpopulation exchanges and establishing natural reserves are recommended strategies.
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In this study, a new bioflocculant (ZZ-3) is isolated and evaluated. This novel flocculant was derived Klebsiella, which was identified by 16S rDNA sequencing as well as biochemical and physiological analyses. The composition of ZZ-3 was found to be 84.

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Article Synopsis
  • Cr(VI) pollution poses significant environmental risks due to its harmful effects, including cancer risk and its ability to move through the environment.
  • Reducing Cr(VI) to the less toxic Cr(III) is an effective way to address this pollution, with bacteria being a key player in this bioremediation process due to their efficiency, eco-friendliness, and cost-effectiveness.
  • The review highlights various bacterial species that can reduce Cr(VI), explores the mechanisms and proteins involved in this reduction process, and outlines future research directions in the field.
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Mycothiol (MSH) plays important roles in maintaining cytosolic redox homeostasis and in adapting to reactive oxygen species in the high-(G + C)-content Gram-positive Actinobacteria. However, its physiological roles are ill defined compared to glutathione, the functional analog of MSH in Gram-negative bacteria and most eukaryotes. In this research, we explored the impact of intracellular MSH on cellular physiology by using MSH-deficient mutants in the model organism Corynebacterium glutamicum.

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Rhodococcus sp. strain NCIMB 12038 utilizes naphthalene as a sole source of carbon and energy, and degrades naphthalene via salicylate and gentisate. To identify the genes involved in this pathway, we cloned and sequenced a 12-kb DNA fragment containing a gentisate catabolic gene cluster.

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Mycothiol (MSH) was reported to be the dominant low molecular weight thiol in members of the Actinobacteria. In this study, a simple, fast, and sensitive method for qualitative and quantitative determination of MSH molecules was developed based on maleylpyruvate isomerase (MPI) from Corynebacterium glutamicum. The principle of this method is that the activity of MPI from C.

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Mycothiol (MSH) is the major low molecular mass thiols in many Gram-positive bacteria such as Mycobacterium tuberculosis and Corynebacterium glutamicum. The physiological roles of MSH are believed to be equivalent to those of GSH in Gram-negative bacteria, but current knowledge of MSH is limited to detoxification of alkalating chemicals and protection from host cell defense/killing systems. Recently, an MSH-dependent maleylpyruvate isomerase (MDMPI) was discovered from C.

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Data mining of the Corynebacterium glutamicum genome identified 4 genes analogous to the mshA, mshB, mshC, and mshD genes that are involved in biosynthesis of mycothiol in Mycobacterium tuberculosis and Mycobacterium smegmatis. Individual deletion of these genes was carried out in this study. Mutants mshC- and mshD- lost the ability to produce mycothiol, but mutant mshB- produced mycothiol as the wild type did.

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