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12篇 您的检索式:作者名="Huina Lin"
    题名 作者 年代 出处 被引量
1Methylmercury and sulfate-reducing bacteria in mangrove sediments from Jiulong River Estuary,China显示文摘Estuaries are important sites for mercury (Hg) methylation,with sulfate-reducing bacteria (SRB) thought to be the main Hg methylators.Distributions of total mercury (THg) and methylmercury (MeHg) in mangrove sediment and sediment core from Jiulong River Estuary Provincial Mangrove Reserve,China were determined and the possible mechanisms of Hg methylation and their controlling factors in mangrove sediments were investigated.Microbiological and geochemical parameters were also determined.Results showed that SRB constitute a small fraction of total bacteria (TB) in both surface sediments and the profile of sediments.The content of THg,MeHg,TB,and SRB were (350±150)ng/g,(0.47±0.11)ng/g,(1.4×10 11±4.1×109)cfu/g dry weight (dw),and (5.0×106±2.7×106)cfu/g dw in surficial sediments,respectively,and (240±24)ng/g,(0.30±0.15)ng/g,(1.9×1011± 4.2×1010)cfu/g dw,and (1.3×106± 2.0×106) cfu/g dw in sediment core,respectively.Results showed that THg,MeHg,TB,MeHg/THg,salinity and total sulfur (TS) increased with depth,but total organic matter (TOM),SRB,and pH decreased with depth.Concentrations of MeHg in sediments showed significant positive correlation with THg,salinity,TS,and MeHg/THg,and significant negative correlation with SRB,TOM,and pH.It was concluded that other microbes,rather than SRB,may also act as main Hg methylators in mangrove sediments.Hao Wu Zhenhua Ding Yang Liu Jinling Liu Haiyu Yan Jiayong Pan Liuqiang Li Huina Lin Guanghui Lin Haoliang Lu 2011Journal of Environmental Sciences2011,23,1:17
2Single-cell transcriptomics reveals gene signatures and alterations associated with aging in distinct neural stem/progenitor cell subpopulations显示文摘Aging associated cognitive decline has been linked to dampened neural stem/progenitor cells (NSC/NPCs) activities manifested by decreased proliferation, reduced propensity to produce neurons, and increased differentiation into astrocytes. While gene transcription changes objectively reveal molecular alterations of cells undergoing various biological processes, the search for molecular mechanisms underlying aging of NSC/NPCs has been confronted by the enormous heterogeneity in cellular compositions of the brain and the complex cellular microenvironment where NSC/NPCs reside. Moreover, brain NSC/NPCs themselves are not a homogenous population, making it even more difficult to uncover NSC/NPC sub-type specific aging mechanisms. Here, using both population-based and single cell transcriptome analyses of young and aged mouse forebrain ependymal and subependymal regions and comprehensive “big-data” processing, we report that NSC/NPCs reside in a rather inflammatory environment in aged brain, which likely contributes to the differentiation bias towards astrocytes versus neurons. Moreover, single cell transcriptome analyses revealed that different aged NSC/NPC subpopulations, while all have reduced cell proliferation, use different gene transcription programs to regulate age-dependent decline in cell cycle. Interestingly, changes in cell proliferation capacity are not influenced by inflammatory cytokines, but likely result from cell intrinsic mechanisms. The Erk/Mapk pathway appears to be critically involved in regulating age-dependent changes in the capacity for NSC/NPCs to undergo clonal expansion. Together this study is the first example of using population and single cell based transcriptome analyses to unveil the molecular interplay between different NSC/NPCs and their microenvironment in the context of the aging brain.Zhanpinq Shi Yanan Geng Jiping Liu Huina Zhang Liqiang Zhou Quan Lin Juehua Yu Kunshan Zhang Jie Liu Xinpei Gao Chunxue Zhang Yinan Yao Chong Zhang Yi E. Sun 2018Protein & Cell2018,9,4:3
3The RALF1-FERONIA complex interacts with and activates TOR signaling in response to low nutrients显示文摘Target of rapamycin(TOR)kinase is an evolutionarily conserved major regulator of nutrient metabolism and organismal growth in eukaryotes.In plants,nutrients are remobilized and reallocated between shoots and roots under low-nutrient conditions,and nitrogen and nitrogen-related nutrients(e.g.,amino acids)are key upstream signals leading to TOR activation in shoots under low-nutrient conditions.However,how these forms of nitrogen can be sensed to activate TOR in plants is still poorly understood.Here we report that the Arabidopsis receptor kinase FERON IA(FER)interacts with the TOR pathway to regulate nutrient(nitrogen and amino acid)signaling under low-nutrient conditions and exerts similar metabolic effects in response to nitrogen deficiency.We found that FER and its partner,RPM1-induced protein kinase(RIPK),interact with the TOR/RAPTOR complex to positively modulate TOR signaling activity.During this process,the receptor complex FER/RIPK phosphorylates the TOR complex component RAPTOR1B.The RALF1 peptide,a ligand of the FER/RIPK receptor complex,increases TOR activation in the young leaf by enhancing FER-TOR interactions,leading to promotion of true leaf growth in Arabidopsis under lownutrient conditions.Furthermore,we showed that specific amino acids(e.g.,Gin,Asp,and Gly)promote true leaf growth under nitrogen-deficient conditions via the FER-TOR axis.Collectively,our study reveals a mechanism by which the RALF1-FER pathway activates TOR in the plant adaptive response to low nutrients and suggests that plants prioritize nutritional stress response over RALF1-mediated inhibition of cell growth under low-nutrient conditions.Limei Song Guoyun Xu Tingting Li Huina Zhou Qinlu Lin Jia Chen Long Wang Dousheng Wu Xiaoxu Li Lifeng Wang Sirui Zhu Feng Yu 2022Molecular Plant2022,15,7:2
4Salidroside Improves Homocysteine-Induced Endothelial Dysfunction by Reducing Oxidative Stress显示文摘Sin Bond Leung Huina Zhang Chi Wai Lau Yu Huang Zhixiu Lin Wagner Vilegas 2013Evidence-Based Complementary and Alternative Medicine2013,,:2
5Chemically-Conju- gated Bone Morphogenetic Protein-2 on Three-Dimensional Polycapr- olactone Scaffolds Stimulates Osteogenic Activity in Bone Marrow Stromal Cells 显示文摘Huina Zhang Francesco Migueco Chia Ying Lin 2010Tissue Engineering Part A2010,16,11:1
6Research Progress on the Function of Melatonin and Its Receptor in Animal Reproduction显示文摘Melatonin has been a research hotspot in the field of medicine and life sciences for more than 60 years since it was discovered.In order to accelerate the increase of economic animal productivity,a large number of studies also have focused on the regulation of melatonin and its receptors during animal reproduction in recent years.In this paper,the relevant characteristics of melatonin and the latest research progress in animal reproduction were discussed,and the biological functions of melatonin were reviewed from the aspects of germ cells,reproductive endocrine and embryo development,laying a theoretical foundation for further exploring the regulation mechanism of melatonin on reproductive process.Tian LIN Hefeng ZHANG Xiaoliang PEI Huina BO 2022Agricultural Biotechnology2022,11,1:1
7Chemically-Conjug- ated Bone Morphogenetic Protein-2 on Three-Dimensional Polycapro- lactone Scaffolds Stimulates Osteogenic Activity in Bone Marrow Stromal Cells显示文摘Huina Zhang Francesco Migneco Chia-Ying Lin 2010Tissue Engineering2010,16,11:1
8The catalytic activity of cytochrome P450 3A22 is critical for the metabolism of T-2 toxin in porcine reservoirs显示文摘Xiaohu Ge Junping Wang Jing Liu Jun Jiang Huina Lin Jun Wu Man Ouyang Xianqing Tang Ming Zheng Ming Liao Yiqun Deng 2010Catalysis Communications2010,,2:1
9The False Obvious:Gender Myth in Perfume Commercials显示文摘Perfume commercial,as a form of cultural text and practice,is relatively special in contemporary commercial advertising:The commodity qualities of perfume dictate that perfume advertisements must cater to the sexual fantasies of the audience,and therefore inevitably characterize the mainstream,dominant gender norms.At the same time,perfume commercial,as a unique marketing communication method,also unconsciously influences people’s values through sensory stimulation and emotional rendering.This article explores the connection between perfume and its commercials,sex,and gender,and discusses the generation of meaning in perfume commercials as texts and deconstructs the gender myth implied from the perspectives of representation and myth analysis,ultimately revealing that behind the gender myth of perfume commercials is but a false manifestation of the ideal self-image of the western white bourgeois heterosexuality.DENG Lin SHI Huina 2024Cultural and Religious Studies2024,12,1:0
10Concentrations of Cu, Pb, Zn, Cr and Cd in Surficial Sediments from Mangrove Wetlands of China显示文摘Ding Zhenhua Zhuang Min Li liuqiang Liu Jinling Lin Huina Wu Hao 2015Journal of Environmental Science and Engineering(A)2015,4,9:0
11Chinia gen.nov.—the second diatom genus simonsenioid raphe from mangroves in Fujian,China显示文摘A new monotypic diatom genus Chinia gen.nov.from estuarine mangrove habitats in Fujian,China is described.Light,scanning and transmission electron microscopy observations of its morphology show that this diatom differs from any established raphid diatom genus.The new genus is distinguished by a strongly undulate valve face,eccentric raphe canal,and perforated copulae.Its distinctly elevated and perforated raphe canal,classifi ed as simonsenioid type,is supported by sparse infundibulum-like portulae,and the portulae are separated by large fenestrae.The valves of Chinia also have hymenate areolar occlusions and the raphe lacks a central nodule.However,unlike most Bacillariaceae with two plastids,including Simonsenia,Chinia has a single plastid similar to those in Entomoneis and Surirella.Despite the similarities to Simonsenia,Chinia features porous raphe canal and loose striation,which is different from those of Simonsenia that has a solid raphe canal and distinct rows of areolae.These distinctive cytological and morphological characters suggest an affinity of the new genus to the Bacillariaceae.Huina LIN Weiwei WU Lin SUN Andrzej WITKOWSKI Xiaoye LI Vishal PATIL Junrong LIANG Xuesong LI Yahui GAO Changping CHEN 2022Journal of Oceanology and Limnology2022,40,3:0
12Erratum to:Chinia gen.nov.—the second diatom genus simonsenioid raphe from mangroves in Fujian,China显示文摘Erratum to:https://doi.org/10.1007/s00343-021-1067-0 The title of this article contains a few mistakes.The correct one is given below:Chinia gen.nov.—a second diatom genus with the simonsenioid raphe type from mangroves in Fujian Province,China*The online version of the original articles can be found at:https://doi.org/10.1007/s00343-021-1067-0.Huina LIN Weiwei WU Lin SUN Andrzej WITKOWSKI Xiaoye LI Vishal PATIL Junrong LIANG Xuesong LI Yahui GAO Changping CHEN 2022Journal of Oceanology and Limnology2022,40,3:0
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