维普中文期刊产品整合服务
22篇 您的检索式:作者名="YinZhao"
    题名 作者 年代 出处 被引量
1Core Metabolic Features and Hot Origin of Bathyarchaeota显示文摘The archaeal phylum Bathyarchaeota comprises highly diversified subgroups and is considered to be one of the most abundant microorganisms on earth. The metabolic features and evolution of this phylum still remain largely unknown. In this article, a comparative metabolic analysis of 15 newly reconstructed and 36 published metagenomic assembled genomes (MAGs) spanning 10 subgroups was performed, revealing the core metabolic features of Bathyarchaeota—namely, protein, lipid, and benzoate degradation;glycolysis;and the Wood–Ljungdahl (WL) pathway, indicating an acetyl-CoA-centralized metabolism within this phylum. Furthermore, a partial tricarboxylic acid (TCA) cycle, acetogenesis, and sulfur-related metabolic pathways were found in specific subgroups, suggesting versatile metabolic capabilities and ecological functions of different subgroups. Intriguingly, most of the MAGs from the Bathy-21 and -22 subgroups, which are placed at the phylogenetic root of all bathyarchaeotal lineages and likely represent the ancient Bathyarchaeota types, were found in hydrothermal environments and encoded reverse gyrase, suggesting a hyperthermophilic feature. This work reveals the core metabolic features of Bathyarchaeota, and indicates a hot origin of this archaeal phylum.Xiaoyuan Feng Yinzhao Wang Rahul Zubin Fengping Wang 2019Engineering2019,5,3:7
2Metal-dependent anaerobic methane oxidation in marine sediment:insights from marine settings and other systems显示文摘Anaerobic oxidation of methane(AOM) plays a crucial role in controlling global methane emission. This is a microbial process that relies on the reduction of external electron acceptors such as sulfate, nitrate/nitrite, and transient metal ions. In marine settings, the dominant electron acceptor for AOM is sulfate, while other known electron acceptors are transient metal ions such as iron and manganese oxides. Despite the AOM process coupled with sulfate reduction being relatively well characterized,researches on metal-dependent AOM process are few, and no microorganism has to date been identified as being responsible for this reaction in natural marine environments. In this review, geochemical evidences of metal-dependent AOM from sediment cores in various marine environments are summarized. Studies have showed that iron and manganese are reduced in accordance with methane oxidation in seeps or diffusive profiles below the methanogenesis zone. The potential biochemical basis and mechanisms for metal-dependent AOM processes are here presented and discussed. Future research will shed light on the microbes involved in this process and also on the molecular basis of the electron transfer between these microbes and metals in natural marine environments.Lewen Liang Yinzhao Wang Orit Sivan Fengping Wang 2019Science China(Life Sciences)2019,62,10:7
3Comparisons of carcass traits,meat quality,and serum metabolome between Shaziling and Yorkshire pigs显示文摘This study aims to compare the meat quality of Shaziling and Yorkshire pigs and to find the potential indicator in serum for superior meat quality.Six Shaziling and Yorkshire pigs at 30,60,90,150,210,and 300 d of age were selected to examine carcass traits,meat quality,and serum metabolome.The results showed that the body weight,carcass length,and loin eye area of Shaziling pigs at 150,210,and 300 d of age were significantly lower than those of Yorkshire pigs(P<0.05).Shaziling pigs at 150 and 300 d of age had significantly lower backfat thickness than Yorkshire pigs(P<0.05).Compared with Yorkshire pigs,Shaziling pigs at all 6 ages had a lower lean percentage and a higher fat percentage(P<0.05).At 60,90,and 150 d of age,the post-mortem pH-decline,b*value(yellowness),and drip loss of Shaziling pigs were significantly lower than those of Yorkshire pigs(P<0.05).Moreover,at 150 d of age,Shaziling pigs had significantly higher a^(*)value(redness)and intramuscular fat(IMF)content than Yorkshire pigs(P<0.05).Correlation analysis between the top 40 metabolites and phenotypes indicated that L-carnitine had positive correlations with fat percentage,pH24h,and IMF content,but had negative correlations with lean percentage,L^(*)value(lightness),and b^(*)value(P<0.05).Serum L-carnitine content,fat percentage,pH24h,and IMF content all decreased first and then increased as the pigs grew,which verified the positive correlations between L-carnitine and these phenotypes.In conclusion,Shaziling pigs have a slower growth rate but a better meat quality than Yorkshire pigs.The meat quality of Shaziling pigs is the best from 150 to 210 d of age.This study suggests that a higher serum L-carnitine content is a promising indicator for better meat quality.Bo Song Changbing Zheng Jie Zheng Shiyu Zhang Yinzhao Zhong Qiuping Guo Fengna Li Cimin Long Kang Xu Yehui Duan Yulong Yin 2022Animal Nutrition2022,,1:3
4Profiles of muscular amino acids,fatty acids,and metabolites in Shaziling pigs of different ages and relation to meat quality显示文摘Pork meat is closely related to physicochemical alterations during growth and development,resulting in differences in nutritional value and meat flavor.This study aimed to evaluate the composition of amino acids,fatty acids,and metabolic profiles in the longissimus thoracis muscle(LM)of Shaziling pigs aged 30,90,150,210,and 300 days.The results showed that the predominant fatty acids identified in the LM of Shaziling pigs were C16:0,C16:1,C18:0,C18:1n9c,and C18:2n6c.An opposite correlation was observed for C18:2n6c and n6/n3 polyunsaturated fatty acids(P<0.05).Alanine,aspartate,glutamate,Dglutamine,and D-glutamate metabolism were the main metabolic pathways for the Shaziling pig meat flavor(P<0.05).Moreover,the correlation coefficients revealed that the contents of anserine,C16:0,C16:1,and C18:1n9c were positively correlated with intramuscular fat and/or p H24hand were negatively correlated with the values of L^(*)(lightness)and b^(*)(yellowness)(P<0.05).In conclusion,age greatly affected the meat quality of Shaziling pigs,and the contents of muscular anserine,C16:0,C16:1,and C18:1n9c might be promising indicators for better meat quality.Yehui Duan Changbing Zheng Jie Zheng Lu Ma Xinran Ma Yinzhao Zhong Xichen Zhao Fengna Li Qiuping Guo Yulong Yin 2023Science China(Life Sciences)2023,66,6:2
5A calculation method for the electric field under double-circuit HVDC transmis- sion lines显示文摘YONG Yang LU Jiayu LEI Yinzhao 2008IEEE Transactions on Power Delivery2008,23,4:1
6A calculation method for the hybrid electric field under UHVAC and UHVDC transmission lines in the same corridor显示文摘Yang Yong Lu Jiayu Lei Yinzhao 2010IEEE Transaction on Power Delivery2010,25,2:1
7A calculation method for the electricfield under double-circuit HVDC transmission lines显示文摘Yang Yong Lu Jiayu Lei Yinzhao 2008IEEE Trans on Power Delivery2008,23,4:1
8A calculation method for the hybrid electric field under UHVAC and UHVDC transmission lines in the same corridor显示文摘Yong Yang Jiayu Lu Yinzhao Lei 0,,02:1
9Analytical solutions to eddy current field excited by a probe coil near a conductive pipe显示文摘Mao Xuefei Lei Yinzhao 2013NDT & E International2013,54,:1
10Electrical conductivity measurement of ferromagnetic metallic materials using pulsed eddy current method显示文摘Chen Xingle Lei Yinzhao 2015NDT & E International2015,75,:1
11Thickness measurement of metal pipe using swept-frequency eddy current testing显示文摘Mao Xuefei Lei Yinzhao 2016NDT&E International2016,78,:1
12The late Archaean to early Proterozoic origin and evolution of anaerobic methane-oxidizing archaea显示文摘Impact statement Microorganisms,called anaerobic methane-oxidizing archaea(ANME),can reduce a large amount of greenhouse gas methane and therefore have the potential to cool the Earth.We collected nearly all ANMEs genomes in public databases and performed a comprehensive comparative genomic analysis and molecular dating.Our results show that ANMEs originated in the late Archaean to early Proterozoic eon.During this period of time,our planet Earth was experiencing the Great Oxygenation Event and Huronian Glaciation,a dramatic drop in the Earth's surface temperature.This suggests that the emergence of ANMEs may contribute to the reduction of methane at that time,which is an unappreciated potential cause that led to the Huronian Glaciation.Yinzhao Wang Ruize Xie Jialin Hou Zhenbo Lv Liuyang Li Yaoxun Hu Hungchia Huang Fengping Wang 2022mLife2022,1,1:1
13Morphology and thermal properties of a PC/PE blend with reactive compatibilization显示文摘BoYin YinZhao Min‐minPan Ming‐boYang 2007Polym Adv Technol2007,,6:1
14A calculation method for the electric field under double-circuit HVDC transmission lines显示文摘YANG Yong LU Jiayu LEI Yinzhao 2008Power Delivery2008,23,4:1
15Microstructure and mechanical properties of laser welded lap joints of Ti-6Al-4V alloy显示文摘Zhao Yong Jian Huang YinZhao g 0,,:1
16Analysis of eddy current interaction between a parallel coil and a ferromagnetic pipe with remanence显示文摘Mao Xuefei Lei Yinzhao 2013NDT&E International2013,60,:1
17Identifying the semantic orientation of terms using S-HAL for sentiment analysis显示文摘Tao Xu Qinke Peng Yinzhao Cheng 2012Knowledge-Based Systems2012,,:1
18Electric Potential and Impedance for Three-Layered Spherical Volume Conductor with Spherical Bubble with Four-Electrode System显示文摘XIAO Chunyan LEI Yinzhao 2006Chinese Journal of Electronics2006,15,1:0
19Widespread Bathyarchaeia encode a novel methyltransferase utilizing lignin-derived aromatics显示文摘Lignin degradation is a major process in the global carbon cycle across both terrestrial and marine ecosystems.Bathyarchaeia,which are among the most abundant microorganisms in marine sediment,have been proposed to mediate anaerobic lignin degradation.However,the mechanism of bathyarchaeial lignin degradation remains unclear.Here,we report an enrichment culture of Bathy-archaeia,named Candidatus Baizosediminiarchaeum ligniniphilus DL1YTT001(Ca.B.ligniniphilus),from coastal sediments that can grow with lignin as the sole organic carbon source under mesophilic anoxic conditions.Ca.B.ligniniphilus possesses and highly expresses novel methyltransferase 1(MT1,mtgB)for transferring methoxyl groups from lignin monomers to cob(I)alamin.MtgBs have no homology with known microbial methyltransferases and are present only in bathyarchaeial lineages.Heterologous expression of the mtgB gene confirmed O-demethylation activity.The mtgB genes were identified in metagenomic data sets from a wide range of coastal sediments,and they were highly expressed in coastal sediments from the East China Sea.These findings suggest that Bathyarchaeia,capable of O-demethylation via their novel and specific methyltransferases,are ubiquitous in coastal sediments.Tiantian Yu Haining Hu Xianhong Zeng Yinzhao Wang Donald Pan Longhui Deng Lewen Liang Jialin Hou Fengping Wang 2023mLife2023,2,3:0
20Electric Potential Produced by a Dipole Source at Any Position in a Multi-Layered Anisotropic Spherical Volume Conductor显示文摘XIAO Chunyan LEI Yinzhao 2006Chinese Journal of Electronics2006,15,2:0
返回顶部 每页显示:
共2页 首页 上一页 第1页 下一页 末页 /2 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费