维普中文期刊产品整合服务
22篇 您的检索式:作者名="MIAOY"
    题名 作者 年代 出处 被引量
1Salicylic acid binds NPR3 and NPR4 to regulate NPRl-dependent defense responses显示文摘Magali Moreau Miaoying Tian Daniel F Klessig 2012Cell Research2012,22,12:10
2Four recombinant pluripotency transcriptional factors containing a protein transduction domain maintained the in vitro pluripotency of chicken embryonic stem cells显示文摘Long-term in vitro maintenance of embryonic stem cell (ESC) pluripotency enables the pluripotency and differentiation of ESCs in animals to be investigated. The ability to successfully maintain and differentiate chicken embryonic stem cells (cESCs) would provide a useful tool for avian biology research and would be a resource directly applicable to agricultural production. In this study, endogenous chicken pluripotency transcription factors, POUV, Sox-2, Nanog and Lin28 were cloned and expressed as recombinant proteins containing a nine consecutive arginine protein transduction domain (PTD). cESCs were cultured with these recombinant proteins to maintain cESC pluripotency in vitro. Cultured cESCs exhibited typical characteristics of pluripotency, even after six generations of rapid doubling, including positive staining for stage-specific embryonic antigen I, and strong staining for alkaline phosphatase. Expression levels of the pluripotency markers, POUV, Nanog, C-Myc, Sox-2 and Lin28 were the same as in uncultured stage X blastoderm cells, and most significantly, the formation of embryoid bodies (EBs) by 6th generation cESCs confirmed the ability of these cultured cESCs to differentiate into cells of all three embryonic germ layers. Thus, transcription factors could be translocated through the cell membrane into the intracellular space of cESCs by using a PTD of nine consecutive arginines and the pluripotency of cESCs could be maintained in vitro for at least six generations.YU MiaoYing LIAN Song HAN HongBing YU Kun LI GuiGuan LIAN ZhengXing LI Ning 2013Science China(Life Sciences)2013,56,1:2
3miR-27a regulates the self renewal ofthe H446 small cell lung cancer cell line in vitro显示文摘MiaoY Li J Qiu X 2013Oncol Rep2013,29,1:1
4Mechanochemical effects ofmicronization on enzymatic hydrolysis ofcomflour显示文摘WuQ MiaoY 2008Carbohydrate polymers2008,72,3:1
5Ghrelin protects cortical neuron against focal ischemia/reperfusion in rats显示文摘MiaoY Xia Q Hou Z 2007Biochem Biophys Res Commun2007,359,3:1
6A study of association between genetic markers in candidate genes and reproduction traits in one generation of a commercial broiler breeder hen population显示文摘Dunn I C MiaoY W Morris A 2004Heredity2004,92,:1
7Urinary pharmacokinetics of baicalein, wogonin and their glycosides after oral administration of Scutellariae Radix in humans 显示文摘Lai Miaoying Hsiu Sulan Chen Chungchuan 2003Biol Pharm Bull2003,26,1:1
8Wavelet neural network for function learning显示文摘Zhang J Walter G G MiaoY B etal 1995IEEE Transaction On Signal Processing1995,43,6:1
9Alowcomplexityclusterlocalizationnethodforwirelesssensornetwork显示文摘MiaOY CuiL 2009ChineseHighTechnologyLetters2009,19,4:1
10Ex vivo experiment on radiofrequency liver ablation with saline infusion through a screw-tip cannulated electrode显示文摘MiaoY Ni Y Mulier S 1997J Surg Res1997,71,1:1
11A study of association between genetic markers in candidate genes and reproduction traits inone generation of a commercial broiler breeder hen population显示文摘Durra I C MiaoY W Morris A 2004Heredity2004,92,:1
12Differential expression of microRNA species in human gastric cancer versus non-tumorous tissues显示文摘GuoJ MiaoY XiaoB etal 2009J Gastroenterol Hepatol2009,24,:1
13Sex and Race (Black-White) Differences in the Relationship of Childhood Risk Factors to Adulthood Arterial Stiffness: The Bogalusa Heart Study显示文摘Shengxu Li Wei Chen Miaoying Yun Camilo Fernandez Marie Krousel-Wood Larry Webber Sathanur R. Srinivasan Gerald S. Berenson 2014The American Journal of the Medical Sciences2014,,2:1
14Study and application of grey entropy weight decision making in risk management显示文摘Kong D Y Liu L Miaoi R 2008Data Science Journal2008,7,4:1
15TreatmentofVX2livertumorinrabbitswith“wet” electrodemediatedradio-frequencyablation显示文摘MiaoY NiY MulierS etal 2000EurRadiol2000,10,1:1
16Sulfonylurea in the treatment of neonatal diabetes mellitus children with heterogeneous genetic backgrounds显示文摘Miaoying Zhang Xiuli Chen Shuixian Shen Tang Li Linqi Chen Min Hu Lingfeng Cao Ruoqian Cheng Zhuhui Zhao Feihong Luo 2015Journal of Pediatric Endocrinology and Metabolism . 2015 (7-8)2015,,7:1
17miR-27a regulates the self renewal ofthe H446 small cell lung cancer cell line in vitro显示文摘MiaoY Li J Qiu X 2013Oncol Rep2013,29,1:1
18The draft genome of sweet or-ange(Citrus sinensis)显示文摘XU Q CHEN L L RUAN X CHEN D ZHU A CHEN C BERTRAND D JIAO WB HAO BH LYON M P CHEN J GAOS XING F LAN H CHANG J W GE X LEI Y HU Q MIAOY WANG L XIAO S BISWAS MK ZENG W GUO F CAO H YANG X XUX W CHENG YJ XU J LIU JH LUO OJ TANGZ GUO W W KUANG H ZHANG H Y ROOSE M L NA-GARAJAN N DENG X X RUAN Y 2013Nat Genet2013,45,1:1
19Adsorption ofcobalt ( II ) ions from aqueous solutions by palygorskite显示文摘He Miaoying Zhu Yi Yang Yang 2011Applied Clay Science2011,54,34:1
20Nitrogen source and fate of typical orchard with gentle slope in semi-arid areas显示文摘Excessive nitrogen (N) exports caused by human activities are one of the main reasons for the numerous environmental problems in agricultural production. Orchards, as an essential part of agricultural production, play a crucial role in rural economic development and ecological environment construction. Understanding the migration pathways of N in orchards is significant for the scientific management of orchards and the reduction of environmental pollution. In this research, the source and fate of N in a typical orchard in Beijing were quantitatively analyzed. N management strategies were proposed in combination with agricultural production habits. The total N input into the orchard was 487.19 kg/hm^(2)·a, of which 85.44%, 10.99%, 3.30% and 0.27% of N input were from fertilizer application, atmospheric deposition, biological N fixation and pesticide, respectively. A large amount of N fertilizer application was the primary source of N input in the orchard. For the N fate, the N surplus in the soil could reach up to 68.40% of total N inputs, and only 20.16% were absorbed and utilized by plants. The amount of N losses through ammonia volatilization, runoff and sediment, nitrification and denitrification accounted for 10.68%, 0.39% and 0.37%, respectively. N input in the orchard mainly remained in soil, while N loss was mainly through ammonia volatilization. There were 176.72, 99.00, and 57.52 kg/hm^(2)·a N surplus in 0-40 cm, 40-80 cm, and over 80 cm soil layers, respectively. To deal with the N accumulation on the soil surface and the migration of N from the soil surface to the deep layer of orchards, reducing N fertilizer application, substituting circular furrow for the whole orchard fertilization, adjusting irrigation schedule by reducing the amount of single irrigation, increasing the frequency of irrigation to three times in the normal year, and adopting efficient water-saving irrigation technology are realizable methods.Miaoying An Ying Xie Yuguo Han Jinxing Zhou Hulin Guo Zhixu Qu 2023International Journal of Agricultural and Biological Engineering2023,16,6:0
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