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| 1 | MtPAP1表达特性及异源表达对拟南芥有机态磷吸收的影响显示文摘高磷条件下,MtPAP1主要在叶片中表达;在低磷条件下,MtPAP1在叶片中表达水平较低,在根系中的表达量则较高,超过了其它器官中的表达量。在以植酸盐为唯一磷供源的条件下,与对照相比,超量表达MtPAP1的拟南芥转基因植株中,根系细胞间隙中的酸性磷酸化酶(APase)活性明显提高。HPLC分析表明,液体培养基中的有机态磷可被转基因拟南芥分泌的APase快速降解。在以植酸盐为唯一磷供源条件下,超量表达MtPAP1的拟南芥转基因植株的生物学产量、植株无机磷含量和全磷含量明显高于野生种。 | 肖凯 谷俊涛 Maria Harrison Zeng-Yu Wang | 2006 | 植物生理与分子生物学学报2006,32,1: | 16 |
| 2 | Ectopic Expression of a Phytase Gene from Medicago truncatula Barrel Medic Enhances Phosphorus Absorption in Plants显示文摘在现在的学习,转基因的 Arabidopsis 的磷吸收能力宫外地种从 Medicago truncatula 表示新奇 phytase 基因桶苜蓿被评估。编码 phytase 的一种细胞外的形式的全身的 cDNA 从模型荚 M 被孤立。truncatula。phytase 基因(MtPHY1 ) 有预言编码 543 氨基酸的 1 632 bp 的一个开的读物框架,包括 27 氨基酸的 N 终端信号肽。MtPHY1 基因的 genomic 顺序是 5 151 bp,包含六 introns 打断的七 exons。在生长调节的 high-Pi (2 mmol/L ) 下面, MtPHY1 抄本的高水平比在根在叶和茎积累了。抄本水平在茎被减少并且在根增加了,没有在 low-Pi (10 mol/L ) 下面在叶检测的信号调节的在杂交的明显的变化。妄想的 transgenes 被把 MtPHY1 放在组成的 CaMV35S 倡导者和根特定的 MtPT1 倡导者的控制下面构造。在转基因的 Arabidopsis 的根 apoplast 的 Phytase 活动在控制工厂是那的 12.3-to 16.2 褶层。表示的 phytase 被分泌进根围,由根流出物由 phytate 降级的 HPLC 分析示威了。在 Arabidopsis 的 MtPHY1 的宫外的表示,在器官的磷吸收和工厂生长导致重要改进,显示 MtPHY1 为改进工厂磷吸收和植物救治有大潜力。 | Kai Xiao Jian-Heng Zhang Maria Harrison Zeng-Yu Wang | 2006 | Journal of Integrative Plant Biology2006,48,1: | 6 |
| 3 | Nonalcoholic Steatohepatitis is the Second Leading Etiology of Liver Disease Among Adults Awaiting Liver Transplantation in the U.S.显示文摘 | Robert J. Wong Maria Aguilar Ramsey Cheung Ryan B. Perumpail Stephen A. Harrison Zobair M. Younossi Aijaz Ahmed | 2014 | Gastroenterology2014,,: | 3 |
| 4 | Cloning and Characterization of a Novel Purple Acid Phosphatase Gene (MtPAP1) from Medicago truncatula Barrel Medic显示文摘 | Kai Xiao Maria Harrison Zeng-Yu Wang | 2006 | Journal of Integrative Plant Biology2006,48,2: | 3 |
| 5 | Association of cardiovascular system medications with cognitive function and dementia in older adults living in nursing homes in Australia显示文摘ObjectiveTo 在在检验生活和资源使用的质量的 17 所澳大利亚的疗养院的代表性的研究的 Australia.MethodsAs 部分住在疗养院的更老的成年人与认知功能和痴呆的诊断检验在心血管的系统药使用之间的协会,我们检验了在认知缺陷和心血管的药使用之间的协会(使用解剖治疗学的分类系统识别)用一般线性回归和逻辑 regressio 正在收到生活照顾的结束的人是包括的 excluded.ResultsParticipants 有一个平均数的 541 个居民 85.5 | Enwu Liu Suzanne M Dyer Lisa Kouladjian O'Donnell Rachel Milte Clare Bradley Stephanie L Harrison Emmanuel Gnanamanickam Craig Whitehead Maria Crotty | 2017 | Journal of Geriatric Cardiology2017,14,6: | 2 |
| 6 | Emissions and indoor concentrations of particulate matter and its specific chemical components from cooking: A review显示文摘 | Karimatu L. Abdullahi Juana Maria Delgado-Saborit Roy M. Harrison | 2013 | Atmospheric Environment2013,,: | 1 |
| 7 | SIGNALING IN THE ARBUSCULAR MYCORRHIZAL SYMBIOSIS显示文摘 | Maria J. Harrison | 2005 | Annual Review of Microbiology2005,,: | 1 |
| 8 | 糖尿病视网膜病变和黄斑囊样水肿患者曲安奈德眼内注射前、后玻璃体内血管内皮生长因子和基质衍生因子-1的水平显示文摘背景:能导致糖尿病视网膜病变(DR)视力丧失的弥漫性黄斑囊样水肿(DME)和(或)异常新生血管(NV)可能受生长因子和化学激活剂的调节。化学激活素基质衍生因子-1(SDF-1)是一种血管内皮生长因子(VEGF)表达的有效刺激剂,是NV的重要效应物。并且是与发生DME有关血管通透性的关键诱导物。循环中的内皮前体细胞对SDF-1应答迁徙参与NV。目的:调查不同程度的的DR和DME患者。在眼内注射曲安奈德(triamcinolone acetonide)前后,玻璃体中SDF-1和VEGF之间的关系。用于治疗难治的DME。方法:在这一前瞻性的研究中。包括36例患者并观察了6个月。在紧接着注射曲安奈德前和注射1个月后获得的标本,用酶联免疫吸附试验检测玻璃体中VEGF和SDF-1的水平。结果:增生性DR患者的VEGF和SDF-1与非增生DR患者相比显著高(P〈0.01)。DME患者与非DME患者相比较。SDF-1水平显著增加。VEGF与SDF-1的水平和疾病的严重程度相关(r^2=0.88)。结论:应用曲安奈德出现了激动人心的结果,VEGF和SDF-1降到了几乎检测不出来的水平。消除了DME并使活动性的NV退化。我们的结果支持SDF-1和VEGF在DR有害视力后果的发病机制中的作用,并提示注射曲安奈德后,可能由于抑制了VEGF和SDF-1,使得DME消退和(或)NV开始纤维化的退化。 | H. Logan Brooks Sergio Caballero Charles K. Newell Robert L. Steinmetz Debbie Watson Mark S. Segal Jeffrey K. Harrison Edward W. Scott Maria B. Grant 孙文赏(译) 申敏如(校) | 2005 | 美国医学会眼科杂志(中文版)2005,17,2: | 1 |
| 9 | Role of Extracellular Superoxide Dismutase in Hypertension显示文摘 | Maria Carolina Gongora Zhenyu Qin Karine Laude Ha Won Kim Louise McCann J Rodney Folz Sergey Dikalov Tohru Fukai David G. Harrison | 2006 | Hypertension2006,,3: | 1 |
| 10 | Transgenic expression of phytase and acid phosphatase genes in alfalfa ( Medicago sativa ) leads to improved phosphate uptake in natural soils显示文摘 | Xue-Feng Ma Steven Tudor Twain Butler Yaxin Ge Yajun Xi Joseph Bouton Maria Harrison Zeng-Yu Wang | 2012 | Molecular Breeding2012,,1: | 1 |
| 11 | Oxidative Stress and Hypertension显示文摘 | David G. Harrison Maria Carolina Gongora | 2009 | Medical Clinics of North America2009,,3: | 1 |
| 12 | Microtubule organization in root cells ofMedicago truncatula during development of an arbuscular mycorrhizal symbiosis withGlomus versiforme显示文摘 | Elison B. Blancaflor Liming Zhao Maria J. Harrison | 2001 | Protoplasma2001,,4: | 1 |
| 13 | Relationship of personal exposure to volatile organic compounds to home, work and fixed site outdoor concentrations显示文摘 | Juana Maria Delgado-Saborit Noel J. Aquilina Claire Meddings Stephen Baker Roy M. Harrison | 2010 | Science of the Total Environment2010,,3: | 1 |
| 14 | 糖尿病视网膜病变和黄斑囊样水肿患者曲安奈德眼内注射前后玻璃体内血管内皮生长因子和基质衍生因子-1的水平显示文摘背景:能导致糖尿病视网膜病变(DR)视力丧失的弥漫性黄斑囊样水肿(DME)和(或)异常新生血管(NV)可能受生长因子和化学激活剂的调节。化学激活素基质衍生因子-1(SDF-1)是一种血管内皮生长因子(VEGF)表达的有效刺激剂,是NV的重要效应物,并且是与发生DME有关血管通透性的关键诱导物。循环中的内皮前体细胞对SDF-1应答迁徙参与NV。 | H. Logan Brooks Sergio Caballero Charles K. Newell Robert L. Steinmetz Debbie Watson Mark S. Segal Jeffrey K. Harrison Edward W. Scott Maria B. Grant 孙文赏(译) 申敏如(校) | 2005 | 美国医学会眼科杂志(中文版)2005,17,3: | 0 |
| 15 | 潜力巨大的微技术世界显示文摘20世纪80年代,在集成电路技术的基础上诞生了世界首套微机电和微流体系统。从那时起,微技术领域的发展可谓日新月异。如今,微技术已在环境条件极为复杂的油田领域得到广泛应用。 | Dan E.Angelescu Christopher Harrison Ronald van Hal Joyce Wong Eric Donzier Olivier Vancauwenberghe Anthony R.H.Goodwin Maria Manrique Yu-Chong Tai | 2008 | 国外测井技术2008,23,5: | 0 |
| 16 | Glial kon/NG2 gene network for central nervous system repair显示文摘The glial regenerative response to central nervous system(CNS) injury,although limited,can be harnessed to promote regeneration and repair.Injury provokes the proliferation of ensheathing glial cells,which can differentiate to remyelinate axons,and partially restore function.This response is evolutionarily conserved,strongly implying an underlying genetic mechanism.In mammals,it is elicited by NG2 glia,but most often newly generated cells fail to differentiate.Thus an important goal had been to find out how to promote glial differentiation following the proliferative response.A gene network involving Notch and prospero(pros) controls the balance between glial proliferation and differentiation in flies and mice,and promotes CNS repair at least in fruit-flies.A key missing link had been how to relate the function of NG2 to this gene network.Recent findings by Losada-Perez et al.,published in JCB,demonstrated that the Drosophila NG2 homologue kon-tiki(kon) is functionally linked to Notch and pros in glia.By engaging in two feedback loops with Notch and Pros,in response to injury,Kon can regulate both glial cell number and glial shape homeostasis,essential for repair.Drosophila offers powerful genetics to unravel the control of stem and progenitor cells for regeneration and repair. | Maria Losada-Perez Neale Harrison Alicia Hidalgo | 2017 | Neural Regeneration Research2017,12,1: | 0 |