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| 1 | Root-Specific Transcript Profiling of Contrasting Rice Genotypes in Response to Salinity Stress显示文摘提高的咸度强加渗透并且离子毒性在生活上强调房间并且要求大量的回答以便启用植物幸存。在在米饭( Oryza sativa )介绍抄本层次的更早的工作上造 FL478 射击,盐容忍的 indica recombinant 生来的线,和 IR29 ,盐敏感的栽培变种,抄本层次在这二就职的根以及在二另外的盐容忍的 indica 遗传型的根被比较, landrace Pokkali 和 recombinant 生来的线 IR63731 。这研究的目的是比较抄本在敏感并且容忍的线以便多半识别基因涉及工厂咸度忍耐,而非响应咸度本身。有到咸度忍耐的已知的连接的几个基因家庭的抄本侧面被描述(例如 HKT, NHX ) 。通过他们的盐应答,抄本层次,或 chromosomal 地点识别的一套基因的通常认为的功能(即在为咸度忍耐的 QTL 下面) 也被讨论。最后,在 FL478 的 Saltol 区域的父母起源进一步被调查。总的来说,介绍的数据集看起来柔韧,这个系统能为涉及咸度忍耐的新奇基因的发现提供可靠策略,似乎可能。 | Olivier Cotsaftis Darren Plett Alexander A.T. Johnson Harkamal Walia Clyde Wilson Abdelbagi M. Ismail Timothy J. Close Mark Tester Ute Baumann | 2011 | Molecular Plant2011,4,1: | 14 |
| 2 | Characterization of Ion Contents and Metabolic Responses to Salt Stress of Different Arabidopsis AtHKT1;1 Genotypes and Their Parental Strains显示文摘植物采用几策略在咸度应力下面维持细胞的离子动态平衡,包括由 transmembrane 运输蛋白质的调停的离子流动并且调整由积累 osmolytes 的渗透的压力。HKT (高亲密关系的钾 transporter ) 基因家庭在多样的植物种类包括 Na+ 和 Na+/K+ transporters,与 HKT1;在 Arabidopsis thaliana 的 1 个同样唯一的成员。AtHKT1 的 Cell-type-specific overexpression; 1 被显示了在咸度应力下面阻止射击 Na+ overaccumulation。这里,我们在不同 AtHKT1 的射击和根分析了大量代谢物和元素;在咸度应力前后的 1 遗传型和他们的父母紧张,揭示 AtHKT1 之间的代谢物差别的一种相互的关系; 1 根猛烈的线( hkt1 ; 1 )并且 AtHKT1 ; 1 根 overexpressing 线( E2586 UAS GAL4 : HKT1 ; 1 并且 J2731 *UAS GAL4 : HKT1 ; 1 )。尽管根糖的层次在两 AtHKT1 在盐应力以后被增加; 1 overexpressing 排队, E2586 UAS GAL4 : HKT1 ; osmoprotectants trehalose , gentiobiose ,和 melibiose 的 1 显示出的更高的累积,而 J2731 *UAS GAL4 : HKT1 ;蔗糖和棉白糖的 1 显示出的高水平,与他们的父母线相比,分别地。相反,猛烈的线 hkt1; tricarboxylic 酸(TCA ) 的层次的 1 显示出的猛烈增加骑车在在盐处理以后的射击的中介。这与糖的重要弄空与一致,建议有进以从周期的 C 流出的经常的率的 TCA 周期的碳流入的增加的率,它可能被需要在盐应力期间支持植物幸存。用关联分析,我们识别了在 Na+ 内容和几糖之间的协会,建议糖新陈代谢的那条规定在对咸度应力的植物回答是重要的。 | Camilla B. Hill Deepa Jha Antony Bacic Mark Tester Ute Roessner | 2013 | Molecular Plant2013,6,2: | 8 |
| 3 | Mechanisms of Salinity Tolerance显示文摘 | Rana Munns Mark Tester | 2008 | Annual Review of Plant Biology2008,,: | 4 |
| 4 | Transition from a maternal to external nitrogen source in maize seedlings显示文摘Maximizing NO_3^- uptake during seedling development is important as it has a major influence on plant growth and yield.However,little is known about the processes leading to,and involved in,the initiation of root NO_3^- uptake capacity in developing seedlings.This study examines the physiological processes involved in root NO_3^- uptake and metabolism,to gain an understanding of how the NO_3^- uptake system responds to meet demand as maize seedlings transition from seed N use to external N capture.The concentrations of seedderived free amino acids within root and shoot tissues are initially high,but decrease rapidly until stabilizing eight days after imbibition(DAI).Similarly,shoot N% decreases,but does not stabilize until 12–13 DAI.Following the decrease in free amino acid concentrations,root NO_3^- uptake capacity increases until shoot N%stabilizes.The increase in root NO_3^- uptake capacity corresponds with a rapid rise in transcript levels of putative NO_3^- transporters,Zm NRT2.1 and Zm NRT2.2.The processes underlying the increase in root NO_3^- uptake capacity to meet N demand provide an insight into the processes controlling N uptake. | Kasra Sabermanesh Luke R. Holtham Jessey George Ute Roessner Berin A. Boughton Sigrid Heuer Mark Tester Darren C. Plett Trevor P. Garnett | 2017 | Journal of Integrative Plant Biology2017,59,4: | 2 |
| 5 | Global distribution of ciguatera causing dinoflagellates in the genus Gambierdiscus显示文摘 | R. Wayne Litaker Mark W. Vandersea Maria A. Faust Steven R. Kibler Amy W. Nau William C. Holland Mireille Chinain Michael J. Holmes Patricia A. Tester | 2010 | Toxicon2010,,5: | 1 |
| 6 | Breeding technologies to increase crop production in a changing world显示文摘 | Tester Mark Langridge Peter | 2010 | Science2010,327,: | 1 |
| 7 | Quantifying the three main components of salinity tolerance in cereals 显示文摘 | Karthika Rajendran Mark Tester Stuart J Roy | 2009 | Plant Cell and Environment2009,32,: | 1 |
| 8 | NONSELECTIVE CATION CHANNELS IN PLANTS显示文摘 | Vadim Demidchik Romola Jane Davenport Mark Tester | 2002 | Annual Review of Plant Biology2002,,: | 1 |
| 9 | Root Physiology. Partitioning of nutrient transport processes in roots显示文摘 | Mark Tester | 2001 | Journal of Experimental Botany2001,,: | 1 |
| 10 | The response of the maize nitrate transport system to nitrogen demand and supply across the lifecycle显示文摘 | Trevor Garnett Vanessa Conn Darren Plett Simon Conn Juergen Zanghellini Nenah Mackenzie Akiko Enju Karen Francis Luke Holtham Ute Roessner Berin Boughton Antony Bacic Neil Shirley Antoni Rafalski Kanwarpal Dhugga Mark Tester Brent N. Kaiser | 2013 | New Phytol2013,,1: | 1 |
| 11 | Phenomics – technologies to relieve the phenotyping bottleneck显示文摘 | Robert T. Furbank Mark Tester | 2011 | Trends in Plant Science2011,,12: | 1 |
| 12 | Mechanisms of Salinity Tolerance显示文摘 | Rana Munns Mark Tester | 2008 | Annual Review of Plant Biology2008,,: | 1 |
| 13 | Na^+ Tolerance and Na^+ Transport in Higher Plaints显示文摘 | Tester Mark Dawenport Romola | 2003 | Annals of Botany2003,91,: | 1 |
| 14 | Na+ tolerance and Na+ transport in higher plants显示文摘 | Mark tester Romola davenport | 2003 | Annals of Botany2003,91,: | 1 |
| 15 | Identification of novel quantitative trait loci for days to ear emergence and flag leaf glaucousness in a bread wheat ( Triticum aestivum L.) population adapted to southern Australian conditions显示文摘 | Dion Bennett Ali Izanloo James Edwards Haydn Kuchel Ken Chalmers Mark Tester Matthew Reynolds Thorsten Schnurbusch Peter Langridge | 2012 | Theoretical and Applied Genetics2012,,4: | 1 |
| 16 | Mobilizing Crop Biodiversity显示文摘Over the past 70 years,the world has witnessed extraordinary growth in crop productivity,enabled by a suite of technological advances,including higher yielding crop varieties,improved farm management,synthetic agrochemicals,and agricultural mechanization.While this'Green Revolution'intensified crop production,and is credited with reducing famine and malnutrition,its benefits were accompanied by several undesirable collateral effects(Pingali,2012).These include a narrowing of agricultural biodiversity,stemming from increased monoculture and greater reliance on a smaller number of crops and crop varieties for the majority of our calories.This reduction in diversity has created vulnerabilities to pest and disease epidemics,climate variation,and ultimately to human health(Harlan,1972). | Susan McCouch Zahra Katy Navabi Michael Abberton Noelle L.Anglin Rosa Lia Barbieri Michael Baum Kirstin Bett Helen Booker Gerald L.Brown Glenn J.Bryan Luigi Cattivelli David Charest Kellye Eversole Marcelo Freitas Kioumars Ghamkhar Dario Grattipaglia Robert Henry Maria Cleria Valadares Inglis Tofazzal Islam Zakaria Kehel Paul J.Kersey Graham J.King Stephen Kresovich Emily Marden Sean Mayes Marie Noelle Ndjiondjiop Henry T.Nguyen Samuel Rezende Paiva Roberto Papa Peter W.B.Phillips Awais Rasheed Christopher Richards Mathieu Flouard Maria Jose Amstalden Sampaio Uwe Scholz Paul D.Shaw Brad Sherman S.Evan Staton Nils Stein Jan Svensson Mark Tester Jose Francisco Montenegro Valls Rajeev Varshney Stephen Visscher Eric von Wettberg Robbie Waugh Peter Wenzl Loren H.Rieseberg | 2020 | Molecular Plant2020,13,10: | 0 |