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29篇 您的检索式:作者名="Brutnell"
    题名 作者 年代 出处 被引量
1A Versatile Phenotyping System and Analytics Platform Reveals Diverse Temporal Responses to Water Availability in Setaria显示文摘Phenotyping 在使用大规模 genomic 数据理解并且改善农业庄稼成为了限制率的步。这里,为控制环境植物生长的系铃羊 Phenotyping 站台和 automatedmultimodal phenotyping 被描述。系统为 1140 植物有能力,它每天通过车站过去记录荧光,在红外线附近、可见的图象。植物计算机视觉(PlantCV ) 作为公开源码被开发,硬件为量的图象分析的与平台无关的软件。在一个 4 星期的实验,野 Setaria viridisand 驯养了 Setaria italica 有根本上不同的时间的回答浇可获得性。当两根线在有限的水条件下面生产了生物资源的类似的层次时, Setaria viridis 在水下面维持了一样的水使用效率饱满条件,当 Setaria italica 变了到不太有效的生长时。总的来说,系铃羊 Phenotyping 平台和 PlantCV 软件在高度,生物资源,水使用效率,颜色,植物建筑学,和织物水上检测了 genotypeand 环境的重要效果地位特点。在实验的功课期间获得的所有 ∼79000 图象是公开可得到的。Noah Fahlgren Maximilian Feldman Malia A. Gehan Melinda S. Wilson Christine Shyu Douglas W. Bryant Steven T. Hill Colton J. McEntee ankalpi N. Warnasooriya Indrajit Kumar Tracy Ficor Stephanie Turnipseed Kerrigan B. Gilbert Thomas P. Brutnell James C. Carrington Todd C. Mockler Ivan Baxter 2015Molecular Plant2015,8,10:4
2Maize high chlorophyll fluorescent 60 mutantion is caused by an Ac disruption of the gene encoding the chloroplast ribosomal small subunit protein 17显示文摘Schultes P Sawers R J H Brutnell T P Krueger R W 2000Plant J2000,21,4:1
3Maize high chlorophyll fluorescent 60 mutation is caused by an Ac disruption of the gene encoding the chloroplast ribosomal small subunit protein 17显示文摘Schuctes N P Sawers R J H Brutnell T P 2000The Plant Journal2000,21,4:1
4Identification of the Pr1 gene product completes anthocyanin biosynthesis pathway of maize显示文摘Sharma M Cortes-Cruz M Ahern K R McMullen M Brutnell T P Chopra S 2011Genetics2011,188,1:1
5Reference genome sequence of the model plant Setaria显示文摘Jeffrey L Bennetzen Jeremy Schmutz Hao Wang RyanPercifield Jennifer Hawkins Ana C Pontaroli Matt Estep Liang Feng Justin N Vaughn Jane Grimwood JerryJenkins Kerrie Barry Erika Lindquist Uffe Hellsten Shweta Deshpande Xuewen Wang Xiaomei Wu ThereseMitros Jimmy Triplett Xiaohan Yang Chu-Yu Ye Margarita Mauro-Her-rera Lin Wang Pinghua Li ManojSharma Rita Sharma Pamela C Ronald Olivier Panaud Elizabeth A Kellogg Thomas P Brutnell Andrew NDoust Gerald A Tuskan Daniel Rokhsar Katrien MDevos 2012Nature Biotechnology2012,,30:1
6Maize high chlorophyll fluorescent 60 mutation is caused by an Ac disruption of the gene encoding the chloroplast ribosomal small subunit protein 17 显示文摘SCHULTES N P SAWERS R J H BRUTNELL T P 2000Plant Journal2000,21,4:1
7Setaria viridis and Setaria italica, mod- el genetic systems for the Panicoid grasses 显示文摘Li P Brutnell T P 2011Journal of Experimental Botany2011,62,9:1
8Structure and expression of maize phytochrome family homeologs 显示文摘Sheehan MJ Farmer PR Brutnell TP 2004Genetics2004,167,88:1
9Transposon tagging in maize显示文摘BRUTNELL T P 0,,:1
10Structure and Expression of Maize Phytochrome Family Homeologs 显示文摘Sheehan M J Farmer P R Brutnell T P 2004Genetics2004,167,:1
11Setaria viridis and Setaria italica, model genetic systems for the Panicoid grasses 显示文摘Li P Brutnell T P 2011J Exp Bot2011,62,9:1
12Structure and expression of maize phytochrome family homeologs 显示文摘Sheehan MJ Farmer PR Brutnell TP 2004Genetics2004,167,88:1
13Transposon tagging in maize显示文摘Brutnell T.P 0,,1:1
14The activator/dissociation transposable elements comprise a two-component gene regulatory switch that controls endogenous gene expression in maize显示文摘BAI L BRUTNELL T P 0,,:1
15The molecular analysis of the shade avoidance syndrome in the grasses has begun显示文摘Kebrom T H Brutnell T P 2007Journal of experimental botany2007,58,12:1
16Transposon tagging in maize显示文摘Brutnell T P 2002Funct Integr Genomics2002,2,:1
17Reference genome sequence of the model plant Setaria显示文摘Bennetzen J L Schmutz J Wang H Percifield R Hawkins J Pontaroli A C Estep M Feng L Vaughn J N Grimwood J Jenkins J Barry K Lindquist E Hellsten U Deshpande S Wang X Wu X Mitros T Triplett J Yang X Ye C Y Mauro-Herrera M Wang L Li P Sharma M Sharma R Ronald P C Panaud O Kellogg E A Brutnell T P Doust A N Tuskan G A Rokhsar D and Devos K M 2012Nature Biotechnology2012,30,6:1
18Identification of the Pr1 gene product completes the anthocyanin biosynthesis pathway of maize显示文摘Sharma M Cortes-Cruz M Ahern KR McMullen M Brutnell TP Chopra S 0,,:1
19Suppression of sorghum axillary bud outgrowth by shade, phyB and defoliation signalling pathways显示文摘Kebrom T H Brutnell T P Finlayson S A 2010Plant Cell Environ2010,,:1
20Regulatory mechanisms underlying C4 photosynthesis显示文摘Wang L Peterson R B Brutnell T P 2011New Phytologist2011,190,1:1
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