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32篇 您的检索式:作者名="MENDA N"
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1Exploiting the diversity of tomato:the development of a phenotypically and genetically detailed germplasm collection显示文摘A collection of 163 accessions,including Solanum pimpinellifolium,Solanum lycopersicum var.cerasiforme and Solanum lycopersicum var.lycopersicum,was selected to represent the genetic and morphological variability of tomato at its centers of origin and domestication:Andean regions of Peru and Ecuador and Mesoamerica.The collection is enriched with S.lycopersicum var.cerasiforme from the Amazonian region that has not been analyzed previously nor used extensively.The collection has been morphologically characterized showing diversity for fruit,flower and vegetative traits.Their genomes were sequenced in the Varitome project and are publicly available(solgenomics.net/projects/varitome).The identified SNPs have been annotated with respect to their impact and a total number of 37,974 out of 19,364,146 SNPs have been described as high impact by the SnpEeff analysis.GWAS has shown associations for different traits,demonstrating the potential of this collection for this kind of analysis.We have not only identified known QTLs and genes,but also new regions associated with traits such as fruit color,number of flowers per inflorescence or inflorescence architecture.To speed up and facilitate the use of this information,F2 populations were constructed by crossing the whole collection with three different parents.This F2 collection is useful for testing SNPs identified by GWAs,selection sweeps or any other candidate gene.All data is available on Solanaceae Genomics Network and the accession and F2 seeds are freely available at COMAV and at TGRC genebanks.All these resources together make this collection a good candidate for genetic studies.Estefanía Mata-Nicolás Javier Montero-Pau Esther Gimeno-Paez Víctor Garcia-Carpintero Peio Ziarsolo Naama Menda Lukas A.Mueller JoséBlanca Joaquín Cañizares Esther van der Knaap María JoséDíez 2020Horticulture Research2020,7,1:2
2In silico screening of a saturated mutation library of tomato 显示文摘Menda N Semel Y Peled D 2004Plant Journal2004,38,:1
3Abscisic acid deficiency in the tomato mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content显示文摘GALPAZ N WANG Q MENDA N 2007The Plant Journal2007,53,5:1
4Rose scent: genomics approach to discovering novel floral fragrance-related genes显示文摘GUTERMAN I SHALIT M MENDA N 2002Plant Cell2002,14,10:1
5Mu- tations in the seed region of human miR - 96 are responsible for nonsyndromic progressive hearing loss 显示文摘MENdA A MODAMIO - HI3YBJDR S REDSHAW N 2009Nat Genet2009,41,5:1
6Regulation Of LANCEOLATE by MIR319 is required for compound-leaf development in tomato 显示文摘Ori N Cohen A R Etzioni A Brand A Yanai O Shleizer S Menda N Amsellem Z Efroni L Pekker L 2007Nature Genetics2007,39,:1
7In silico screening of a saturated mutation library of tomato显示文摘Menda N Semel Y Peled D 2004The Plant Journal2004,38,5:1
8In silico screening of a saturated mutation library of tomato显示文摘MENDA N SEMEL Y PELED D 2004The Plant Journal2004,38,5:1
9Abscisic acid deficiency in the tomato mutant highpigment 3 leading to increased plastid number and higher fruit lycopene content显示文摘Galpaz N Wang Q Menda N Zamir D Hirschberg J 0,,:1
10Rose scent ge- nomics approach to discovering novel floral fragrance- related genes显示文摘Guterman I Shalit M Menda N 2002The Plant Cell2002,14,10:1
11Urinary metabolites as biomarkers of human exposure to atrazine: atrazine mercapturate in agricultural workers显示文摘Mendas G Vuletic M Galic N 2012Toxicology Letters2012,210,2:1
12Minimization Methods for Emissions Generated from Sinter Strands: A Review 显示文摘Menda N Tayibi H Carcedo F G 2006Journal of Cleaner Production2006,14,:1
13In silico screening of a saturated mutation library of tomato显示文摘Menda N Scmel Y Peled D 2004The Plant Journal2004,38,5:1
14Flower proteome: changes in protein spectrum during the advanced stages of rose petal development显示文摘Dafny-Yelin M Guterman I Menda N Ovadis M Shalit M Pichersky E Zamir D Lewinsohn E Adam Z Weiss D 2005Planta2005,222,1:1
15Abscisic acid deficiency in the tomato mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content 显示文摘GALPAZ N WANG Q MENDA N 2008Plant J2008,53,:1
16Abscisic acid deficiency in the tomato mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content显示文摘Galpaz N Wang Q Menda N Zamir D Hirschberg J 2008Plant Journal2008,53,:1
17Rose scent genomics approach to discovering novel floral fragrance-related genes显示文摘Guterman I Shalit M Menda N 2002The Plant Cell Online2002,14,10:1
18Abscisic acid deficiency in the tomato mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content显示文摘GALPAZ N WANG Q MENDA N 2008Plant Journal2008,53,:1
19Abscisic acid deficiency in the toma- to mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content显示文摘Galpaz N Wang Q Menda N 2008The Plant Journal2008,53,5:1
20L Abscisic acid deficiency in the tomato mutant high-pigment 3 leading to increased plastid number and higher fruit lycopene content 显示文摘Galpaz N Wang Q Menda N Zamir D Hirschberg 2008The Plant Journal2008,53,5:1
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