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13篇 您的检索式:作者名="Beate I"
    题名 作者 年代 出处 被引量
1Evaluation of contaminant removal of reverse osmosis and advanced oxidation in full-scale operation by combi- ning passive sampling with chemical analysis and bioana- lytical tools 显示文摘Beate I Escher Michael Lawrence Miroslava Macova 2011Environ Sci Teehnol2011,45,12:1
2Effect of HLA in- compatibility on graft - versus - host disease, relapse, and surviv- al after marrow transplantation for patients with leukemia or lym- phoma显示文摘ANASETTI C BEAT'I'Y P G STORB R 1990HumImmunol1990,29,2:1
3The challenge of micropollutants in aquatic system 显示文摘Rene P Schwarzenbach Beate I 2006Science2006,313,:1
4Fluorescence imaging application: Effects of leaf age on seagrass photokinetics 显示文摘Beate I E 2006Aquatic Botany2006,81,:1
5Experi- mental verification of the fracture density and shear-wave splitting relationship using synthetic silica cemented sand- stones with a controlled fracture geometry 显示文摘TILLOTSON P SOTHCOT1 J BEAT A I 2012Geophysical prospecting2012,60,3:1
6Rapid exposure assessment of PSII herbicides in surface water using a novel chlorophyll a fluorescence imaging assay显示文摘Renee M Ulrich S Beate I E 2008Science of the Total Environment2008,401,:1
7Rapid exposureassessment of PSII herbicides in surface water using a novel chlorophyll a fluorescence imaging assay 显示文摘Renee M Ulrich S Beate I E 2008Science of the Total Environ ment2008,401,:1
8Actin, microtubules and focal adhesion dynamics during cell migration 显示文摘Bernhard W H Beat A I 2003Int ] Biochem Cell Biol2003,359,1:1
9Aetin, microtubules and focal ad- hesiondynamics during cell migration 显示文摘Bernhard W H Beat A I 2003Int J Biochem Cell Biol2003,359,1:1
10Rapid exposure assessment of PSII herbicides in surface water using a novel chlo- rophyll a fluorescence imaging assay显示文摘Renee Muller Ulrich Schreiber Beate I Escher 2008Science of the Total Environment2008,401,:1
11Similar metabolic responses to standardized total parenteral nutrition of septic and nonseptic critically ill patients显示文摘Christian Zauner Beate I Schuster Bruno Schneeweias 2001Am J Clin Nutr2001,74,2:1
12Toughening of basalt fiber reinforced composites with a CBT matrix by a non-isothermal production 显示文摘Beats J Devaux J Verpoest I 2010Advances in Polymer Technology2010,29,2:1
13The apple REFPOP—a reference population for genomics-assisted breeding in apple显示文摘Breeding of apple is a long-term and costly process due to the time and space requirements for screening selection candidates.Genomics-assisted breeding utilizes genomic and phenotypic information to increase the selection efficiency in breeding programs,and measurements of phenotypes in different environments can facilitate the application of the approach under various climatic conditions.Here we present an apple reference population:the apple REFPOP,a large collection formed of 534 genotypes planted in six European countries,as a unique tool to accelerate apple breeding.The population consisted of 269 accessions and 265 progeny from 27 parental combinations,representing the diversity in cultivated apple and current European breeding material,respectively.A high-density genome-wide dataset of 303,239 SNPs was produced as a combined output of two SNP arrays of different densities using marker imputation with an imputation accuracy of 0.95.Based on the genotypic data,linkage disequilibrium was low and population structure was weak.Two well-studied phenological traits of horticultural importance were measured.We found marker–trait associations in several previously identified genomic regions and maximum predictive abilities of 0.57 and 0.75 for floral emergence and harvest date,respectively.With decreasing SNP density,the detection of significant marker–trait associations varied depending on trait architecture.Regardless of the trait,10,000 SNPs sufficed to maximize genomic prediction ability.We confirm the suitability of the apple REFPOP design for genomics-assisted breeding,especially for breeding programs using related germplasm,and emphasize the advantages of a coordinated and multinational effort for customizing apple breeding methods in the genomics era.Michaela Jung Morgane Roth Maria JoséAranzana Annemarie Auwerkerken Marco Bink Caroline Denancé Christian Dujak Charles-Eric Durel Carolina Font i Forcada Celia M.Cantin Walter Guerra Nicholas P.Howard Beat Keller Mariusz Lewandowski Matthew Ordidge Marijn Rymenants Nadia Sanin Bruno Studer Edward Zurawicz François Laurens Andrea Patocchi Hélène Muranty 2020Horticulture Research2020,7,1:0
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