维普中文期刊产品整合服务
85篇 您的检索式:作者名="Tuberosa"
    题名 作者 年代 出处 被引量
1Resequencing of 145 Landmark Cultivars Reveals Asymmetric Sub-genome Selection and Strong Founder Genotype Effects on Wheat Breeding in China显示文摘Controlled pedigrees and the multi-decade timescale of national crop plant breeding programs offer a unique experimental context for examining how selection affects plant genomes.More than 3000 wheat cultivars have been registered,released,and documented since 1949 in China.In this study,a set of 145 elite cultivars selected from historical points of wheat breeding in China were re-sequenced.A total of 43.75 Tb of sequence data were generated with an average read depth of 17.94x for each cultivar,and more than 60.92 million SNPs and 2.54 million InDels were captured,based on the Chinese Spring RefSeq genome v1.0.Seventy years of breeder-driven selection led to dramatic changes in grain yield and related phenotypes,with distinct genomic regions and phenotypes tar-geted by different breeders across the decades.There are very clear instances illustrating how introduced Italian and otherforeign germplasm was integrated into Chinese wheat programs and reshaped the genomic landscape of local modern cultivars.Importantly,the resequencing data also highlighted significant asymmetric breeding selec-tion among the three sub-genomes:this was evident in both the collinear blocks for homeologous chromosomes and among sets of three homeologous genes.Accumulation of more newly assembled genes in newer cultivars implied the potential value of these genes in breeding.Conserved and extended sharing of linkage disequilibrium(LD)blocks was highlighted among pedigree-related cultivars,in which fewer haplotype differences were detected.Fixation or replacement of haplotypes from founder genotypes after generations of breeding was related to their breeding value.Based on the haplotype frequency changes in LD blocks of pedigree-related cultivars,we propose a strategy for evaluating the breeding value of any given line on the basis of the accumulation(pyramiding)of bene-ficial haplotypes.Collectively,our study demonstrates the influence of 'founder genotypes' on the output of breeding efforts over many decades and also suggests that founder genotype perspectives are in fact more dy-namic when applied in the context of modern genomics-informed breeding.Chenyang Hao Chengzhi Jiao Jian Hou Tian Li Hongxia Liu Yuquan Wang Jun Zheng Hong Liu Zhihong Bi Fengfeng Xu Jing Zhao Lin Ma Yamei Wang Uzma Majeed Xu Liu Rudi Appels Marco Maccaferri Roberto Tuberosa Hongfeng Lu Xueyong Zhang 2020Molecular Plant2020,13,12:9
2Genome-wide association mapping for grain shape and color traits in Ethiopian durum wheat(Triticum turgidum ssp.durum)显示文摘Grain shape and color strongly influence yield and quality of durumwheat.Identifying QTL for these traits is essential for transferring favorable alleles based on selection strategies and breeding objectives.In the present study,192 Ethiopian durum wheat accessions comprising 167 landraces and 25 cultivars were genotyped with a high-density Illumina iSelect 90K singlenucleotide polymorphism(SNP)wheat array to conduct a genome-wide association analysis for grain width(GW),grain length(GL),CIE(Commission Internationale l'Eclairage)L*(brightness),CIE a*(redness),and CIE b*(yellowness)traits.The accessions were planted at Sinana Agricultural Research Center,Ethiopia in the 2015/2016 cropping season in a complete randomized block design with three replications.Twenty homogeneous and healthy seeds per replicate were used for trait measurement.Digital image analysis of seeds with GrainScan software package was used to generate the phenotypic data.Analysis of variance revealed highly significant differences between accessions for all traits.Atotal of 46 quantitative trait loci(QTL)were identified for all traits across all chromosomes.One novelmajor candidate QTL(−lg P≥4)with pleiotropic effects for grain CIE L*(brightness)and CIE a*(redness)was identified on the long armof chromosome 2A.Eighteen nominal QTL(−lg P≥3)and 26 suggestive QTL(−lg P≥2.5)were identified.Pleiotropic QTL influencing both grain shape and color were identified.Admas Alemu Tileye Feyissa Roberto Tuberosa Marco Maccaferri Giuseppe Sciara Tesfaye Letta Bekele Abeyo 2020The Crop Journal2020,8,5:2
3Effect of abscisic acid on pollen germination and tube gowth of maize显示文摘FRASCARON E TUBEROSA R 1993Plant Breeding1993,110,:1
4To clone or not to clone plant QTLs:present and fu-ture challenges显示文摘Salvi S Tuberosa R 2005Trends in Plant Science2005,10,:1
5Mapping QTL regula- ting morpho-physiological traits and yield:case studies,shortcom- ings and perspectives in drought-stressed maize 显示文摘Tuberosa R Salvi S Sanguineti M C 2002Ann Bot2002,89,:1
6Phenotyping for drought tolerance of crops in the ge- nomics era显示文摘Tuberosa Roberto 2012Frontiers in Physiology2012,,3:1
7Updated consensus map for flowering time QTLs in maize显示文摘Salvi S Castelletti S Tuberosa R 2009Maydica-2009,54,:1
8Identification of QTLs for root characteristics in maize grown in hydroponics and analysis of their overlap with QTLs for grain yield in the field at two regimes显示文摘Tuberosa R Sanguineti M C Landi P el al 2002Plant Molecular Biology2002,48,:1
9RFLP mapping of quantitative trait loci controlling abscisic acid concentration in leaves of drought stressed maize显示文摘Tuberosa R Sanguineti M C 1998Theor Appl Genet1998,97,:1
10Map- ping QTL regulating morpho-physiological traits and yield: case studies, shortcomings and perspectives in drought- stressed maize 显示文摘TUBEROSA R SALVI S SANGUINETI M C 2002Annals Botany2002,89,:1
11MappingQTL regulating morpho-physiological traits andyield:case studies,shortcomings and perspectives indrought-stressed maize显示文摘Tuberosa R Salvi S Sanguineti M C 2002Annual of Botany2002,89,7:1
12An integrated DArT-SSR linkage map of durum wheat显示文摘Paola Mantovani Marco Maccaferri Maria Corinna Sanguineti Roberto Tuberosa Ilaria Catizone Peter Wenzl Brent Thomson Jason Carling Eric Huttner Enzo DeAmbrogio Andrzej Kilian 2008Molecular Breeding2008,,4:1
13Genetic and genomic dissection of maize root development and architecture 显示文摘Hochholdinger F Tuberosa R 2009Current Opinion in Plant Biology2009,12,2:1
14Identification of QTLs for root eharacteristies in maize grown in hydroponics and analysis of their overlap with QTLs for grain yield in the field at two water reglmes显示文摘Tuberosa R Sanguineti M C Landi P 2002Plant molecular biology2002,48,56:1
15To clone or not to clone plant QTLs:present and future challenges显示文摘Salvi S Tuberosa R 0,,:1
16Mapping QTL regulating morpho-physiologieal traits and yield: case stud- ies,shortcomings and perspectives in drought-stressed maize 显示文摘Tuberosa R Salvi S Sanguineti M C 2002Annual Botany2002,89,:1
17Toward positional cloning of Vgt1,a QTL controlling the transition from the vegetative to the reproductive phase in maize显示文摘Salvi S Tuberosa R Chiapparino E 2002Plant Mol Biol2002,48,56:1
18A path-coefficient analysis of some yield components in sunflower显示文摘Alba E Benvenuti A Tuberosa R 1979Helia1979,2,:1
19Identification of QTLs for root characteristics in maize grown in hydroponics and analysis of their overlap with QTLS for grain yield in the field at two regimes 显示文摘Tuberosa R Sanguineti M C Landi P Giuliani M M Salvi S Conti S 2002Plant Molecular Biology2002,48,:1
20Mapping QTL for ABA concentration in leaves of a maize cross segregating for anthesis date显示文摘Tuberosa R Parentoni S Kim T S 1998Maize Genet Coop News Lett1998,72,:1
返回顶部 每页显示:
共5页 首页 上一页 第1页 下一页 末页 /5 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费