期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
桃品种特异性荧光SSR分子标记数据库构建 被引量:17
1
作者 李雄伟 孟宪桥 +8 位作者 贾惠娟 王力荣 王志强 马瑞娟 吴大军 董冰 Maria Jose aranzana pere arús 高中山 《果树学报》 CAS CSCD 北大核心 2013年第6期924-932,共9页
【目的】选择通用的荧光SSR分子标记建立桃种质资源基因型数据库便于进行种质特异性鉴定、资源交换、管理和利用。【方法】根据48个SSR标记对国内外669份桃品系的遗传多样性测试结果,从中选择出一部分多态信息含量较高、适合品种鉴别... 【目的】选择通用的荧光SSR分子标记建立桃种质资源基因型数据库便于进行种质特异性鉴定、资源交换、管理和利用。【方法】根据48个SSR标记对国内外669份桃品系的遗传多样性测试结果,从中选择出一部分多态信息含量较高、适合品种鉴别的标记,采用不同荧光标识组合在ABI3130测序仪测试,为了使不同批次的测试结果准确可靠,6—8个参照品种纳入每次的测试中。结果用16个SSR标记基本可以判断品种的特异性,它们可以用4种荧光标识进行标记,便于分为4组在ABI遗传分析仪上测试。目前数据库包含641份材料.基因型一致的品系多为同一品种突变体和自交系演化的地方品种。文中列出了100份中国代表性种质资源分子标记数据库,并建议8个中国品系为参照。对17个桃品种进行系谱验证发现,我国资源圃所育成的7个品种系谱信息正确,但日本桃品种系谱信息与文献出现偏差。【结论】应用16个多态性高的SSR荧光标记可以构建精确的桃品种分子指纹数据库,测试方法及结果对品种特异性和系谱鉴定提供重要的参考.推动资源分子指纹数据库标准化建设工作。 展开更多
关键词 荧光标记SSR 指纹图谱数据库 品种鉴定 系谱鉴定
在线阅读 下载PDF
Prunus genetics and applications after de novo genome sequencing:achievements and prospects 被引量:9
2
作者 Maria Joséaranzana Véronique Decroocq +11 位作者 Elisabeth Dirlewanger Iban Eduardo Zhong shan Gao Ksenija Gasic Amy Iezzoni sook Jung Cameron Peace Humberto Prieto Ryutaro Tao Ignazio Verde Albert G.Abbott pere arús 《Horticulture Research》 SCIE 2019年第1期1222-1246,共25页
Prior to the availability of whole-genome sequences,our understanding of the structural and functional aspects of Prunus tree genomes was limited mostly to molecular genetic mapping of important traits and development... Prior to the availability of whole-genome sequences,our understanding of the structural and functional aspects of Prunus tree genomes was limited mostly to molecular genetic mapping of important traits and development of EST resources.With public release of the peach genome and others that followed,significant advances in our knowledge of Prunus genomes and the genetic underpinnings of important traits ensued.In this review,we highlight key achievements in Prunus genetics and breeding driven by the availability of these whole-genome sequences.Within the structural and evolutionary contexts,we summarize:(1)the current status of Prunus whole-genome sequences;(2)preliminary and ongoing work on the sequence structure and diversity of the genomes;(3)the analyses of Prunus genome evolution driven by natural and man-made selection;and(4)provide insight into haploblocking genomes as a means to define genome-scale patterns of evolution that can be leveraged for trait selection in pedigree-based Prunus tree breeding programs worldwide.Functionally,we summarize recent and ongoing work that leverages whole-genome sequences to identify and characterize genes controlling 22 agronomically important Prunus traits.These include phenology,fruit quality,allergens,disease resistance,tree architecture,and self-incompatibility.Translationally,we explore the application of sequence-based marker-assisted breeding technologies and other sequence-guided biotechnological approaches for Prunus crop improvement.Finally,we present the current status of publically available Prunus genomics and genetics data housed mainly in the Genome Database for Rosaceae(GDR)and its updated functionalities for future bioinformatics-based Prunus genetics and genomics inquiry. 展开更多
关键词 PRUNUS BREEDING ACHIEVEMENTS
在线阅读 下载PDF
High-density mapping suggests cytoplasmic male sterility with two restorer genes in almond×peach progenies 被引量:1
3
作者 JoséManuel Donoso Iban Eduardo +4 位作者 Roger Picañol Ignasi Batlle Werner Howad María Joséaranzana pere arús 《Horticulture Research》 SCIE 2015年第1期234-241,共8页
Peach(Prunus persica)and almond(Prunus dulcis)are two sexually compatible species that produce fertile offspring.Almond,a highly polymorphic species,is a potential source of new genes for peach that has a strongly ero... Peach(Prunus persica)and almond(Prunus dulcis)are two sexually compatible species that produce fertile offspring.Almond,a highly polymorphic species,is a potential source of new genes for peach that has a strongly eroded gene pool.Here we describe the genetics of a male sterile phenotype that segregated in two almond(‘Texas’)×peach(‘Earlygold’)progenies:an F2(T×E)and a backcross one(T1E)to the‘Earlygold’parent.High-density maps were developed using a 9k peach SNP chip and 135 simple-sequence repeats.Three highly syntenic and collinear maps were obtained:one for the F2(T×E)and two for the backcross,T1E(for the hybrid)and E(for‘Earlygold’).A major reduction of recombination was observed in the interspecific maps(T×E and T1E)compared to the intraspecific parent(E).The E map also had extensive monomorphic genomic regions suggesting the presence of large DNA fragments identical by descent.Our data for the male sterility character were consistent with the existence of cytoplasmic male sterility,where individuals having the almond cytoplasm required the almond allele in at least one of two independent restorer genes,Rf1 and Rf2,to be fertile.The restorer genes were located in a 3.4 Mbp fragment of linkage group 2(Rf1)and 1.4 Mbp of linkage group 6(Rf2).Both fragments contained several genes coding for pentatricopeptide proteins,demonstrated to be responsible for restoring fertility in other species.The implications of these results for using almond as a source of novel variability in peach are discussed. 展开更多
关键词 linkage restore MAPPING
在线阅读 下载PDF
Almond population genomics and non-additive GWAS reveal new insights into almond dissemination history and candidate genes for nut traits and blooming time
4
作者 Felipe Pérez de los Cobos Eva Coindre +5 位作者 Naima Dlalah Bénédicte Quilot-Turion Ignasi Batlle pere arús Iban Eduardo Henri Duval 《Horticulture Research》 SCIE CSCD 2023年第10期262-272,共11页
Domestication drastically changed crop genomes,fixing alleles of interest and creating different genetic populations.Genome-wide association studies(GWASs)are a powerful tool to detect these alleles of interest(and so... Domestication drastically changed crop genomes,fixing alleles of interest and creating different genetic populations.Genome-wide association studies(GWASs)are a powerful tool to detect these alleles of interest(and so QTLs).In this study,we explored the genetic structure as well as additive and non-additive genotype-phenotype associations in a collection of 243 almond accessions.Our genetic structure analysis strongly supported the subdivision of the accessions into five ancestral groups,all formed by accessions with a common origin.One of these groups was formed exclusively by Spanish accessions,while the rest were mainly formed by accessions from China,Italy,France,and the USA.These results agree with archaeological and historical evidence that separate modern almond dissemination into four phases:Asiatic,Mediterranean,Californian,and southern hemisphere.In total,we found 13 independent QTLs for nut weight,crack-out percentage,double kernels percentage,and blooming time.Of the 13 QTLs found,only one had an additive effect.Through candidate gene analysis,we proposed Prudul26A013473 as a candidate gene responsible for the main QTL found in crack-out percentage,Prudul26A012082 and Prudul26A017782 as candidate genes for the QTLs found in double kernels percentage,and Prudul26A000954 as a candidate gene for the QTL found in blooming time.Our study enhances our knowledge of almond dissemination history and will have a great impact on almond breeding. 展开更多
关键词 additive GWAS TRAITS
在线阅读 下载PDF
Fine mapping and identification of candidate genes for the peach powdery mildew resistance gene Vr3
5
作者 Neus Marimon Jordi Luque +1 位作者 pere arús Iban Eduardo 《Horticulture Research》 SCIE 2020年第1期343-351,共9页
Powdery mildew is one of the major diseases of peach(Prunus persica),caused by the ascomycete Podosphaera pannosa.Currently,it is controlled through calendar-based fungicide treatments starting at petal fall,but an al... Powdery mildew is one of the major diseases of peach(Prunus persica),caused by the ascomycete Podosphaera pannosa.Currently,it is controlled through calendar-based fungicide treatments starting at petal fall,but an alternative is to develop resistant peach varieties.Previous studies mapped a resistance gene(Vr3)in interspecific populations between almond(‘Texas’)and peach(‘Earlygold’).To obtain molecular markers highly linked to Vr3 and to reduce the number of candidate genes,we fine-mapped Vr3 to a genomic region of 270 kb with 27 annotated genes.To find evidence supporting one of these positional candidate genes as being responsible of Vr3,we analyzed the polymorphisms of the resequences of both parents and used near-isogenic lines(NILs)for expression analysis of the positional candidate genes in symptomatic or asymptomatic leaves.Genes differentially expressed between resistant and susceptible individuals were annotated as a Disease Resistance Protein RGA2(Prupe2G111700)or an Eceriferum 1 protein involved in epicuticular wax biosynthesis(Prupe2G112800).Only Prupe2G111700 contained a variant predicted to have a disruptive effect on the encoded protein,and was overexpressed in both heterozygous and homozygous individuals containing the Vr3 almond allele,compared with susceptible individuals.This information was also useful to identify and validate molecular markers tightly linked and flanking Vr3.In addition,the NILs used in this work will facilitate the introgression of this gene into peach elite materials,alone or pyramided with other known resistance genes such as peach powdery mildew resistance gene Vr2. 展开更多
关键词 RESISTANCE PEACH MAPPING
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部