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典型文献
QTL-seq analysis of the seed size trait in grape provides new molecular insights on seedlessness
文献摘要:
Seedlessness in grape (Vitis vinifera) is an important commercial trait for both the fresh and drying markets. However, despite numerous studies, the mechanisms and key genes regulating grape seedlessness are mostly unknown. In this study, we sequenced the genomes of the V. vinifera seeded cultivar 'Red Globe', the seedless cultivar 'Centennial Seedless', and the derived hybrids. Nonsynonymous single nucleotide polymorphisms (SNPs) were identified by genome sequencing and analyzed using published transcriptome data. Nonsynonymous SNPs occurred in genes related to seed development, which were identified as protein kinases, transcription factors, and cytochrome P450s and showed differential expression during ovule development in both seeded and seedless grapes. These nonsynonymous SNP-associated genes were mainly involved in biological processes such as hormone balance, seed coat and endosperm development, reproductive organ development, oxidation and reduction, senescence and cell death. A potential quantitative trait locus (QTL) region associated with seed size was characterized based on the SNP-index, and expression analysis of candidate genes in the QTL region during ovule development in multiple seeded and seedless grape cultivars were conducted. Three SNPs were further subjected to SNaPshot analysis and one SNP in G8 showed 67.5% efficiency in the grape progeny validation. Overall, the data obtained in this study shed light on the differences in seed development between seeded and seedless progeny at the genomic level, which provides valuable resources for future functional studies and grape breeding.
文献关键词:
作者姓名:
WANG Li;ZHANG Song-lin;JIAO Chen;LI Zhi;LIU Chong-huai;WANG Xi-ping
作者机构:
State Key Laboratory of Crop Stress Biology in Arid Areas/College of Horticulture,Northwest A&F University,Yangling 712100,P.R.China;College of Horticulture,Hebei Agricultural University,Baoding 071001,P.R.China;Key Laboratory of Horticultural Plant Biology and Germplasm Innovation in Northwest China of Ministry of Agriculture and Rural Affairs,Northwest A&F University,Yangling 712100,P.R.China;Zhengzhou Fruit Research Institute,Chinese Academy of Agricultural Sciences,Zhengzhou 450000,P.R.China
引用格式:
[1]WANG Li;ZHANG Song-lin;JIAO Chen;LI Zhi;LIU Chong-huai;WANG Xi-ping-.QTL-seq analysis of the seed size trait in grape provides new molecular insights on seedlessness)[J].农业科学学报(英文),2022(10):2910-2925
A类:
seedlessness,Seedlessness,seedless,Seedless,Nonsynonymous
B类:
QTL,analysis,size,trait,provides,new,molecular,insights,Vitis,vinifera,important,commercial,both,fresh,drying,markets,However,despite,numerous,studies,mechanisms,key,genes,regulating,are,mostly,unknown,In,this,study,sequenced,genomes,seeded,Red,Globe,Centennial,derived,hybrids,single,nucleotide,polymorphisms,SNPs,were,identified,by,sequencing,analyzed,using,published,transcriptome,data,occurred,related,development,which,protein,kinases,transcription,factors,cytochrome,P450s,showed,differential,expression,during,ovule,grapes,These,nonsynonymous,associated,mainly,involved,biological,processes,such,hormone,balance,coat,endosperm,reproductive,organ,oxidation,reduction,senescence,cell,death,potential,quantitative,locus,region,was,characterized,candidate,multiple,cultivars,conducted,Three,further,subjected,SNaPshot,G8,efficiency,progeny,validation,Overall,obtained,light,differences,between,genomic,level,valuable,resources,future,functional,breeding
AB值:
0.510684
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