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首页> 外文期刊>BMC Plant Biology >Polymorphisms and minihaplotypes in the VvNAC26 gene associate with berry size variation in grapevine
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Polymorphisms and minihaplotypes in the VvNAC26 gene associate with berry size variation in grapevine

机译:VvNAC26基因的多态性和微型单元型与葡萄的浆果大小变异相关

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摘要

Background Domestication and selection of Vitis vinifera L. for table and wine grapes has led to a large level of berry size diversity in current grapevine cultivars. Identifying the genetic basis for this natural variation is paramount both for breeding programs and for elucidating which genes contributed to crop evolution during domestication and selection processes. The gene VvNAC26, which encodes a NAC domain-containing transcription factor, has been related to the early development of grapevine flowers and berries. It was selected as candidate gene for an association study to elucidate its possible participation in the natural variation of reproductive traits in cultivated grapevine. Methods A grapevine collection of 114 varieties was characterized during three consecutive seasons for different berry and bunch traits. The promoter and coding regions of VvNAC26 gene (VIT_01s0026g02710) were sequenced in all the varieties of the collection, and the existing polymorphisms (SNP and INDEL) were detected. The corresponding haplotypes were inferred and used for a phylogenetic analysis. The possible associations between genotypic and phenotypic data were analyzed independently for each season data, using different models and significance thresholds. Results A total of 30 non-rare polymorphisms were detected in the VvNAC26 sequence, and 26 different haplotypes were inferred. Phylogenetic analysis revealed their clustering in two major haplogroups with marked phenotypic differences in berry size between varieties harboring haplogroup-specific alleles. After correcting the statistical models for the effect of the population genetic stratification, we found a set of polymorphisms associated with berry size explaining between 8.4 and 21.7 % (R 2 ) of trait variance, including those generating the differentiation between both haplogroups. Haplotypes built from only three polymorphisms (minihaplotypes) were also associated with this trait (R 2 : 17.5 – 26.6 %), supporting the involvement of this gene in the natural variation for berry size. Conclusions Our results suggest the participation of VvNAC26 in the determination of the grape berry final size. Different VvNAC26 polymorphisms and their combination showed to be associated with different features of the fruit. The phylogenetic relationships between the VvNAC26 haplotypes and the association results indicate that this nucleotide variation may have contributed to the differentiation between table and wine grapes.
机译:背景技术用于食用葡萄和酿酒葡萄的葡萄的驯化和选择已导致当前葡萄品种中浆果大小的多样性很大。识别这种自然变异的遗传基础对于育种计划以及阐明在驯化和选择过程中哪些基因对作物进化有贡献的至关重要。编码含有NAC域的转录因子的基因VvNAC26与葡萄花和浆果的早期发育有关。它被选作关联研究的候选基因,以阐明其可能参与栽培葡萄的生殖性状的自然变异。方法在三个连续的季节中,针对不同的浆果和串性状,对114个葡萄品种进行特征鉴定。在该集合的所有变体中对VvNAC26基因(VIT_01s0026g02710)的启动子和编码区进行了测序,并检测了现有的多态性(SNP和INDEL)。推断相应的单倍型并用于系统发育分析。对于每个季节数据,使用不同的模型和显着性阈值,分别分析了基因型和表型数据之间的可能关联。结果在VvNAC26序列中共检测到30个非稀有多态性,并推断出26个不同的单倍型。系统发育分析表明,它们聚集在两个主要的单倍群中,在具有单倍群特异性等位基因的变种之间,浆果大小有明显的表型差异。校正种群遗传分层影响的统计模型后,我们发现了一组与浆果大小相关的多态性,解释了8.4%至21.7%(R 2 )的性状变异,包括那些引起分化的变异。两个单倍群之间。仅由三个多态性构建的单倍型(迷你单倍型)也与该性状相关(R 2 :17.5 – 26.6%),支持该基因参与浆果大小的自然变异。结论我们的结果表明VvNAC26参与了葡萄浆果最终大小的确定。不同的VvNAC26多态性及其组合显示与水果的不同特征相关。 VvNAC26单倍型与关联结果之间的系统发育关系表明,这种核苷酸变异可能有助于食用葡萄与酿酒葡萄之间的分化。

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