Simple sequence repeat(SSR) capillary electrophoresis and single nucleotide polymorphism(SNP) array are widely used tools for investigating genetic diversity. However, efficiency between SSR and SNP on rapeseed geneti...Simple sequence repeat(SSR) capillary electrophoresis and single nucleotide polymorphism(SNP) array are widely used tools for investigating genetic diversity. However, efficiency between SSR and SNP on rapeseed genetic diversity has not been systematically assessed yet. In this study, both SSR and SNP were used on 446 worldwide B. napus germplasm lines. Data shows that 65 pairs of primers(70 SSRs) and 250 SNPs were necessary to identify the similar accessions. Furthermore, no significant differences were found between 2 systems on basic statistics, population structures, principal components and kinship parameters. In general, either SSR or SNP is efficient for genetic diversity estimation. However, our data revealed the fact that SNP array system shows slightly more accuracy than SSR system on ecotype groups division.展开更多
High-throughput single nucleotide polymorphism(SNP) arrays have emerged as essential genotyping tools,significantly accelerating breeding programs and advancing basic research.In this study,a high-throughput 10K SNP g...High-throughput single nucleotide polymorphism(SNP) arrays have emerged as essential genotyping tools,significantly accelerating breeding programs and advancing basic research.In this study,a high-throughput 10K SNP genotyping array for wax gourd was developed using genotyping by target sequencing(GBTS),featuring 10,722 SNPs evenly distributed across all 12 chromosomes,including 278 functional loci associated with key economic traits.To demonstrate its utility,genetic distances among 19 elite inbred lines were calculated from SNP data and correlated with heterosis for single fruit weight.The results revealed that greater genetic distance was associated with higher middle parent heterosis(MPH) for single fruit weight.Furthermore,56 commercial wax gourd cultivars collected from eight regions were selected and genotyped.Population structure analysis,phylogenetic analysis,and principal component analysis(PCA) collectively indicated that these cultivars fall into two major groups.Group I,comprising black or dark green skinned wax gourds,exhibited lower genetic diversity than Group II,which includes green or light green skinned varieties,reflecting shorter genetic distances within Group I.Finally,60 polymorphic SNPs were used to construct DNA fingerprints for distinguishing the 56 cultivars.As the first high-throughput genotyping platform for wax gourd,this SNP array provides an effective and powerful tool for genetic analysis.展开更多
为更好地保护、开发和利用乌饭树资源,采用基因分型测序(GBS,genotyping by sequencing)技术对采集于5个地区的70份乌饭树野生种质进行了SNP分子标记开发,利用开发的标记研究了乌饭树种质的遗传多样性和群体遗传结构。结果显示,通过测...为更好地保护、开发和利用乌饭树资源,采用基因分型测序(GBS,genotyping by sequencing)技术对采集于5个地区的70份乌饭树野生种质进行了SNP分子标记开发,利用开发的标记研究了乌饭树种质的遗传多样性和群体遗传结构。结果显示,通过测序数据分析共筛选得到9752个高质量SNP标记用于后续研究;乌饭树5个群体均具有丰富的遗传多样性,平均有效等位基因数为1.523,平均期望杂合度为0.219,平均观测杂合度为0.231,其中江苏溧阳群体的遗传多样性最高。分子方差分析显示整个群体的遗传变异主要来自个体间(65.45%)。群体间遗传分化系数显示5个群体间遗传分化程度高,其中江苏溧阳与江西上犹群体间的遗传分化系数最高,为0.406。系统进化树(邻接法)显示乌饭树种质聚类为3个进化分支,种质的聚集与其地理来源无确定性关系;群体结构分析将乌饭树种质分为3个亚群,主成分分析结果与群体结构的结果类似,不同地区的乌饭树种质在3个亚群中均有分布,显示了乌饭树资源存在着广泛的基因交流。本研究可为今后乌饭树良种选育和资源保护提供参考。展开更多
基金supported by National Key R & D Program"Accurate identification and innovative utilization of main cash crop germplasm resources" (2016YFD0100202)
文摘Simple sequence repeat(SSR) capillary electrophoresis and single nucleotide polymorphism(SNP) array are widely used tools for investigating genetic diversity. However, efficiency between SSR and SNP on rapeseed genetic diversity has not been systematically assessed yet. In this study, both SSR and SNP were used on 446 worldwide B. napus germplasm lines. Data shows that 65 pairs of primers(70 SSRs) and 250 SNPs were necessary to identify the similar accessions. Furthermore, no significant differences were found between 2 systems on basic statistics, population structures, principal components and kinship parameters. In general, either SSR or SNP is efficient for genetic diversity estimation. However, our data revealed the fact that SNP array system shows slightly more accuracy than SSR system on ecotype groups division.
基金supported by the Science and Technology Talent Support Project of Hunan Province,China (2022TJ-N15)the Hunan Agricultural Science and Technology Innovation Fund,China (2024CX90 and 2024CX65)the Science and Technology Innovation Program of Hunan Province,China (2021NK1006)。
文摘High-throughput single nucleotide polymorphism(SNP) arrays have emerged as essential genotyping tools,significantly accelerating breeding programs and advancing basic research.In this study,a high-throughput 10K SNP genotyping array for wax gourd was developed using genotyping by target sequencing(GBTS),featuring 10,722 SNPs evenly distributed across all 12 chromosomes,including 278 functional loci associated with key economic traits.To demonstrate its utility,genetic distances among 19 elite inbred lines were calculated from SNP data and correlated with heterosis for single fruit weight.The results revealed that greater genetic distance was associated with higher middle parent heterosis(MPH) for single fruit weight.Furthermore,56 commercial wax gourd cultivars collected from eight regions were selected and genotyped.Population structure analysis,phylogenetic analysis,and principal component analysis(PCA) collectively indicated that these cultivars fall into two major groups.Group I,comprising black or dark green skinned wax gourds,exhibited lower genetic diversity than Group II,which includes green or light green skinned varieties,reflecting shorter genetic distances within Group I.Finally,60 polymorphic SNPs were used to construct DNA fingerprints for distinguishing the 56 cultivars.As the first high-throughput genotyping platform for wax gourd,this SNP array provides an effective and powerful tool for genetic analysis.
文摘为更好地保护、开发和利用乌饭树资源,采用基因分型测序(GBS,genotyping by sequencing)技术对采集于5个地区的70份乌饭树野生种质进行了SNP分子标记开发,利用开发的标记研究了乌饭树种质的遗传多样性和群体遗传结构。结果显示,通过测序数据分析共筛选得到9752个高质量SNP标记用于后续研究;乌饭树5个群体均具有丰富的遗传多样性,平均有效等位基因数为1.523,平均期望杂合度为0.219,平均观测杂合度为0.231,其中江苏溧阳群体的遗传多样性最高。分子方差分析显示整个群体的遗传变异主要来自个体间(65.45%)。群体间遗传分化系数显示5个群体间遗传分化程度高,其中江苏溧阳与江西上犹群体间的遗传分化系数最高,为0.406。系统进化树(邻接法)显示乌饭树种质聚类为3个进化分支,种质的聚集与其地理来源无确定性关系;群体结构分析将乌饭树种质分为3个亚群,主成分分析结果与群体结构的结果类似,不同地区的乌饭树种质在3个亚群中均有分布,显示了乌饭树资源存在着广泛的基因交流。本研究可为今后乌饭树良种选育和资源保护提供参考。