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首页> 外文期刊>Molecular genetics and genomics: MGG >Fine mapping and candidate gene analysis of an anthocyanin-rich gene, BnaA.PL1, conferring purple leaves in Brassica napus L.
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Fine mapping and candidate gene analysis of an anthocyanin-rich gene, BnaA.PL1, conferring purple leaves in Brassica napus L.

机译:甘蓝型油菜中富含花青素的基因BnaA.PL1的精细定位和候选基因分析。

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摘要

Because of the advantages of anthocyanins, the genetics and breeding of crops rich in anthocyanins has become a hot research topic. However, due to the lack of anthocyanin-related mutants, no regulatory genes have been mapped in Brassica napus. In this study, we first report the characterization of a B. napus line with purple leaves and the fine mapping and candidate screening of the BnaA.PL1 gene. The amount of anthocyanins in the purple leaf line was six times higher than that in a green leaf line. A genetic analysis indicated that the purple character was controlled by an incomplete dominant gene. Through map-based cloning, we localized the BnaA.PL1 gene to a 99-kb region at the end of B. napus chromosome A03. Transcriptional analysis of 11 genes located in the target region revealed that the expression level of only the BnAPR2 gene in seedling leaves decreased from purple to reddish green to green individuals, a finding that was consistent with the measured anthocyanin accumulation levels. Molecular cloning and sequence analysis of BnAPR2 showed that the purple individual-derived allele contained 17 variants. Markers co-segregating with BnaA.PL1 were developed from the sequence of BnAPR2 and were validated in the BC4P2 population. These results suggested that BnAPR2, which encodes adenosine 5'-phosphosulfate reductase, is likely to be a valuable candidate gene. This work may lay the foundation for the marker-assisted selection of B. napus vegetables that are rich in anthocyanins and for an improved understanding of the molecular mechanisms controlling anthocyanin accumulation in Brassica.
机译:由于花色苷的优点,富含花色苷的农作物的遗传育种已成为研究的热点。然而,由于缺乏花色苷相关的突变体,因此在甘蓝型油菜中没有定位基因。在这项研究中,我们首先报道带有紫色叶子的甘蓝型油菜品系的特征以及BnaA.PL1基因的精细定位和候选筛选。紫色叶系中的花色素苷含量是绿色叶系中的六倍。遗传分析表明,紫色特征受不完整的显性基因控制。通过基于图的克隆,我们将BnaA.PL1基因定位到甘蓝型油菜A03染色体末端的一个99-kb区域。对位于目标区域的11个基因的转录分析表明,只有BnAPR2基因在幼苗叶片中的表达水平从紫色下降到红绿色,再到绿色个体,这一发现与测得的花色苷积累水平一致。 BnAPR2的分子克隆和序列分析表明,紫色个体来源的等位基因含有17个变异体。从BnAPR2的序列开发了与BnaA.PL1共分离的标记,并在BC4P2人群中得到了验证。这些结果表明,编码腺苷5'-磷酸磷酸还原酶的BnAPR2可能是有价值的候选基因。这项工作可能为标记辅助选择富含花青素的甘蓝型油菜的蔬菜以及对控制芸苔属中花青素积累的分子机制的更好理解奠定基础。

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