首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Natural mutations in two homoeologous TT8 genes control yellow seed coat trait in allotetraploid Brassica juncea (AABB).
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Natural mutations in two homoeologous TT8 genes control yellow seed coat trait in allotetraploid Brassica juncea (AABB).

机译:两个同源TT8基因的自然突变控制异源四倍体芥菜(AABB)的黄色种皮特征。

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Identification of the candidate gene responsible for the seed coat colour variation in Brassica juncea was undertaken following an earlier study where two independent loci (BjSc1 and BjSc2) were mapped to two linkage groups, LG A9 and B3 (Padmaja et al. in Theor Appl Genet 111:8-14, 2005). The genome search from BRAD data for the presence of flavonoid genes in B. rapa identified three candidate genes namely, DFR, TT1 and TT8 in the LG A9. Quantitative real-time PCR revealed absence of transcript for the late biosynthetic genes (LBGs) and showed significant reduction of transcript in the TT8 from the developing seeds of yellow-seeded line. While mapping of two DFR genes, the BjuA.DFR and BjuB.DFR did not show perfect co-segregation with the seed coat colour loci, that of the two TT8 genes, BjuA.TT8 and BjuB.TT8 showed perfect co-segregation with the seed coat colour phenotype. The BjuA.TT8 allele from the yellow-seeded line revealed the presence of an insertion of 1,279 bp in the exon 7 and did not produce any transcript as revealed by reverse transcriptase PCR. The BjuB.TT8 allele from the yellow-seeded line revealed the presence of an SNP (C->T) in the exon 7 resulting in a stop codon predicting a truncated protein lacking the C-terminal 8 amino acid residues and produced significantly low level of transcript than its wild-type counterpart. Hence, it is hypothesized that the mutations in both the TT8 genes are required for inhibiting the transcription of LBGs in the yellow-seeded mutant of B. juncea.
机译:在较早的研究中,鉴定了芥菜种皮颜色变化的候选基因,该研究将两个独立的基因座(BjSc1和BjSc2)定位到两个连接基团LG A9和B3(Padmaja等人,Theor Appl Genet)。 111:8-14,2005)。从BR​​AD数据进行的基因组搜索中,在芜菁中存在类黄酮基因,从而确定了LG A9中的三个候选基因,即DFR,TT1和TT8。实时定量PCR显示,后期生物合成基因(LBGs)的转录本不存在,并且TT8的转录本明显减少,其种子来自黄种线的发育中种子。在绘制两个DFR基因的图谱时,BjuA.DFR和BjuB.DFR与种皮色基因座没有显示出完美的共分离,而两个TT8基因BjuA.TT8和BjuB.TT8的图谱与种皮颜色位点显示了完美的共分离。种皮颜色表型。来自黄色种子系的BjuA.TT8等位基因显示在外显子7中存在1,279 bp的插入,并且未产生任何转录本,如通过逆转录酶PCR所揭示的。来自黄种线的BjuB.TT8等位基因揭示了外显子7中存在SNP(C-> T),导致终止密码子预测缺少C-末端8个氨基酸残基的截短蛋白并产生明显较低的水平成绩单比其野生型对应物好。因此,假设两个TT8基因中的突变是抑制芥菜型油菜黄色种子突变体中LBGs的转录所必需的。

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