首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Gene discovery and functional marker development for fragrance in sorghum (Sorghum bicolor (L.) Moench).
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Gene discovery and functional marker development for fragrance in sorghum (Sorghum bicolor (L.) Moench).

机译:高粱(Sorghum bicolor(L.)Moench)中香料的基因发现和功能标记开发。

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摘要

2-acetyl-1-pyrroline (2AP) is a potent volatile compound causing fragrance in several plants and foods. Seeds of some varieties of rice, sorghum and soybean possess fragrance. The genes responsible for fragrance in rice and soybean are orthologs that correspond to betaine aldehyde dehydrogenase 2 (BADH2). Genotypes harboring fragrance in rice and soybean contain a premature stop codon in BADH2 which impairs the synthesis of full length functional BADH2 protein leading to the accumulation of 2AP. In this study, we reported an association between the BADH2 gene and fragrance in sorghum. An F2 population of 187 plants developed from a cross between KU630 (non-fragrant) and IS19912 (fragrant) was used. Leaves of F2 and F3 progenies were evaluated for fragrance by organoleptic test, while seeds of F2 plants were analyzed for 2AP. The tests consistently showed that the fragrance is controlled by a single recessive gene. Gene expression analysis of SbBADH1 and SbBADH2 in leaves of KU630 and IS19912 at various stages revealed that SbBADH1 and SbBADH2 were expressed in both accessions. Sequence comparison between KU630 and IS19912 revealed a continuous 1,444 bp deletion encompassing exon 12 to 15 of SbBADH2 in IS19912 which introduces a frameshift mutation and thus causes a premature stop codon. An indel marker was developed to detect polymorphism in SbBADH2. Bulk segregant and QTL analyses confirmed the association between SbBADH2 and fragrance.
机译:2-乙酰基-1-吡咯啉(2AP)是一种有效的挥发性化合物,可在多种植物和食品中产生香味。某些大米,高粱和大豆的种子具有香味。负责水稻和大豆香气的基因是直向同源物,与甜菜碱醛脱氢酶2(BADH2)相对应。在稻米和大豆中具有香气的基因型在BADH2中含有一个过早的终止密码子,这会损害全长功能性BADH2蛋白的合成,从而导致2AP的积累。在这项研究中,我们报道了BADH2基因与高粱香气之间的关联。使用从KU630(非香型)和IS19912(香型)之间杂交得到的187种植物的F 2 种群。通过感官测试评价F 2 和F 3 子代的叶子的香气,同时分析F2植物的种子的2AP。测试一致表明,该香精受单个隐性基因控制。 KU630和IS19912叶片在不同阶段对SbBADH1和SbBADH2的基因表达分析表明,SbBADH1和SbBADH2在两个种中均表达。 KU630和IS19912之间的序列比较显示,IS19912中包含SbBADH2外显子12至15的连续1,444 bp缺失,这导致移码突变,从而导致提前终止密码子。开发了插入缺失标记以检测SbBADH2中的多态性。大量分离剂和QTL分析证实了SbBADH2与香料之间的关联。

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