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Discovery and genetic analysis of non-bitter Tartary buckwheat ( Fagopyrum tataricum Gaertn.) with trace-rutinosidase activity

机译:具有痕量芸香糖苷酶活性的非苦苦苦荞(Fagopyrum tataricum Gaertn。)的发现和遗传分析

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In a screening of about 500 lines of Tartary buckwheat, we identified lines that contained no detectable rutinosidase isozymes using an in-gel detection assay. We confirmed that seeds of these individuals had only a trace level of in-vitro rutinosidase activity. To investigate the heritability of the trace-rutinosidase characteristic, we analyzed the progeny of crosses between rutinosidase trace-lines, ‘f3g-162’, and the ‘Hokkai T8’. The F2 progeny clearly divided into two groups: those with rutinosidase activity under 1.5 nkat/g seed (trace-rutinosidase) and those with activity over 400 nkat/g seed (normal rutinosidase). The segregation pattern of this trait in F2 progeny exhibited 1 : 3 ratio (trace-rutinosidase : normal rutinosidase), suggesting that the trace-rutinosidase trait is conferred by a single recessive gene; rutinosidase-trace A ( rutA ). In addition, sensory panelists evaluated the bitterness of flour from trace-rutinosidase individuals and did not detect bitterness, whereas flour from normal rutinosidase individuals was found to have strong bitterness. Although at least three bitter compounds have been reported in Tartary buckwheat seeds, our present findings indicate that rutin hydrolysis is the major contributing factor to bitterness. In addition, the trace-rutinosidase line identified here, ‘f3g-162’, is a promising material for generating a non-bitter Tartary buckwheat variety.
机译:在筛选约500个苦荞麦品系中,我们使用凝胶内检测法鉴定了不含可检测的芸香苷酶同工酶的品系。我们证实这些个体的种子仅具有微量的体外芸香糖苷酶活性。为了研究微量芸香苷酶特性的遗传性,我们分析了芸香苷酶微量谱系“ f3g-162”和“ Hokkai T8”之间杂交的后代。 F 2 后代清楚地分为两组:具有低于1.5 nkat / g种子的芸香糖苷酶活性的(痕量芸香糖苷酶)和具有超过400 nkat / g种子的芸香苷酶活性的(正常芸香糖苷酶)。 F 2 后代中该性状的分离模式表现为1:3的比例(痕量芸香糖苷酶:正常芸香苷糖苷酶),表明痕量芸香糖苷酶性状是由单个隐性基因赋予的。芸香糖苷酶迹线A(rutA)。另外,感官专门小组成员评估了痕量芸香糖苷酶个体的面粉的苦味,并且没有检测到苦味,而发现来自正常芸香糖苷酶个体的面粉具有强烈的苦味。尽管已在苦荞麦种子中报告了至少三种苦味化合物,但我们目前的发现表明芦丁水解是苦味的主要成因。此外,此处鉴定的痕量芸香糖苷酶系“ f3g-162”是产生无苦苦苦苦苦苦荞品种的有前途的材料。

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