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首页> 外文期刊>The Journal of Heredity >Determining the role of Tie-dyed1 in starch metabolism: epistasis analysis with a maize ADP-glucose pyrophosphorylase mutant lacking leaf starch.
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Determining the role of Tie-dyed1 in starch metabolism: epistasis analysis with a maize ADP-glucose pyrophosphorylase mutant lacking leaf starch.

机译:确定Tie-dyed1在淀粉代谢中的作用:利用缺乏叶片淀粉的玉米ADP-葡萄糖焦磷酸化酶突变体进行上位性分析。

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摘要

In regions of their leaves, tdy1-R mutants hyperaccumulate starch. We propose 2 alternative hypotheses to account for the data, that Tdy1 functions in starch catabolism or that Tdy1 promotes sucrose export from leaves. To determine whether Tdy1 might function in starch breakdown, we exposed plants to extended darkness. We found that the tdy1-R mutant leaves retain large amounts of starch on prolonged dark treatment, consistent with a defect in starch catabolism. To further test this hypothesis, we identified a mutant allele of the leaf expressed small subunit of ADP-glucose pyrophosphorylase (agps-m1), an enzyme required for starch synthesis. We determined that the agps-m1 mutant allele is a molecular null and that plants homozygous for the mutation lack transitory leaf starch. Epistasis analysis of tdy1-R; agps-m1 double mutants demonstrates that Tdy1 function is independent of starch metabolism. These data suggest that Tdy1 may function in sucrose export from leaves.
机译:在其叶片区域中,tdy1-R突变体会过度积累淀粉。我们提出2个替代假设来说明这些数据,即Tdy1在淀粉分解代谢中起作用,或者Tdy1促进叶片中蔗糖的出口。为了确定Tdy1是否可能在淀粉分解中起作用,我们将植物暴露在黑暗中。我们发现,tdy1-R突变体叶片在长时间的黑暗处理中保留了大量淀粉,这与淀粉分解代谢的缺陷一致。为了进一步检验该假设,我们鉴定了叶表达ADP-葡萄糖焦磷酸化酶(agps-m1)的小亚基的突变等位基因,该酶是淀粉合成所必需的。我们确定agps-m1突变等位基因是一个分子无效的,并且该突变纯合的植物缺少瞬时叶淀粉。 tdy1-R的上位性分析; agps-m1双突变体表明Tdy1功能与淀粉代谢无关。这些数据表明,Tdy1可能在叶片的蔗糖出口中起作用。

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