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Arabidopsis seedlings deficient in a plastidic pyruvate kinase are unable to utilize seed storage compounds for germination and establishment

机译:缺乏质体丙酮酸激酶的拟南芥幼苗无法利用种子存储化合物进行发芽和定殖

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摘要

Catabolism of storage reserves and biosynthesis of metabolites necessary for growth are essential for seed germination and establishment. An Arabidopsis (Arabidopsis thaliana) mutant (pkp1) deficient in plastidic pyruvate kinase (PKp) and unable to accumulate storage oil to the same extent as the wild type shows delayed germination and seedling establishment dependent on an exogenous sugar supply. It appears, however, as though these phenotypes are not entirely caused specifically by lack of seed oil and may be related to reduced PKp activity in germinating seeds. Increasing the sucrose concentration in the medium further inhibits germination of pkp1, possibly due to the accumulation of soluble sugars in seeds. Germinating seeds of pkp1 are unable to metabolize storage oil and cannot utilize applied sucrose for hypocotyl elongation in the dark. Moreover, pkp1 contains less tocopherol and chlorophyll than the wild type. Taken together, the results are consistent with a model in which PKp is required for the efficient conversion of sugar into precursors for different anabolic pathways.
机译:储存储备的分解代谢和生长必需的代谢物的生物合成对于种子发芽和定殖至关重要。缺乏质体丙酮酸激酶(PKp)的拟南芥(Arabidopsis thaliana)突变体(pkp1),无法以与野生型相同的程度积累储油,这取决于外源糖的供应,导致发芽延迟和幼苗的建立。但是,似乎这些表型不是完全由缺乏种子油引起的,并且可能与发芽种子中PKp活性降低有关。培养基中蔗糖浓度的增加会进一步抑制pkp1的发芽,这可能是由于可溶性糖在种子中的积累所致。 pkp1的发芽种子无法代谢贮藏油,也无法在黑暗中利用施加的蔗糖进行下胚轴伸长。而且,pkp1所含的生育酚和叶绿素比野生型少。两者合计,结果与模型相符,在该模型中,需要PKp才能将糖有效转化为不同合成代谢途径的前体。

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