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Bioregulation of carbohydrate metabolism in relation to source-sink operation during grain-filling phase of growth in wheat

机译:小麦籽粒灌浆期碳水化合物代谢与源库操作的关系

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Mobilization of free sugars from vegetative tissues to grain and their transformation to starch in relation to activities of some relevant enzymes during growth and development were investigated in wheat (Triticum aestivum L.). Vegetative tissues, viz. flag-leaf, flag-leaf sheath, nodes and internodes contained high concentration of free sugars from 70 DAS to 18 DPA and that was in the order of accumulation - flag-leaf sheath > flag-leaf and internodes > nodes. In these tissues, major portion of ~(14)C appeared in endogenous sucrose, irrespective of the nature of [U-~(14)C]-sugars supplied. In photosynthetic structures above flag-leaf node, namely peduncle, rachis and bracts, the free sugar make-up was maximum at anthesis (90 DAS). Activity of soluble acid invertase (EC 3.2.1.26) was high in these tissues during early stages of grain growth but reverse was true for soluble neutral invertase (EC 3.2.1.27) activity. In apical and basal portions of grain, free sugars were more or less similarly distributed in concentration. Linear and rapid accumulation of starch in endosperm paralleled with a decline in accumulation of this polymer in pericarp-aleurone. In the latter tissue, the activities of starch hydrolyzing enzymes, i.e #alpha#- and #beta#-amylases (3.2.1.1 and 3.2.1.2) were high during initial stages of grain growth. During active grain-filling, alkaline inorganic pyrophosphatase (EC 3.6.1.1) seemed to play a vital role during starch accumulation in endosperm, whereas the involvement of 3-PGA phosphatase (EC 3.1.3.38) was almost confined to pericarp-aleurone. Impairement of ear head photosynthesis by shading depressed starch synthesis (approx 50 percent) indicating, thereby, the significant role of current photosynthates during grain-filling. The results suggested that grain growth in wheat was influenced by an efficient operation of source as well as regulatory factors, including enzymes, constituting intrinsic potential of grain sink.
机译:在小麦(Triticum aestivum L.)中研究了自由糖从营养组织到谷物的动员及其向淀粉的转化与某些相关酶在生长和发育过程中的活性的关系。营养组织,即。旗叶,旗叶鞘,节和节间含有高浓度的游离糖,浓度从70 DAS到18 DPA,并且按积累顺序排列-旗叶鞘>旗叶和节间>节。在这些组织中,〜(14)C的大部分出现在内源性蔗糖中,与所提供的[U-〜(14)C]糖的性质无关。在旗叶节以上的光合结构中,即花序梗,轴突和片,在花期(90 DAS)时游离糖的组成最大。在谷物生长的早期阶段,这些组织中的可溶性酸性转化酶(EC 3.2.1.26)的活性较高,但可溶性中性转化酶(EC 3.2.1.27)的活性却相反。在谷物的顶端和基部,游离糖的浓度大致相同。淀粉在胚乳中的线性和快速积累与果皮-油粉中这种聚合物的积累下降同时出现。在后一种组织中,淀粉水解酶(即#alpha#-和#beta#-淀粉酶(3.2.1.1和3.2.1.2))的活性在谷物生长的初始阶段较高。在活跃的籽粒充实过程中,碱性无机焦磷酸酶(EC 3.6.1.1)似乎在胚乳淀粉积累过程中起着至关重要的作用,而3-PGA磷酸酶(EC 3.1.3.38)的参与几乎仅限于果皮-油菜籽素。遮蔽降低的淀粉合成(约50%),阻碍了耳朵的光合作用,从而表明了当前的光合产物在灌浆过程中的重要作用。结果表明,小麦籽粒的生长受到有效运转的源以及构成谷物内在潜力的调控因素(包括酶)的影响。

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