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Nitrogen availability alters flavonoid accumulation in Cyclocarya paliurus via the effects on the internal carbonitrogen balance

机译:氮的可利用性通过对内部碳/氮平衡的影响改变了Cyclocarya paliurus中黄酮的积累

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摘要

Cyclocarya paliurus has traditionally been used in medicines and nutraceutical foods. The aims of this study were to determine whether flavonoid accumulation in C. paliurus is dependent on nitrogen (N) availability and to investigate the internal C (carbon)/N balance under controlled conditions. One-year-old seedlings were grown under five increasing available N level treatments (N1–5) and were harvested throughout the 15-d experimental period. The greatest total chlorophyll amount and photosynthetic rate were achieved during the intermediate N treatments (N3 and N4). The greatest starch level was detected in N3. The total C level was relatively stable, but the total N and free amino acid levels increased, which resulted in a decreased C:N ratio. The flavonoid contents in roots and stalks decreased, while leaves showed a different pattern (peaking in N3). The flavonoid level was closely correlated with flavanone-3-hydroxylase activity, which displayed a similar variation pattern, and their levels were significantly positively correlated with those of total C and starch. Thus, the partitioning of C among primary and secondary metabolisms could be responsible for flavonoid biosynthesis and provide the basis for maintaining high yields, which increases the nutritional values of crops and medicinal plants.
机译:传统上,Cyclocarya paliurus被用于药物和营养食品。这项研究的目的是确定在C. paliurus中的类黄酮积累是否取决于氮(N)的有效性,并研究在受控条件下内部的C(碳)/ N平衡。一岁的幼苗在五种增加的可用氮水平处理下(N1-5)生长,并在整个15天的试验期内收获。在中间氮处理(N3和N4)期间,最大的总叶绿素含量和光合速率达到了。在N3中检测到最大的淀粉含量。总C水平相对稳定,但是总N和游离氨基酸水平增加,这导致C:N比降低。根和茎中的类黄酮含量下降,而叶片显示出不同的模式(在N3中达到峰值)。类黄酮水平与黄烷酮-3-羟化酶活性密切相关,表现出相似的变化规律,并且它们的水平与总C和淀粉含量显着正相关。因此,碳在主要代谢和次要代谢中的分配可能是类黄酮生物合成的原因,并为维持高产提供了基础,从而增加了农作物和药用植物的营养价值。

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