首页> 外文期刊>Zeitschrift fuer pflanzenernaehrung und bodenkunde >Einfluß von Kupfer‐ und Stickstoffmangel auf die Aktivität der Phenoloxidase und den Gehalt an Phenolen in den Blättern der Sonnenblume (Helianthus annuus)
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Einfluß von Kupfer‐ und Stickstoffmangel auf die Aktivität der Phenoloxidase und den Gehalt an Phenolen in den Blättern der Sonnenblume (Helianthus annuus)

机译:铜和氮缺乏对向日葵(Helianthus annuus)叶片酚氧化酶活性和酚含量的影响

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Effect of copper and nitrogen deficiency on phenol oxidase activity and content of phenols in leaves of sunflower (Helianthus annuus)In sunflower leaves of different insertion height the activity of phenol oxidase during the course of the whole vegetation period was determined. In leaves of normal plants this activity reached its maximum during the period of most intensiv growth and decreased continuously with increasing age. The highest activity was found in cotyledons. In normal leaves this maximum decreased with increasing insertion height.Copper deficiency led in cotyledons to a small, in leaves to a severe inhibition of the phenol oxidase activity. Here the decrease of copper content always led to an unproportional decrease of the enzyme activity. After the middle of July, no phenol oxidase activity in leaves of copper deficient plants could be determined.Nitrogen deficiency decreased the yield considerably, while it was lowering the phenol oxidase activity only slightly. Orthodihydroxyphenols, as substrates of phenol oxidase, showed a negative correlation to the enzym activity: The stronger the suppression of the phenol oxidase activity, the higher was the rise of the orthodiphenol content in full expanded leaves.With unsufficient copper supply the plants showed only week deficiency symptoms, although the phenol oxidase activity was completly inhibited. Therefore it is presumed that in sunflower leaves the role of phenol oxidase can partly be taken over by other enzymes.
机译:铜和氮缺乏对向日葵叶片酚氧化酶活性和酚含量的影响测定不同插入高度的向日葵叶片在整个植被期的酚氧化酶活性。在正常植物的叶片中,这种活性在最密集的生长期间达到最大值,并随着年龄的增长而持续降低。在子叶中发现的活性最高。在正常叶子中,该最大值随着插入高度的增加而降低。铜的缺乏导致子叶中的小,在叶片中对苯酚氧化酶活性的严重抑制。在这里,铜含量的降低总是导致酶活性的不成比例的降低。7月中旬以后,无法测定缺铜植株叶片中的苯酚氧化酶活性。缺氮大大降低了产量,而苯酚氧化酶活性仅略有降低。邻二羟基酚作为苯酚氧化酶的底物,与酶活性呈负相关:苯酚氧化酶活性的抑制越强,全膨叶片中邻二酚含量的上升越高。在铜供应不足的情况下,尽管苯酚氧化酶活性完全受到抑制,但植物仅表现出一周的缺乏症状。因此,据推测,在向日葵叶中,苯酚氧化酶的作用可以部分地被其他酶取代。

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