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辣椒中硝酸盐摄取和代谢的日变化。

Daily changes in nitrate uptake and metabolism in Capsicum annuum.

机构信息

Department of Agronomy and Horticultural Science, University of Sydney, 2006, N.S.W., Australia.

出版信息

Planta. 1977 Jan;137(2):107-12. doi: 10.1007/BF00387546.

Abstract

The diurnal pattern of nitrate uptake by Capsicum annuum L. cv. California Wonder in a constant environment is described by a Fourier harmonic, with the maximum uptake in the middle of the photoperiod and the minimum in the middle of the dark period. Comparison of the uptake pattern with that of nitrate reductase (EC 1.6.6.1.) activity suggests against a direct control of one process by the other. This was confirmed by the observation that the pattern of nitrate reductase activity was not altered by restricting nitrate uptake to one hour per day. Translocation of (15)N from the roots is much greater in the lightperiod than in the dark period. Reduction of (15)N in the leaves occurs in the lightperiod but very little is reduced in the dark period. Amino acid levels showed marked daily fluctuations but in the roots neither amino acids, sucrose, fructose, glucose nor malate showed fluctuations. The amino acid composition of roots and leaves differed: glutamine+glutamate were relatively more important in leaves than in roots whereas alanine was a more important constituent of roots than of leaves.

摘要

描述了在恒定环境下,辣椒(Capsicum annuum L. cv. California Wonder)对硝酸盐的日吸收模式,该模式由傅里叶谐波表示,最大吸收发生在光周期的中间,最小吸收发生在暗周期的中间。将吸收模式与硝酸还原酶(EC 1.6.6.1.)活性进行比较表明,一个过程不会直接控制另一个过程。这一结论得到了证实,因为观察到将硝酸盐吸收限制在每天一小时不会改变硝酸还原酶活性的模式。(15)N 从根部的转移在光周期中比在暗周期中多得多。(15)N 在光周期中在叶片中被还原,但在暗周期中很少被还原。氨基酸水平表现出明显的日波动,但在根部,氨基酸、蔗糖、果糖、葡萄糖和苹果酸都没有波动。根和叶的氨基酸组成不同:在叶片中,谷氨酸+谷氨酸比在根部更重要,而丙氨酸在根部的含量比在叶片中更高。

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