nitrate assimilation

英 [ˈnaɪtreɪt əˌsɪməˈleɪʃn] 美 [ˈnaɪtreɪt əˌsɪməˈleɪʃn]

n.  硝酸盐同化(作用)

机械



双语例句

  1. Our results demonstrate that nitrate assimilation is an important process in rice regeneration and also provide an additional selectable marker for rice transformation.
    我们的结果表明硝酸同化是水稻再生的一个很重要的过程,同时也为水稻转化提供了一个额外的选择标记。
  2. Effects of Exogenous Salicylic Acid on Nitrate Accumulation and Reduction and Assimilation in the Leaves of Chinese Chive
    外源水杨酸对韭菜硝酸盐累积及还原同化的影响
  3. In conclusion nitrogen metabolism can be regulated through regulating the relationship between nitrate and ammonium uptake and assimilation to increase output and quality of sugar beet.
    说明可以通过调节甜菜对NO3-与NH4+的吸收与同化关系来调控甜菜的氮代谢,以提高甜菜的产量与质量。
  4. P 4 can not utilize nitrate as the nitrogen source in its assimilation. Since nitrogen can be detected in its denitrifying process, the denitration of P 4 must be implemented by its dissimilation.
    但P4不能利用硝酸盐作为氮源同化为自身细胞物质,并在反硝化作用中测定到N2的存在,说明P4株反硝化作用是通过异化途径实现的。
  5. Proper nitrogen application could increase the activity of nitrate reductase 、 sucrose phosphate synthase and glutamine synthetase. The proper nitrogen application to promote nitrogen metabolism is 300 kg · hm-2, it also could promote the assimilation and accumulation of nitrogen.
    适宜的施氮量有利于提高硝酸还原酶、蔗糖磷酸合成酶和谷氨酰胺合成酶的活性,促进氮代谢的适宜氮肥用量为300kg·hm-2,有利于氮素的吸收积累。
  6. In the second step of the nitrate assimilation pathway, ferredoxin-nitrite reductase ( NiR) catalyzes the reduction of nitrite to ammonium, thus controlling this gene would influence the build-up of nitrite in nitrate assimilation pathway.
    在硝酸盐代谢途径中,铁氧还蛋白-NiR催化亚硝酸盐还原成铵,因此调控NiR基因的表达会影响硝酸盐同化途径中亚硝酸盐的积累。
  7. Generally, nitrate accumulation in plants is due to the imbalance in the capacities of nitrate uptake, reduction and assimilation.
    植物对硝态氮的吸收和还原同化不平衡是造成其在体内累积的主要原因。
  8. Characteristics of nitrate accumulation and assimilation of Toona sinensis were studied in this paper, for the purpose of understanding how to reduce the accumulation of nitrate in Toona sinensis.
    本文以香椿为实验材料,初步研究了香椿对硝态氮积累和同化的特征,期望为理解以及降低香椿体内硝酸盐的积累提供参考。