Forschungsstelle Vennesland der Max-Planck-Gesellschaft, Harnackstraße 23, D-1000, Berlin 33.
Planta. 1978 Jan;141(3):279-82. doi: 10.1007/BF00388344.
It has been shown previously that added ammonium salts cause a cessation of nitrate utilization in some Chlorella species. It has also been shown that Chlorella vulgaris can form an inactivated nitrate reductase which is an HCN complex. In the present study, a comparison has been made of the rate of nitrate utilization and the rate of nitrate reductase inactivation in Chlorella vulgaris in response to the addition of ammonium salts and light-dark changes. The rate of formation of HCN-inactivated enzyme is too slow to account for the prompt inhibition of nitrate utilization caused by adding ammonium. In contrast, when nitrate utilization is inhibited by addition of ferricyanide to intact cells, the HCN-inactivated enzyme is promptly formed in vivo, and might account for the inhibition of nitrate utilization, though inhibition of nitrate uptake can not be excluded.
先前的研究表明,添加铵盐会导致某些绿藻物种停止利用硝酸盐。此外,还表明普通小球藻可以形成一种失活的硝酸还原酶,它是一种 HCN 复合物。在本研究中,比较了添加铵盐和光照-黑暗变化对普通小球藻利用硝酸盐的速率和硝酸还原酶失活的速率。HCN 失活酶的形成速度太慢,无法解释添加铵盐引起的硝酸盐利用的迅速抑制。相比之下,当向完整细胞中添加铁氰化物来抑制硝酸盐利用时,HCN 失活酶会在体内迅速形成,可能是导致硝酸盐利用受到抑制的原因,尽管不能排除对硝酸盐摄取的抑制。