Ivanov A, Kosobryukhov A, Kreslavski V, Allakhverdiev S I
Institute of Basic Biological Problems, Russian Academy of Sciences, Institutskaya Street 2, Pushchino, 142290 Moscow Region, Russia.
K.A. Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya Street 35, 127276 Moscow, Russia.
Photosynthetica. 2022 Dec 1;61(2):190-202. doi: 10.32615/ps.2022.047. eCollection 2023.
The changes in photosynthetic activity, as well as the activity of nitrogen-metabolism enzymes, the intensity of lipid peroxidation, and proline content were studied in L. plants after their incubation at a low CO concentration in a sealed chamber for 10 d. CO deficiency (-CO) compared to normal CO concentration (control) led to a decrease in the rate of O gas exchange at the plateau of the light curve and quantum yield of photosynthesis. The maximum and effective quantum photochemical yields also decreased. CO deficiency reduced the activity of nitrate reductase, but increased the activities of nitrite reductase, glutamine synthetase, and glutamate dehydrogenase, and promoted proline accumulation. It is assumed that with a lack of CO, an excess of nitrogen-containing compounds occurs, which must be removed from metabolic processes. Also, we suggest the partial storage of nitrogen in the form of nitrogen-containing compounds such as proline.
在密封室内低CO浓度下培养10天后,研究了L.植物的光合活性变化、氮代谢酶活性、脂质过氧化强度和脯氨酸含量。与正常CO浓度(对照)相比,CO缺乏(-CO)导致光曲线平台期的O气体交换速率和光合作用量子产率降低。最大和有效量子光化学产率也降低。CO缺乏降低了硝酸还原酶的活性,但增加了亚硝酸还原酶、谷氨酰胺合成酶和谷氨酸脱氢酶的活性,并促进了脯氨酸积累。据推测,在缺乏CO的情况下,会出现含氮化合物过量的情况,必须将其从代谢过程中去除。此外,我们建议以脯氨酸等含氮化合物的形式部分储存氮。