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1
Metabolic regulation of glycolate synthesis, photorespiration, and net photosynthesis in tobacco by L-glutamate.通过 L-谷氨酸对烟草中海藻糖合成、光呼吸和净光合作用的代谢调节。
Plant Physiol. 1977 Apr;59(4):688-94. doi: 10.1104/pp.59.4.688.
2
Inhibition of photorespiration and increase of net photosynthesis in isolated maize bundle sheath cells treated with glutamate or aspartate.用谷氨酸或天冬氨酸处理分离的玉米束鞘细胞可抑制光呼吸并增加净光合作用。
Plant Physiol. 1978 Nov;62(5):690-2. doi: 10.1104/pp.62.5.690.
3
Effect of Glyoxylate on the Sensitivity of Net Photosynthesis to Oxygen (the Warburg Effect) in Tobacco.草酰乙酸对烟草净光合对氧敏感性的影响(瓦伯格效应)。
Plant Physiol. 1978 Dec;62(6):938-40. doi: 10.1104/pp.62.6.938.
4
Inhibition of glutamate:glyoxylate aminotransferase activity in tobacco leaves and callus by glycidate, an inhibitor of photorespiration.光呼吸抑制剂缩水甘油酸对烟草叶片和愈伤组织中谷氨酸:乙醛酸转氨酶活性的抑制作用
Plant Physiol. 1978 Feb;61(2):242-7. doi: 10.1104/pp.61.2.242.
5
Comparison of the effectiveness of glycolic Acid and glycine as substrates for photorespiration.比较乙醇酸和甘氨酸作为光呼吸底物的效果。
Plant Physiol. 1972 Jul;50(1):109-13. doi: 10.1104/pp.50.1.109.
6
Increased rate of net photosynthetic carbon dioxide uptake caused by the inhibition of glycolate oxidase.乙醇酸氧化酶抑制导致净光合二氧化碳吸收速率增加。
Plant Physiol. 1966 Dec;41(10):1623-31. doi: 10.1104/pp.41.10.1623.
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Alternate pathways of glycolate synthesis in tobacco and maize leaves in relation to rates of photorespiration.烟草和玉米叶片中乙醇酸合成的替代途径与光呼吸速率的关系
Plant Physiol. 1973 Feb;51(2):299-305. doi: 10.1104/pp.51.2.299.
8
Fixation of O(2) during Photorespiration: Kinetic and Steady-State Studies of the Photorespiratory Carbon Oxidation Cycle with Intact Leaves and Isolated Chloroplasts of C(3) Plants.光呼吸过程中氧气的固定:对C₃植物完整叶片和分离叶绿体光呼吸碳氧化循环的动力学和稳态研究
Plant Physiol. 1978 Dec;62(6):954-67. doi: 10.1104/pp.62.6.954.
9
Effect of glycidate, an inhibitor of glycolate synthesis in leaves, on the activity of some enzymes of the glycolate pathway.叶片中乙醇酸合成抑制剂乙醛酸酯对乙醇酸途径某些酶活性的影响。
Plant Physiol. 1978 Feb;61(2):236-41. doi: 10.1104/pp.61.2.236.
10
Photosynthetic characteristics of photoautotrophically grown tobacco callus cells.光合自养生长的烟草愈伤组织细胞的光合特性
Plant Physiol. 1978 Apr;61(4):606-10. doi: 10.1104/pp.61.4.606.

引用本文的文献

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Highly valuable microalgae: biochemical and topological aspects.高价值微藻:生化和拓扑方面。
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2
Glyoxylate and glutamate effects on photosynthetic carbon metabolism in isolated chloroplasts and mesophyll cells of spinach.乙醛酸和谷氨酸对菠菜离体叶绿体和叶肉细胞光合碳代谢的影响。
Plant Physiol. 1983 Jun;72(2):420-5. doi: 10.1104/pp.72.2.420.
3
Regulation by amino acids of photorespiratory ammonia and glycolate release from ankistrodesmus in the presence of methionine sulfoximine.在甲硫氨酸亚砜imine 存在的情况下,氨基酸对鱼腥藻光合作用氨和甘醇酸释放的调控。
Plant Physiol. 1982 Dec;70(6):1637-40. doi: 10.1104/pp.70.6.1637.
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Regulation of Glycine Decarboxylase and l-Serine Hydroxymethyltransferase Activities by Glyoxylate in Tobacco Leaf Mitochondrial Preparations.乙醛酸对烟草叶片线粒体提取物中甘氨酸脱羧酶和L-丝氨酸羟甲基转移酶活性的调节
Plant Physiol. 1982 Jul;70(1):61-6. doi: 10.1104/pp.70.1.61.
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Altered glycine decarboxylation inhibition in isonicotinic Acid hydrazide-resistant mutant callus lines and in regenerated plants and seed progeny.异烟肼抗性突变愈伤组织系、再生植株及种子后代中甘氨酸脱羧抑制作用的改变。
Plant Physiol. 1982 Jan;69(1):198-204. doi: 10.1104/pp.69.1.198.
6
Enhanced Incorporation of Tritium into Glycolate during Photosynthesis by Tobacco Leaf Tissue in the Presence of Tritiated Water.在氚水存在的情况下,烟草叶片组织在光合作用中增强了甘醇酸的氚掺入。
Plant Physiol. 1982 Jan;69(1):192-7. doi: 10.1104/pp.69.1.192.
7
Effects of carbon dioxide and oxygen on the regulation of photosynthetic carbon metabolism by ammonia in spinach mesophyll cells.二氧化碳和氧气对菠菜叶肉细胞中氨调节光合碳代谢的影响。
Plant Physiol. 1981 Dec;68(6):1231-6. doi: 10.1104/pp.68.6.1231.
8
The effect of glyoxylate on photosynthesis and photorespiration by isolated soybean mesophyll cells.草酰乙酸对分离的大豆叶肉细胞光合作用和光呼吸的影响。
Plant Physiol. 1980 May;65(5):888-92. doi: 10.1104/pp.65.5.888.
9
Effects of glycidate on carbon dioxide fixation with isolated spinach chloroplasts.缩水甘油酸酯对离体菠菜叶绿体二氧化碳固定的影响。
Plant Physiol. 1979 May;63(5):887-91. doi: 10.1104/pp.63.5.887.
10
Effect of Glyoxylate on the Sensitivity of Net Photosynthesis to Oxygen (the Warburg Effect) in Tobacco.草酰乙酸对烟草净光合对氧敏感性的影响(瓦伯格效应)。
Plant Physiol. 1978 Dec;62(6):938-40. doi: 10.1104/pp.62.6.938.

本文引用的文献

1
Plant cell cultures: genetic aspects of crop improvement.植物细胞培养:作物改良的遗传方面
Science. 1975 May 9;188(4188):622-5. doi: 10.1126/science.188.4188.622.
2
Photoautotrophic growth and photosynthesis in tobacco callus cells.烟草愈伤组织细胞中的光合自养生长与光合作用
Plant Physiol. 1975 Dec;56(6):752-6. doi: 10.1104/pp.56.6.752.
3
The effect on net photosynthesis of pedigree selection for low and high rates of photorespiration in tobacco.烟草中光呼吸速率高低的系谱选择对净光合作用的影响。
Plant Physiol. 1973 Jul;52(1):33-7. doi: 10.1104/pp.52.1.33.
4
Formation of glycolate by a reconstituted spinach chloroplast preparation.叶绿体制备物形成乙醇酸。
Plant Physiol. 1971 Sep;48(3):325-30. doi: 10.1104/pp.48.3.325.
5
Analysis of operation and calibration of a ventilated diffusion porometer.通风扩散式气孔计的操作与校准分析
Plant Physiol. 1970 Jul;46(1):175-7. doi: 10.1104/pp.46.1.175.
6
Variation in photorespiration. The effect of genetic differences in photorespiration on net photosynthesis in tobacco.光合作用与光呼吸的差异。光合作用与光呼吸的遗传差异对烟草净光合作用的影响。
Plant Physiol. 1968 Nov;43(11):1838-44. doi: 10.1104/pp.43.11.1838.
7
Investigation on photorespiration with a sensitive C-assay.采用灵敏的 C 测定法研究光呼吸。
Plant Physiol. 1968 Nov;43(11):1829-37. doi: 10.1104/pp.43.11.1829.
8
THE PROBLEM OF SELECTING UNIFORM SAMPLES OF LEAVES.选取均匀叶片样本的问题。
Plant Physiol. 1949 Jul;24(3):335-44. doi: 10.1104/pp.24.3.335.
9
The C 4 -pathway of photosynthesis. Evidence for an intermediate pool of carbon dioxide and the identity of the donor C 4 -dicarboxylic acid.光合作用的C4途径。二氧化碳中间库的证据以及供体C4二羧酸的身份。
Biochem J. 1971 Nov;125(2):425-32. doi: 10.1042/bj1250425.
10
14CO2 fixation and glycolate metabolism in the dark in isolated maize (Zea mays L.) bundle sheath strands.离体玉米(Zea mays L.)维管束鞘细胞条在黑暗中的14CO2固定和乙醇酸代谢
Arch Biochem Biophys. 1974 Aug;163(2):521-9. doi: 10.1016/0003-9861(74)90510-4.

通过 L-谷氨酸对烟草中海藻糖合成、光呼吸和净光合作用的代谢调节。

Metabolic regulation of glycolate synthesis, photorespiration, and net photosynthesis in tobacco by L-glutamate.

机构信息

Department of Biochemistry, The Connecticut Agricultural Experiment Station, NW Haven, Connecticut 06504.

出版信息

Plant Physiol. 1977 Apr;59(4):688-94. doi: 10.1104/pp.59.4.688.

DOI:10.1104/pp.59.4.688
PMID:16659919
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC542474/
Abstract

Experiments were undertaken to identify and characterize control mechanisms in tobacco leaf tissue which decrease the relative contribution of photorespiratory CO(2) release and thereby increase net photosynthetic CO(2) fixation. A number of metabolites were supplied to illuminated leaf discs and their effect on the inhibition of glycolate synthesis was measured. Glycolate accumulation, in the presence of alpha-hydroxy-2-pyridinemethanesulfonic acid, was inhibited in leaf discs previously floated on 30 mM solutions of either L-glutamate, L-aspartate, phospho-enolpyruvate, or glyoxylate. The effect of glutamate on glycolate synthesis, which was investigated in detail, was concentration- and time-dependent. Glycolate synthesis was inhibited about 40% by treating leaf discs with 30 mM glutamate, and the inhibition continued for more than 4 hours after the glutamate solution was removed.The glutamate inhibition of glycolate synthesis was accompanied by a marked decrease in the rate of photorespiratory CO(2) release and by maximal increases of about 25% in net photosynthetic CO(2) fixation. The products of (14)CO(2) fixation in leaf discs previously treated with glutamate showed a decrease in glycine (26%), serine (12%), and the stronger acids (18%), and an increase in the neutral compounds (26%) in comparison with discs floated only on water.Data are presented which question whether a catabolite of glutamate or the amino acid itself is responsible for the results observed. These experiments support the view that a genetic selection strategy based on the metabolic control of photorespiration would result in large increases in net photosynthetic CO(2) assimilation in species with high rates of photorespiration.

摘要

进行了实验以鉴定和描述烟草叶片组织中的控制机制,这些机制可降低光呼吸 CO2 释放的相对贡献,从而增加净光合 CO2 固定。向照光的叶圆片提供了许多代谢物,并测量了它们对抑制甘氨酸合成的影响。在α-羟基-2-吡啶甲烷磺酸存在下,先前在 30mM 的 L-谷氨酸、L-天冬氨酸、磷酸烯醇丙酮酸或乙醛酸溶液中漂浮的叶圆片中甘氨酸的积累受到抑制。详细研究了谷氨酸对甘氨酸合成的影响,该影响是浓度和时间依赖性的。用 30mM 谷氨酸处理叶圆片可抑制甘氨酸合成约 40%,并且在除去谷氨酸溶液后,抑制作用持续超过 4 小时。谷氨酸对甘氨酸合成的抑制伴随着光呼吸 CO2 释放速率的显著降低和净光合 CO2 固定的最大增加约 25%。先前用谷氨酸处理的叶圆片中(14)CO2 固定产物显示出甘氨酸(26%)、丝氨酸(12%)和强酸(18%)减少,而中性化合物(26%)增加,与仅在水上漂浮的圆片相比。提出的数据质疑是谷氨酸的代谢产物还是氨基酸本身负责观察到的结果。这些实验支持这样一种观点,即基于光呼吸代谢控制的遗传选择策略将导致具有高光呼吸速率的物种的净光合 CO2 同化率大幅增加。