Glycollate Excretion by N2-fixing Cyanobacteria Treated With Photorespiratory Inhibitors

Birgitta Bergman , Geoffrey A. Codd , Lars Hällbom
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引用次数: 15

Abstract

We have examined the effects of various inhibitors of glycollate metabolism on glycollate excretion, photosynthetic CO2 assimilation and N2 fixation by cyanobacteria. α-HPMS (α-hydroxy-α(2-pyridyl)-methane sulphonate) increased the rate of glycollate excretion by Anabaena cylindrica considerably, but also inhibited net CO2 photoassimilation and N2 fixation. α-HPMS inhibted glycollate dehydrogenase in A. cylindrica extracts but did not affect ribulose bisphosphate carboxylase or phosphoglycollate phosphatase activities. Diamox (5 acetamido-1,3,5-thiadizaole-S-sulphonamide) also stimulated glycollate excretion, inhibited CO2 fixation and caused a low inhibition of N2 fixation. INH (isonicotinic acid hydrazide) enhanced glycollate excretion by A. cylindrica, suggesting the metabolism of glycollate via the glycineserine pathway, but again inhibited CO2 fixation and N2 fixation. Glyoxylate also stimulated glycollate excretion by A. cylindrica, Anabaena variabilis and Nostoc muscorum. The data are discussed in terms of the specificity of glycollate metabolism inhibitors in cyanobacteria and the regulation of glycollate metabolism in these organisms.

光呼吸抑制剂处理下固氮蓝藻的甘酸盐排泄
我们研究了各种糖酸盐代谢抑制剂对蓝藻糖酸盐排泄、光合CO2同化和N2固定的影响。α-HPMS (α-羟基-α(2-吡啶基)-甲烷磺酸盐)显著提高了水藻的乙醇酸排泄率,但也抑制了CO2光同化和N2固定。α-HPMS对白茅提取物中乙醇酸脱氢酶有抑制作用,但对二磷酸核酮糖羧化酶和磷酸乙醇酸磷酸酶活性没有影响。Diamox(5 -乙酰氨基-1,3,5-噻二唑-s -磺胺)也能刺激glycollate排泄,抑制CO2固定,对N2固定的抑制作用较低。异烟酸肼(INH)增强了白柱胞内乙醇酸的分泌,表明乙醇酸是通过甘氨酸途径代谢的,但同样抑制了CO2和N2的固定。乙醛酸盐还能刺激白茅单胞菌、变水霉和念珠菌分泌乙醇酸盐。这些数据讨论了在蓝藻中糖酸代谢抑制剂的特异性和这些生物体中糖酸代谢的调节。
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