首页> 外文会议>NATO Advanced Research Workshop on The Black Sea : Strategy for Addressing its Energy Resource Development and Hydrogen Energy Problems >The Effect of Various Metal Ions on Bio-hydrogen Production and F_0F_1-ATPase Activity of Rhodobacter Sphaeroides
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The Effect of Various Metal Ions on Bio-hydrogen Production and F_0F_1-ATPase Activity of Rhodobacter Sphaeroides

机译:各种金属离子对乳菌乳菌生物氢生产和F_0F_1-ATP酶活性的影响

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The important aspect in regulation of bio-hydrogen (H_2) production by purple bacteria and its energetics is the requirement of the F_0F_1-ATPase, the main membrane mechanism generating proton motive force. Rhodobacter sphaeroides MDC 6521 (isolated from Arzni mineral springs in Armenia) is able to produce H2 in anaerobic conditions under illumination in the presence of various metal ions. In order to examine the mediatory role of the F_0F_1-ATPase in H_2 production, the effects of various metal ions (Mn~(2+), Mg~(2+), Fe~(2+), Ni~(2+), and Mo~(6+)) on N,N'- dicyclohexylcarbodiimide inhibited ATPase activity of R. sphaeroides membrane vesicles were investigated. These ions in appropriate concentrations considerably enhanced H_2 production. But the latter was not observed in the absence of Fe~(2+), indicating the requirement of Fe~(2+). The R. sphaeroides membrane vesicles demonstrated significant ATPase activity. The absence of Fe~(2+) caused to marked inhibition (~80 %) in ATPase activity. In the presence of Fe~(2+) (80 μM) and Mo~(6+) (16 μM) a higher ATPase activity was observed. These results indicate a relationship between H_2 production and the F_0F_1-ATPase activity that might be an important pathway to regulate bacterial activity under anaerobic conditions and provide novel evidence on responsibility of F_0F_1 in H_2 production by R. sphaeroides.
机译:通过紫色细菌的生物氢气(H_2)产生的重要方面是紫色细菌的生产是F_0F_1-ATP酶的要求,主要膜机构产生质子动力。乳头杆菌MDC 6521(从亚美尼亚中的Arzni矿泉隔离)能够在各种金属离子存在下在照明下的厌氧条件下生产H2。为了检查H_2生产中F_0F_1-ATP酶的介质作用,各种金属离子(Mn〜(2+),Mg〜(2+),Fe〜(2+),Ni〜(2+)的影响[N,N'-二环己基碳二亚胺的Mo〜(6+))研究了R.Sphaeroides膜囊泡的ATP酶活性。这些离子在适当的浓度下显着增强了H_2的生产。但在没有Fe〜(2+)的情况下未观察到后者,表明Fe〜(2+)的要求。 R. Sphaeroides膜囊泡表现出显着的ATP酶活性。没有Fe〜(2+)在ATP酶活性中显着抑制(〜80%)。在Fe〜(2+)(80μm)和mo〜(6+)(16μm)的存在下观察到较高的ATP酶活性。这些结果表明了H_2生产和F_0F_1-ATP酶活性之间的关系,这可能是调节厌氧条件下细菌活性的重要途径,并为R. Sphaeroides提供关于H_2生产中F_0F_1的责任的新迹证。

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