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对地中海拟无枝菌酸菌U-32菌株的研究发现,像植物及真菌硝酸还原酶一样,地中海拟无枝菌酸菌U-32硝酸还原酶也是诱导酶,其合成受铵盐阻遏,受硝酸盐的诱导。氯霉素抑制实验的结果表明,该菌株硝酸还原酶的诱导涉及到蛋白质的新合成。钼和钨的竞争实验说明U-32菌株硝酸还原酶也为一钼酶。另外在离体实验中,发现硝酸还原酶活力受到KCN和NADH的抑制,但至今未能找到其生理电子供体。此外,U-32菌株硝酸还原酶也不表现类似于植物的黄递酶等组份酶活性。该菌株硝酸还原酶和其力复霉素产量有一定相关性,但两者确切的关系尚待研究。  相似文献   

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Reduction of nitrate to nitrite by particulate preparationsof Anabaena cylindrica was investigated. Preparations whichshowed high activity of nitrate reductase were obtained by sonication(preparation A) or acetone treatment (preparation B). The preparationA also showed a high activity of DPIP-ascorbate photooxidation.The nitrate reductase system accepted electrons from eitherreduced ferredoxin (preparation A & B) or NADH (preparationB), but not directly from NADPH. Ferredoxin was active whenreduced either by action of photochemical system I or by NADPHand NADP-reductase, but dithionite-reduced ferredoxin was completelyinactive. Ferredoxin could be replaced with methyl viologen,benzyl viologen and diquat. Reduced FMN and FAD could serveas electron donors, but the affinity of the reductase towardthese flavin compounds was very low. 1 This work was supported by grants from the Ministry of Education(4093 and 95612) and from the National Institutes of Health,U.S. (GM-11300).  相似文献   

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冯红  张义正   《微生物学通报》2000,27(5):341-345
将从杉木和大叶黄杨上分离获得的8个胶孢炭疽菌(Colletoctrichum gloeosporioides)分离物培养在含氯酸钾的平板上,得到快速生长抗氯酸钾的不利用硝酸盐的突变体(Nit)。所有的突变体经鉴定分属于3种表现型,即硝酸还原酶结构位点(nit1),硝酸盐同化途径的专化调节位点(nit3),和钼辅因位点(nitM)。分离物发生突变的频率随氯酸钾浓度的增加而提高,并且不同的氮源在一定程度上会影响突变表型种类。除CC3外,所有的分离物都是自身亲和的,即不同表型的突变体能遗传互补,其  相似文献   

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将3个抗多菌灵和2个野生敏感型禾谷镰孢霉(Fusarium graminearum)菌株分别在含氯酸盐的MMC培养基上培养,共得到22个不能利用硝酸盐的营养缺陷突变体(Nitrate nonutilizing mutant, 简称nit突变体)。比较了各nit突变体与其亲本菌株之间在菌落生长速率、培养性状、产分生孢子能力、产子囊壳能力以及对多菌灵的敏感性等生物学特性方面的变化。结果表明,nit突变体均抗氯酸盐,在PSA平板上的生长速率没有改变,有性生殖能力没有下降,在Joffs 培养液和5%绿豆汤培养液中仍能产孢,但产孢量与亲本菌株有差异。此外,禾谷镰孢霉对氯酸盐和多菌灵之间没有交互抗药性。因此,可用nit作为遗传标记,研究禾谷镰孢霉有关性状的遗传学。  相似文献   

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Ditylum brightwellii grown on NO2- as a nitrogen source took up and assimilated NO2- only in the light, apparently via a photosynthetic nitrite reductase. Assimilation was inhibited by dichlorophenyldimethylurea (DCMU), KCN, partially by 2,4 dinitrophenol, and by NO3-. Kinetics of inhibition of NO2- assimilation by NO3- appeared to be “competitive.” D. brightwellii cells grown on NO2- took up NO3- in both light and dark and in both cases the uptake was inhibited by p-chloromercuribenzoate, but not by DCMU, KCN, or by NO2-. Most of the NO3- taken up in the dark was recovered unchanged from the cells. However only 40% of NO3- taken up in light was recovered from the cells and no NO2- was found. This suggests that a photosynthetic nitrate reduction mechanism was active in these cells. DCMU inhibited the light-induced NO3- reduction. This mechanism of NO3- reduction is distinct from that involving NADH nitrate reductase in D. brightwellii since the concentration of the latter enzyme is very low in cells grown on NO2-. Saturation kinetics were observed for NO2- and NO3- uptake. Half-saturation concentrations (Ksvalues) were 4 and 2 μM, respectively. These values are compared with those obtained for NO2- and NO3- assimilation by other unicellular algae. The comparisons show lower Ksvalues in oceanic species compared with tide-pool or freshwater algae and they support the idea that Ksvalues for NO3- assimilation may provide a key to understanding species succession when this is due to declining: nitrate concentrations in the sea.  相似文献   

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THE INFLUENCE OF OXYGEN ON NITRATE AND NITRITE REDUCTION   总被引:5,自引:0,他引:5  
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粉绿狐尾藻和凤眼莲对不同形态氮吸收动力学研究   总被引:5,自引:0,他引:5  
采用改进常规耗竭法,研究了粉绿狐尾藻(Myriophyllum aquaticum)、凤眼莲(Eichhornia crassipes)在抑菌和非抑菌两种处理中对NO3-、NH4+吸收的动力学特征。结果表明:两种植物对NO3-和NH4+的最大吸收速率(Imax)和亲和力(1/Km)有显著差异,凤眼莲对NO3-、N H4+的吸收速率显著高于狐尾藻,说明凤眼莲更适宜用于污染水体养分的去除;不同植物对NO3-、NH4+表现出吸收偏好性,凤眼莲对NO3-有较高的Imax值和亲和力,而狐尾藻对NH4+有较高的Imax值和亲和力;抑菌处理能显著增加凤眼莲对NH4+的吸收速率,NO3-浓度高于1.00 mmol/L时,抑菌处理能显著减小凤眼莲对NO3-的吸收速率,狐尾藻对NO3-、N H4+的吸收未受到抑菌处理的显著影响。    相似文献   

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Although activity of the enzyme nitrate reductase (NR) can potentially be used to predict the rate of nitrate incorporation in field assemblages of marine phytoplankton, application of this index has met with little success because the relationship between the two rates is not well established under steady-state conditions. To provide a basis for using NR activity measurements, the relationships among NR activity, growth rate, cell composition, and nitrate incorporation rate were examined in cultures of Thalassiosira pseudonana (Hustedt)Hasle and Heimdal, growing a) under steady-state light limitation, b) during transitions between low and high irradiance (15 or 90 μmol quanta.m?2.s?1), and c) under steady-state nitrate limitation. Using a modified assay for NR involving additions of bovine serum albumin to stabilize enzyme activity, NR activity in light-limited cultures was positively and quantitatively related to calculated rates of nitrate incorporation, even in cultures that were apparently starved of selenium. During transitions in irradiance, growth rates acclimated to new conditions within 1 day; through the transition, the relationship between NR activity and nitrate incorporation rate remained quantitative. In nitrate-limited chemostat cultures, NR activity was positively correlated with growth rate and with nitrate incorporation rates, but the relationship was not quantitative. NR activity exceeded nitrate incorporation rates at lower growth rates (<25% of nutrient-replete growth rates), but chemostats operating at such low dilution rates may not represent ecologically relevant conditions for marine diatoms. The strong relationship between NR activity and nitrate incorporation provides support for the idea that NR is rate-limiting for nitrate incorporation or is closely coupled to the rate-limiting step. In an effort to determine a suitable variable for scaling NR activity, relationships between different cell components and growth rate were examined. These relationships differed depending on the limiting factor. For example, under light limitation, cell volume and cell carbon content increased significantly with increased growth rate, while under nitrate limitation cell volume and carbon content decreased as growth rates increased. Despite the differences found between cell composition and growth rate under light and nitrate limitation, the relationships between NR activity scaled to different compositional variables and growth rate did not differ between the limitations. In field situations where cell numbers are not easily determined, scaling NR activity to particulate nitrogen content may be the best alternative. These results establish a strong basis for pursuing NR activity measurements as indices of nitrate incorporation in the field.  相似文献   

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