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81.
Biological soil crusts composed of cyanobacteria, green algae, bryophytes, and lichens colonize soils in arid and semiarid
ecosystems worldwide and are responsible for significant N input to the soils of these ecosystems. Soil crusts also colonize
active sand dunes in more humid regions, but studies of structure and function of such sand dune crusts are lacking. We identified
the cyanobacterial, algal, and bryophytic constituents and N production and leachates of biological soil crusts that colonize
beach dunes at the Indiana Dunes National Lakeshore along southern Lake Michigan in Indiana, USA. To determine the role of
these crusts in this system, we conducted a greenhouse experiment in which intact soil cores with biological crusts were subjected
to artificial rainfall over a full growing season. The volume and N content of leachate from the cores were quantified in
relation to degree of crust development, taxonomic composition, rainfall volume and intensity, light intensity, and the presence
of plant litter. Net N throughput significantly exceeded N inputs to cores in rainwater. Net N outputs from crusts to subsurface
soil ranged from 0. 01 to 0.19 g NH
4
+
-N m−2 yr−1 and 0.01 to 0.61 g NO
3
–
N m−2 yr−1. Thus, total inorganic N inputs associated with biological soil crusts ranged from 0.02 g N m−2 yr−1 to 0.8 g N m−2 yr−1. High volume (≥2 cm) rainfall resulted in more N leaching than low volume events, and plant litter added over the surface
of crusted soil cores significantly increased the amount of N in leachate. Exploratory path analysis revealed direct and indirect
linkages among environmental factors, crust development, and crust composition in regulating the throughput of H2O and N from these intact soil cores. Biological soil crusts at this site, combined with other properties of the soil surface,
substantially increase N inputs to this water- and nutrient-limited sand dune ecosystem. 相似文献
82.
83.
The photosynthetic performance of a helical tubular photobioreactor ("Biocoil"), incorporating the filamentous cyanobacterium Spirulina platensis, was investigated. The photobioreactor was constructed in a cylindrical shape (0.9 m high) with a 0.25-m(2)basal area and a photostage comprising 60 m of transparent PVC tubing of 1.6-cm inner diameter (volume = 12.1 L). The inner surface of the cylinder (area = 1.32 m(2)) was illuminated with cool white fluorescent lamps; the energy input of photosynthetically active radiation(PAR, 400 to 700 nm) into the photobioreactor was 2920 kJ per day. An air-lift system ncorporating 4%CO(2) was used to circulate the growth medium in the tubing. The maximum productivity achieved in batch culture was 7.18 g dry biomass per day [0.51 g . d biomass/L . day, or 5.44 g . d biomass/m(2)(inner surface of cylindrical shape)/day] which corresponded to a photosynthetic (PAR) efficiency of 5.45%. The CO(2) was efficiently removed from the gaseous stream; monitoring the CO(2) the outlet and inlet gas streams showed a 70% removal of CO(2) from the inlet gas over an 8-h period with almost maximum growth rate. (c) 1995 John Wiley & Sons, Inc. 相似文献
84.
Corrado Fogher Ilona Dusha∗ Patricia Barbot Claudine Elmerich∗ 《FEMS microbiology letters》1985,30(1-2):245-249
Abstract Probes containing the nod and hsn regions of Rhizobium meliloti and the fixABC genes of Rhizobium japonicum were used to perform hybridization experiments with endonuclease-restricted DNA from Azospirillum brasilense strains and 2 Azospirillum lipoferum strains. Homology to nod, hsn and fixA was found in the 4 Azospirillum strains. 相似文献
85.
The effect of two Bradyrhizobium japonicum strains (D344 and Urbana), on the frequency and intensity of infection by a VAM fungal Glomus sp. and the effect of VAM on biomass production by nodulating plants were tested in soybean growing in a soil containing low levels of accessible P and N. During the initial stage of vegetative growth, mycorrhiza frequency in roots inoculated with the two rhizobial strains did not differ. However, during flowering it was 178% higher in roots with the strain D344 than in the presence of the strain Ubrana. At final harvest (green pods) the VAM frequency did not differ in the presence of either strain. VAM positively affected biomass production, foliar concentrations of P, Zn and Cu, and number and dry matter yield of pods, but did not increase concentrations of total N and K. In nonmycorrhizal plants total nitrogenase activity (not nodule mass) and growth were higher with the rhizobial strain Urbana. The greatest nitrogenase activity, growth and yield occurred in the presence of the VAM fungus, and did not differ for plants with different strains of rhizobia. 相似文献
86.
The [2Fe-2S] protein from Azotobacter vinelandii that was previously known as iron-sulfur protein I, or Shethna protein I, has been shown to be encoded by a gene belonging
to the major nif gene cluster. Overexpression of this gene in Escherichia coli yielded a dimeric protein of which each subunit comprises 106 residues and contains one [2Fe-2S] cluster. The sequence of
this protein is very similar to that of the [2Fe-2S] ferredoxin from Clostridium pasteurianum (2FeCpFd), and the four cysteine ligands of the [2Fe-2S] cluster occur in the same positions. The A. vinelandii protein differs from the C. pasteurianum one by the absence of the N-terminal methionine, the presence of a five-residue C-terminal extension, and a lesser number
of acidic and polar residues. The UV-visible absorption and EPR spectra, as well as the redox potentials of the two proteins,
are nearly identical. These data show that the A. vinelandii FeS protein I, which is therefore proposed to be designated 2FeAvFdI, is the counterpart of the [2Fe-2S] ferredoxin from C. pasteurianum. The occurrence of the 2FeAvFdI-encoding gene in the nif gene cluster, together with the previous demonstration of a specific interaction between the 2FeCpFd and the nitrogenase MoFe protein, suggest that both proteins might be involved in nitrogen fixation, with possibly similar
roles.
Received: 21 December 1998 / Accepted: 1 March 1999 相似文献
87.
S. Niemann Tanja Dammann-Kalinowski Anja Nagel Alfred Pühler W. Selbitschka 《Archives of microbiology》1999,172(1):22-30
The enterobacterial repetitive intergenic consensus (ERIC)-PCR method was employed to generate genomic amplification products
of Sinorhizobium meliloti strain 2011. Eleven distinctive PCR fragments obtained in PCR reactions by using the ERIC2 primer were cloned and their partial
or complete nucleotide sequences established. DNA sequences that extended past the ERIC2 primer region were not conserved
among the 11 PCR fragments and showed no sequence similarity to the enterobacterial ERIC consensus sequence. Thus, repetitive
ERIC or ERIC-like sequences seem not to be an integral part of the S. meliloti genome. An amplification product of S. meliloti 2011 was identified which was present in S. meliloti strains but absent in other rhizobial species. Based on the nucleotide sequence information, a pair of PCR primers was designed
and used for PCR amplification of sequences of S. meliloti laboratory strains 2011, L5–30, AK631 and 102F34. Nucleotide sequence analysis of the amplification products revealed a 100%
DNA sequence conservation. Database searches showed that the DNA fragment putatively encodes the C-terminal part of a protein
displaying similarity to 2-hydroxyacid dehydrogenases of various organisms. The newly designed PCR primers should be useful
for the rapid identification of S. meliloti isolates.
Received: 17 February 1999 / Accepted: 9 April 1999 相似文献
88.
A serendipic observation at the Hopkins Marine Station of Stanford University in 1948 led to the discovery that anoxygenic photosynthetic bacteria can fix molecular nitrogen. To confirm the discovery, an unusual collaborative event was arranged between laboratories at Washington University (St. Louis) and the University of Wisconsin (Madison). 相似文献
89.
为探究燕麦(Avena sativa)-绿豆(Phaseolus radiatus)间作效应及氮素转移特性, 在不施氮肥的大田试验条件下, 设置3种种植模式(燕麦单作、绿豆单作和燕麦-绿豆间作), 采用传统挖根法和15N同位素标记法进行研究。结果表明, 间作系统中燕麦侵袭力强于绿豆, 绿豆生长受到抑制。整个生育期, 间作燕麦地上部干物质积累量比单作增加14.9%-33.1%, 2年成熟期间作燕麦的氮素积累量比单作分别提高53.1%和44.8%; 间作减少了开花结荚期绿豆氮素积累量和根瘤重量, 降低了绿豆的固氮效率, 绿豆的固氮效率2年平均降低23.7%, 生物固氮量平均减少11.66%。间作绿豆向燕麦的氮素转移率2年平均值达31.7%, 氮素转移量为212.16 kg∙hm-2。燕麦-绿豆间作降低了开花结荚期绿豆的根瘤固氮酶活性和固氮效率, 但绿豆体内氮素转移增加了燕麦对氮素的吸收利用, 实现了地上部与地下部生长的相互调节和促进, 优化了农田生态系统的氮素管理。 相似文献
90.
目的:探讨人工关节置换与加压螺钉内固定治疗高龄骨质疏松性股骨颈骨折的疗效。方法:选取2010年8月至2013年3月我院收治的120例高龄骨质疏松性股骨颈骨折患者,将所有患者随机分为人工置换组和内固定组两组,每组各60例,内固定组采用加压螺钉内固定术治疗,人工置换组采取人工关节置换术治疗,评定两组患者的手术时间、术中出血量、下地时间、术后并发症发生率及末次随访时Harris评分优良率。结果:人工置换组手术时间及术中出血量分别为(124.8±16.7)min、(369.2±99.7)ml,明显高于内固定组的(73.5±15.1)min、(78.4±25.6)ml;但人工置换组术后下地时间为(15.3±4.8)d,明显低于内固定组的(40.2±7.5)d;人工置换组与内固定组患者术后并发症的发生率分别为20%、66.7%,人工置换组明显低于内固定组,其中,泌尿系褥疮的组间差异最为显著;末次随访时Harris评分优良率,相比于内固定组的61.67%,人工置换组为78.33%,明显偏高。差异有统计学意义(P0.05)。结论:加压螺钉内固定术和人工关节置换术在治疗高龄骨质疏松性股骨颈骨折方面各有优劣,对于能够耐受人工关节置手术且经济条件好的的老年患者而言,采用人工关节置换术治疗,疗效更佳。 相似文献