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The nucleotide sequence of the 5S rRNA from Spiroplasma species BC3 and Mycoplasma mycoides sp. capri PG3.

Using in vitro labelling techniques, the complete nucleotide sequence of the 5S ribosomal RNAs isolated from the honeybee pathogen, Spiroplasma species BC3 and Mycoplasma mycoides sp. capri PG3, have been determined. The latter shows only 3 differences from the reported sequence of M. capricolum 5S rRNA, indicating that these two species are very closely related. The Spiroplasma sequence is also 107 nucleotides long and a comparative analysis of the sequence confirms that this Spiroplasma species is closely related to the Mycoplasma species and that they and the Gram-positive eubacteria have descended from a common ancestor and in the process the cell wall-less organisms have lost a large percentage of their genome.

Base Sequence↗

Cloning, characterization, and expression in Escherichia coli of the gene coding for the CpG DNA methylase from Spiroplasma sp. strain MQ1(M.SssI).

We describe here the cloning, characterization and expression in E. coli of the gene coding for a DNA methylase from Spiroplasma sp. strain MQ1 (M.SssI). This enzyme methylates completely and exclusively CpG sequences. The Spiroplasma gene was transcribed in E. coli using its own promoter. Translation of the entire message required the use of an opal suppressor, suggesting that UGA triplets code for tryptophan in Spiroplasma. Sequence analysis of the gene revealed several UGA triplets, in a 1158 bp long open reading frame. The deduced amino acid sequence revealed in M.SssI all common domains characteristic of bacterial cytosine DNA methylases. The putative sequence recognition domain of M.SssI showed no obvious similarities with that of the mouse DNA methylase, in spite of their common sequence specificity. The cloned enzyme methylated exclusively CpG sequences both in vivo and in vitro. In contrast to the mammalian enzyme which is primarily a maintenance methylase, M.SssI displayed de novo methylase activity, characteristic of prokaryotic cytosine DNA methylases.

Amino Acid Sequence↗

A physical and genetic map of the Spiroplasma citri genome.

A physical and genetic map of the Spiroplasma citri genome has been constructed using several restriction enzymes and pulsed field gel electrophoresis. A number of genes were subsequently localized on the map by the use of appropriate probes. The genome size of the spiroplasma estimated from restriction fragments is close to 1780 kbp, the largest of all Mollicutes studied so far. It contains multisite insertions of Spiroplasma virus 1 (SpV1) sequences. The physical and genetic map of the S. citri genome shares several features with that of other Mollicutes, especially those in the Mycoplasma mycoides cluster. This supports the finding that S. citri and these Mycoplasma spp. are phylogenetically related.

Bacteriophages↗

Fructose utilization and phytopathogenicity of Spiroplasma citri.

Spiroplasma citri is a plant-pathogenic mollicute. Recently, the so-called nonphytopathogenic S. citri mutant GMT 553 was obtained by insertion of transposon Tn4001 into the first gene of the fructose operon. Additional fructose operon mutants were produced either by gene disruption or selection of spontaneous xylitol-resistant strains. The behavior of these spiroplasma mutants in the periwinkle plants has been studied. Plants infected via leafhoppers with the wild-type strain GII-3 began to show symptoms during the first week following the insect-transmission period, and the symptoms rapidly became severe. With the fructose operon mutants, symptoms appeared only during the fourth week and remained mild, except when reversion to a fructose+ phenotype occurred. In this case, the fructose+ revertants quickly overtook the fructose- mutants and the symptoms soon became severe. When mutant GMT 553 was complemented with the fructose operon genes that restore fructose utilization, severe pathogenicity, similar to that of the wild-type strain, was also restored. Finally, plants infected with the wild-type strain and grown at 23 degrees C instead of 30 degrees C showed late symptoms, but these rapidly became severe. These results are discussed in light of the role of fructose in plants. Fructose utilization by the spiroplasmas could impair sucrose loading into the sieve tubes by the companion cells and result in accumulation of carbohydrates in source leaves and depletion of carbon sources in sink tissues.

Animals↗

Heterogeneity of genome sizes within the genus Spiroplasma.

Organisms belonging to the genus Spiroplasma are currently classified into 23 groups, 17 of which have been assigned species epithets. We determined the genome sizes of representatives of 20 groups by using pulsed-field gel electrophoresis. Each genome size was deduced from the mobility of linear nonrestricted DNA, as well as from the sum of the sizes of restriction fragments obtained after digestion with NotI, a restriction endonuclease with a limited number of restriction sites in spiroplasma DNA. The values which we obtained indicated that the genome sizes of members of the genus Spiroplasma range from 940 to 2,220 kbp.

Genome, Bacterial↗

Spiroplasma syrphidicola sp. nov., from a syrphid fly (Diptera: Syrphidae).

Spiroplasma sp. strain EA-1(T) (T = type strain) (subgroup VIII-1), which was isolated from the syrphid fly Eristalis arbustorum, was serologically distinct from other spiroplasma species, groups, and subgroups, The cells of this strain, as revealed by dark-field light microscopy, were short, helical, and motile. An electron microscopic examination revealed wall-less cells delimited by a single membrane. The unusually short cells passed through 220-nm filter pores with no reduction in titer. The organisms grew well in SM-1, M1D, and SP-4 liquid media. Growth also occurred in conventional horse serum medium and 1% serum fraction medium. Strain EA-1(T) grew at temperatures between 10 and 41 degrees C, and optimum growth occurred at 32 degrees C. The doubling time at the optimal temperature was 1.0 h. The strain catabolized glucose and hydrolyzed arginine but did not hydrolyze urea. The guanine-plus-cytosine content of the DNA was 30 +/- 1 mol%. The genome size was about 1,230 kbp. Strain Ea-1 (= ATCC 33826), which represents subgroup VIII-1, is designated the type strain of a new species, Spiroplasma syrphidicola.

Animals↗

Spiroplasma corruscae sp. nov., from a firefly beetle (Coleoptera: Lampyridae) and tabanid flies (Diptera: Tabanidae).

Spiroplasma strain EC-1T (T = type strain), which was isolated from the gut of a lampyrid beetle (Ellychnia corrusca) in Maryland, was serologically distinct from other spiroplasma species and groups. Similar strains were obtained from other E. corrusca specimens, and, later, numerous isolates of similar or partially related strains were obtained from several species of tabanid files. Cells of strain EC-1T were helical, motile filaments that were bound by a single cytoplasmic membrane, and there was no evidence of a cell wall. The cells were filterable through 220-nm-pore-size membrane filters but not through 100-nm-pore-size membrane filters. The organism was absolutely resistant to penicillin (1,000 U/ml) and required sterol for growth. Strain EC-1T grew well in M1D and SP-4 liquid media and could be cultivated in the Edward formulation of conventional mycoplasma medium and in 1% serum fraction medium. Optimal growth occurred at 32 degrees C (doubling time, 1.5 h). Strain EC-1T multiplied at 10 to 41 degrees C, but not at 5 or 43 degrees C. This organism produced acid from glucose, but did not hydrolyze arginine or utilize urea. The guanine-plus-cytosine content of the DNA was determined to be 26.3 mol% by the melting temperature method and 27.0 mol% by the buoyant density method. As a result of our studies, strain EC-1 (= ATCC 43212) is designated the type strain of a new species, Spiroplasma corruscae.

Animals↗

Spiroplasma lineolae sp. nov., from the horsefly Tabanus lineola (Diptera: Tabanidae).

Spiroplasma strain TALS-2T from the viscera of the striped horsefly, Tabanus lineola, collected in Georgia was serologically distinct from other Spiroplasma species, groups, putative groups, and subgroups. Light and electron microscopy of cells of strain TALS-2T revealed helical motile cells surrounded only by a single cytoplasmic membrane. The organism grew in M1D and SP-4 liquid media. Growth also occurred in 1% serum fraction medium and in conventional horse serum medium. Growth in liquid media was serum dependent. The strain passed through 220-nm filter pores, but was retained in filters with 100-nm pores. The optimum temperature for growth was 30 degrees C. Multiplication occurred at temperatures from 20 to 37 degrees C, with a doubling time at the optimum temperature of 5.6 h in M1D broth. Strain TALS-2T catabolized glucose but hydrolyzed neither arginine nor urea. The guanine-plus-cytosine content of the DNA was 25 +/- 1 mol%. The genome size was 1,390 kbp. Six isolates serologically similar to strain TALS-2T were obtained from the same host in coastal Georgia. Three strains closely related to strain TALS-2T were isolated from the horsefly Poeciloderas quadripunctatus in Costa Rica. Strain TALS-2T (= ATCC 51749), a representative of group XXVII, is designated the type strain of a new species, Spiroplasma lineolae (Mollicutes: Entomoplasmatales).

Animals↗

Spiroplasma penaei sp. nov., associated with mortalities in Penaeus vannamei, Pacific white shrimp.

A new bacterial strain, designated SHRIMP(T), isolated from the haemolymph of the Pacific white shrimp, Penaeus vannamei, was serologically distinct from other spiroplasmas. Cells of this strain were helical in form and variable in length. Examination by electron microscopy revealed wall-less cells delineated by a single cytoplasmic membrane. The organisms grew well in M1D media supplemented with 2 % NaCl. Strain SHRIMP(T) grew at temperatures of 20-37 degrees C, with optimum growth occurring at 28 degrees C. The strain catabolized glucose and hydrolysed arginine, but did not hydrolyse urea. The G+C content of the DNA was 29 +/-1 mol%. Strain SHRIMP(T) (=ATCC BAA-1082T=CAIM 1252T) is designated the type strain of a novel species, Spiroplasma penaei sp. nov., which represents a new subgroup (I-9) of the group I spiroplasmas.

Animals↗

A defined medium for a fastidious Spiroplasma.

A defined medium (H-1) was developed for cultivation of the suckling mouse cataract agent, Spiroplasma mirum, a fastidious member of the class Mollicutes that causes cataracts and chronic brain infection in inoculated neonate mice. The H-1 medium was used to show the importance of sphingomyelin as a growth factor for the culture of the spiroplasma in vitro. The growth of Spiroplasma mirum and the pathology it induces in sphingomyelin-rich tissues in vivo may be related to this dependency.

Animals↗

Pathogenic mycoplasmas: cultivation and vertebrate pathogenicity of a new spiroplasma.

A spiroplasma recovered from allantoic fluids of chick embryos infected with the tick-derived suckling mouse cataract agent was grown in continuous passage on a new artificial culture medium. The cultured organisms induced typical ocular and other disease symptoms in susceptible animals, and were reisolated from involved host tissues. Although spiroplasmas have been previously recognized as plant and insect pathogens, this is the first spiroplasma shown to multiply at 37 degrees C and to be pathogenic for vertebrates.

Animals↗

Pathogenicity of Spiroplasma sp. strain SMCA in Syrian hamsters: clinical, microbiological, and histological aspects.

The intracerebral inoculation of newborn Syrian hamsters with pure cultures of Spiroplasma sp. strain SMCA caused severe, prolonged disease involving the central nervous system, culminating in death. The disease was characterized by spasms, muscular tremors, disturbances in motor control, inability to feed, dramatic loss of weight, and runting. The effect ws dose related, with the largest numbers of viable spiroplasmas producing the highest incidence of disease and death in the shortest period of time. Severe hemorrhaging developed throughout the brain, liver, and spleen, and spiroplasmas were readily recovered from these organs, indicating that the agent disseminated from the initial site of infection to distant host tissues. Newborn animals were susceptible, but adults were resistant; these findings are similar to those reported for newborn mice and rats. Unlike mice and rats, hamsters did not develop cataracts visible to the unaided eye. The histopathological features of eye disease in hamsters were different from those in rats and were characterized by microophthalmia (especially in runted hamsters) and abnormal proliferation, disorientation, and disorganization of corneal, lens, and retinal tissues. The significance of these findings is discussed.

Animals↗

Morphology and ultrastructure of helical and nonhelical strains of Spiroplasma citri.

Cells of the nonhelical strain of Spiroplasma citri underwent changes of morphology comparable to those which occurred in the normal helical strain. Cells of the nonhelical strain had the same ultrastructural features as helical cells and released long flexible fibrils similar to those seen in other spiroplasmas. Nonhelical organisms showed an increased tendency to aggregate, forming cell clusters of an unusual annular form. The cytoplasmic membrane of the nonhelical strain lacked a single protein present in all helical strains. Loss of helicity associated with the senescence of spiroplasma cells was not accompanied by the disappearance of this protein. Differences in colony morphology were shown to be a consequence of motility, and a technique was developed which facilitated the identification of nonmotile organisms.

Bacterial Proteins↗

Covalently closed circular deoxyribonucleic acids in spiroplasmas.

Ten of twelve spiroplasma strains from different sources carried multiple covalently closed circular duplex deoxyribonucleic acid molecules, as shown by ethidium bromide-cesium chloride gradient centrifugation of cell lysates and examination of resulting bands by electron microscopy and agarose gel electrophoresis. Two to eight size classes per strain, comprising molecules of masses from 1 X 10(6) to 26 X 10(6), were detected. Several size classes of molecules were found in common in different spiroplasma strains. The amount of covalently closed circular deoxyribonucleic acid per strain was as much as 12% of total cellular deoxyribonucleic acid. The presence of sizes of the circular molecules appeared unrelated to either carriage or active production of known spiroplasma viruses, and it is tentatively concluded that they are plasmids rather than genomes or replicative forms of viruses.

Centrifugation, Density Gradient↗

Characterization of a promoter and a transcription terminator of Spiroplasma melliferum virus SpV4.

Spiroplasma virus 4 (SpV4) is an isometric virus with single-stranded, circular DNA infecting the helical mollicute Spiroplasma melliferum, a honeybee pathogen. Previous studies in our laboratory led to the determination of the base sequence of the SpV4 DNA. Nine open reading frames and three promoterlike sequences (P1, P2, and P3) were identified. An inverted repeat leading to the formation of a hairpin structure on the transcription product was also found and predicted to be a transcription terminator (T). We have now studied the in vivo transcription of the SpV4 genome by Northern (RNA) blot analysis of the total RNAs extracted from SpV4-infected spiroplasma cells. Transcripts of 7.8, 4.4, 3.4, and 2.7 kilobases (kb) were detected. The 3.4-kb RNA was the major transcript. The 5' and 3' ends of this transcript were determined by S1 mapping and primer extension. Characterization of the 3' end by S1 mapping showed that the 3.4-kb transcript terminates within the stretch of uridine residues following the hairpin structure of terminator T. Characterization of the 5' end by S1 mapping indicated that transcription proceeds from a newly recognized promoter, P0, located 36 nucleotides upstream of P1. Primer extension resulted in two cDNA signals. The short cDNA was probably a primer extension artifact due to the presence of a hairpin structure on the transcript. When reverse transcriptase stopped at this hairpin or read through, the short or the long cDNA, respectively, was obtained. The size of the long cDNA identified P0 as the transcription promoter. Promoter P0 was also shown to be functional in Escherichia coli. Indeed, when inserted upstream of the chloramphenicol acetyltransferase gene of a promoter selection vector, it promoted transcription of this gene. As in the case of S. melliferum, two cDNAs were obtained by primer extension, the longer cDNA identifying P0 as the promoter.

Bacteriophages↗

[Distribution of cytoplasmically inherited bacteria Spiroplasma causing female bias in the Eurasian populations of Adalia bipunctata].

Two-spot ladybirds Adalia bipunctata were collected from the populations of Western and Eastern Europe and Central Asia. The agent killing males at the early embryonic stage in these populations was identified as bacteria of the genus Spiroplasma. Bacteria found in A. bipunctata proved to be phylogenetically related to Spiroplasma ixodetis (typical line Y-32) found in tick Ixodes pacificus but not to Spiroplasma causing the death of male embryos in Drosophila.

Animals↗

[Pathogenicity of Spiroplasma sabaudiense (mollicute) for the cells (c6/36) of Aedes albopictus (Insecta: Diptera) in vitro].

An initial stock of Spiroplasma sabaudiense had been maintained in cell-free medium for 2-3 years. Subsequent passages in Leibovitz's medium L-15 in the presence of Aedes albopictus (C6/36) cells dramatically increased the pathogenicity of S. sabaudiense towards these cells. Cytopathogenicity included production of syncytia, an increase in the number of mitochondria and alteration of their morphology, vacuolisation and a reduction in the rate of growth. Cell lysis was associated with cytadsorption by spiroplasmas and was apparent following the third passage. At six days post-inoculation during the fourth and fifth passages, cell cultures had been totally destroyed by S. sabaudiense. The intra-cellular stage of S. sabaudiense is described and the literature pertaining to the pathogenicity of spiroplasmas for insects is reviewed.

Aedes↗

Cell-assisted culture of fastidious spiroplasmas: initial analysis of growth factors.

Half of the spiroplasmas observed microscopically in insects cannot be cultivated and are thus inaccessible to study. Media mixed with cultured insect cells have now been used to isolate two of these spiroplasmas--the sex-ratio organism (SRO) of Drosophila and the Colorado potato beetle spiroplasma (CPBS). Studies described herein indicate that at least one of the cell-supplied factors is involved in redox maintenance. A wide variety of insect cell culture systems were suitable for primary isolation of the CPBS. The SRO and CPBS were found to attach to insect cells in vitro.

Anaerobiosis↗