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Topic:Rotavirus

Rotavirus is a significant viral pathogen affecting the equine population, particularly foals. It is a leading cause of infectious diarrhea in young horses, leading to dehydration and electrolyte imbalances. The virus is highly contagious and spreads through the fecal-oral route, emphasizing the importance of sanitation and biosecurity measures in equine facilities. Diagnosis is typically confirmed through laboratory tests such as ELISA or PCR to detect viral antigens or genetic material. Vaccination strategies are employed to mitigate the impact of rotavirus infections in foals. This page compiles peer-reviewed research studies and scholarly articles that explore the epidemiology, pathogenesis, clinical presentation, and management of rotavirus infections in horses.
Whole genomic analyses of equine group A rotaviruses from Japan: evidence for bovine-to-equine interspecies transmission and reassortment events.
Veterinary microbiology    July 26, 2013   Volume 166, Issue 3-4 474-485 doi: 10.1016/j.vetmic.2013.07.016
Ghosh S, Taniguchi K, Aida S, Ganesh B, Kobayashi N.Equine group A rotaviruses (RVA) are a major cause of severe diarrhea in foals. The whole genomes of only six common and three unusual equine RVA strains have been analyzed so far. To date, there are no reports on whole genomic analyses of equine RVAs from Asian countries. We report here the whole genomic analyses of three common (strains RVA/Horse-tc/JPN/BI/1981/G3P[12], RVA/Horse-tc/JPN/HH-22/1989/G3P[12] and RVA/Horse-tc/JPN/CH-3/1987/G14P[12]) and an unusual (RVA/Horse-tc/JPN/OH-4/1982/G6P[5]) equine RVA strains isolated from diarrheic foals in Japan. Strains BI, HH-22 and CH-3 shared a la...
Equine rotaviruses–current understanding and continuing challenges.
Veterinary microbiology    July 22, 2013   Volume 167, Issue 1-2 135-144 doi: 10.1016/j.vetmic.2013.07.010
Bailey KE, Gilkerson JR, Browning GF.Equine rotaviruses were first detected in foals over 30 years ago and remain a major cause of infectious diarrhoea in foals. During this time, there has been substantial progress in the development of sensitive methods to detect rotaviruses in foals, enabling surveillance of the genotypes present in various horse populations. However, there has been limited epidemiological investigation into the significance of these circulating genotypes, their correlation with disease and the use of vaccination in these animal populations. Our knowledge of the pathogenesis of rotavirus infection in foals is ...
Antibody response in vaccinated pregnant mares to recent G3BP[12] and G14P[12] equine rotaviruses.
Acta veterinaria Scandinavica    November 6, 2012   Volume 54, Issue 1 63 doi: 10.1186/1751-0147-54-63
Nemoto M, Tsunemitsu H, Murase H, Nambo Y, Sato S, Orita Y, Imagawa H, Bannai H, Tsujimura K, Yamanaka T, Matsumura T, Kondo T.Both the G3P[12] and the G14P[12] type of equine group A rotavirus (RVA) have recently become predominant in many countries, including Japan. G3 types are classified further into G3A and G3B. The G3A viruses have been circulating in Europe, Australia, and Argentina, and the G3B viruses have been circulating in Japan. However, only an inactivated vaccine containing a single G3BP[12] strain is commercially available in Japan. To assess the efficacy of the current vaccine against recently circulating equine RVA strains, we examined antibody responses in pregnant mares to recent G3BP[12] and G14P[...
Complete molecular genome analyses of equine rotavirus A strains from different continents reveal several novel genotypes and a largely conserved genotype constellation.
The Journal of general virology    December 21, 2011   Volume 93, Issue Pt 4 866-875 doi: 10.1099/vir.0.039255-0
Matthijnssens J, Miño S, Papp H, Potgieter C, Novo L, Heylen E, Zeller M, Garaicoechea L, Badaracco A, Lengyel G, Kisfali P, Cullinane A, Collins PJ....In this study, the complete genome sequences of seven equine group A rotavirus (RVA) strains (RVA/Horse-tc/GBR/L338/1991/G13P[18], RVA/Horse-wt/IRL/03V04954/2003/G3P[12] and RVA/Horse-wt/IRL/04V2024/2004/G14P[12] from Europe; RVA/Horse-wt/ARG/E30/1993/G3P[12], RVA/Horse-wt/ARG/E403/2006/G14P[12] and RVA/Horse-wt/ARG/E4040/2008/G14P[12] from Argentina; and RVA/Horse-wt/ZAF/EqRV-SA1/2006/G14P[12] from South Africa) were determined. Multiple novel genotypes were identified and genotype numbers were assigned by the Rotavirus Classification Working Group: R9 (VP1), C9 (VP2), N9 (NSP2), T12 (NSP3), ...
Molecular characterization and analysis of equine rotavirus circulating in Japan from 2003 to 2008.
Veterinary microbiology    April 22, 2011   Volume 152, Issue 1-2 67-73 doi: 10.1016/j.vetmic.2011.04.016
Nemoto M, Tsunemitsu H, Imagawa H, Hata H, Higuchi T, Sato S, Orita Y, Sugita S, Bannai H, Tsujimura K, Yamanaka T, Kondo T, Matsumura T.Using a total of 2018 fecal samples collected between 2003 and 2008 from foals with diarrhea, the molecular epidemiology of group A equine rotaviruses circulating in Japan was investigated by the reverse transcription-polymerase chain reaction (RT-PCR) typing and sequence analysis of the VP4 (P type) and VP7 (G type) genes. A total of 1149 samples showed positive reactions with RT-PCR, of which 462 samples (40.2%) were positive for G3 type, 502 samples (43.7%) were positive for G14 type, and 185 samples (16.1%) were positive for both G3 and G14 types. To examine P types, 59 G3 and 56 G14 posit...
Recurrent rotavirus diarrhoea outbreaks in a stud farm, in Italy.
Veterinary microbiology    November 9, 2010   Volume 149, Issue 1-2 248-253 doi: 10.1016/j.vetmic.2010.11.007
Monini M, Biasin A, Valentini S, Cattoli G, Ruggeri FM.A total of 47 stool samples were collected at the same stud farm from young foals with rotavirus diarrhoea and from their stud mares. Illness involved foals during three consecutive winter seasons. Infection in the farm appeared firstly in January-February 2008. After vanishing in the warm seasons, cases reappeared in March 2009 and 2010. Determination of the rotavirus G- and P-types was carried out using nested RT-PCR in samples collected in 2009 and 2010. A total of 19 of 47 samples resulted positive for rotavirus. The G type was determined in 19/47 samples, whereas the P genotype was determ...
Molecular characterization of equine rotaviruses circulating in Argentinean foals during a 17-year surveillance period (1992-2008).
Veterinary microbiology    September 8, 2010   Volume 148, Issue 2-4 150-160 doi: 10.1016/j.vetmic.2010.08.032
Garaicoechea L, Miño S, Ciarlet M, Fernández F, Barrandeguy M, Parreño V.P[12]G3 and P[12]G14 equine rotaviruses (ERVs) are epidemiologically important in horses. In Argentina, the prevalent ERV strains have been historically P[12]G3. The aim of this study was the detection and characterization of ERV strains circulating in foals in Argentina during a 17-year study (1992-2008). Additionally, the gene sequences of VP7, VP4 and NSP4 encoding genes of representative Argentinean ERV strains were determined and phylogenetic analyses were performed to elucidate the evolutionary relationships of the ERV strains in Argentina. ERVs were detected in 165 (21%) out of 771 diar...
Evaluation of rapid antigen detection kits for diagnosis of equine rotavirus infection.
The Journal of veterinary medical science    April 28, 2010   Volume 72, Issue 9 1247-1250 doi: 10.1292/jvms.10-0064
Nemoto M, Hata H, Higuchi T, Imagawa H, Yamanaka T, Niwa H, Bannai H, Tsujimura K, Kondo T, Matsumura T.We evaluated antigen detection kits for human rotavirus with regard to their usefulness for diagnosing equine rotavirus infection. Limiting dilution analyses showed that of the seven kits investigated the Dipstick `Eiken' Rota (Dipstick) had the highest sensitivity to two serotypes of equine rotavirus. The Dipstick did not cross-react with several equine intestinal pathogens. An investigation using 249 fecal samples indicated that the sensitivity of the Dipstick was 81.9% and 47.3%, and its specificity was 98.2% and 99.0%, and its concordance rate was 92.8% and 68.3%, compared with values obta...
Foal rotavirus – can we learn anything from calf scour?
Equine veterinary education    April 26, 2010   Volume 4, Issue 5 245-247 doi: 10.1111/j.2042-3292.1992.tb01630.x
Snodgrass DR.No abstract available
Detection of equine rotavirus by reverse transcription loop-mediated isothermal amplification (RT-LAMP).
The Journal of veterinary medical science    February 16, 2010   Volume 72, Issue 6 823-826 doi: 10.1292/jvms.09-0446
Nemoto M, Imagawa H, Tsujimura K, Yamanaka T, Kondo T, Matsumura T.Reverse transcription loop-mediated isothermal amplification (RT-LAMP) was applied to detection of equine rotavirus. Because equine rotavirus of the single P genotype, P[12], is predominant in the equine population worldwide, an RT-LAMP primer set was designed to target the genotype P[12] sequence and thus detect equine rotavirus. The detection limit of the RT-LAMP assay was 10(3) copies of viral RNA, whereas that of semi-nested RT-PCR for genotype P[12] was 10(5) copies. The RT-LAMP assay specifically amplified genotype P[12] but did not amplify the other P genotype strains. The RT-LAMP assay...
Rotavirus-associated diarrhoea in foals in Greece.
Veterinary microbiology    February 1, 2010   Volume 144, Issue 3-4 461-465 doi: 10.1016/j.vetmic.2010.01.020
Ntafis V, Fragkiadaki E, Xylouri E, Omirou A, Lavazza A, Martella V.Severe outbreaks of diarrhoeic syndrome occurred in young foals at the same stud farm during two consecutive breeding periods namely spring 2006 and 2007. Rotavirus-like particles were detected by electron microscopy in the faeces of the affected foals and group A rotavirus infection was confirmed by Reverse-Transcription (RT)-PCR with selected sets of rotavirus-specific primers. Sequence analysis of the genes encoding the outer capsid rotavirus proteins VP7 and VP4 enabled classification of the viruses as G3AP[12] and revealed that the viruses were highly similar to recently reported equine r...
Infectious agents detected in the feces of diarrheic foals: a retrospective study of 233 cases (2003-2008).
Journal of veterinary internal medicine    September 11, 2009   Volume 23, Issue 6 1254-1260 doi: 10.1111/j.1939-1676.2009.0383.x
Frederick J, Giguère S, Sanchez LC.Diarrhea is common in foals but there are no studies investigating the relative prevalence of common infectious agents in a population of hospitalized diarrheic foals. Objective: To determine the frequency of detection of infectious agents in a population of hospitalized foals with diarrhea and to determine if detection of specific pathogens is associated with age, outcome, or clinicopathologic data. Methods: Two hundred and thirty-three foals < or = 10 months of age with diarrhea examined at a referral institution. Methods: Retrospective case series. Each foal was examined for Salmonella s...
Diversity in Indian equine rotaviruses: identification of genotype G10,P6[1] and G1 strains and a new VP7 genotype (G16) strain in specimens from diarrheic foals in India.
Journal of clinical microbiology    July 7, 2007   Volume 45, Issue 7 2354 doi: 10.1128/JCM.00900-07
Gulati BR, Deepa R, Singh BK, Rao CD.No abstract available
Diversity in Indian equine rotaviruses: identification of genotype G10,P6[1] and G1 strains and a new VP7 genotype (G16) strain in specimens from diarrheic foals in India.
Journal of clinical microbiology    November 29, 2006   Volume 45, Issue 3 972-978 doi: 10.1128/JCM.01696-06
Gulati BR, Deepa R, Singh BK, Rao CD.Rotaviruses causing severe diarrhea in foals in two organized farms in northern India, during the period from 2003 to 2005, were characterized by electropherotyping, serotyping, and sequence analysis of the genes encoding the outer capsid proteins. Of 137 specimens, 47 (34.31%) were positive for rotavirus and exhibited at least five different electropherotypes (E), E1 to E5. Strains belonging to different electropherotypes exhibited either a different serotype/genotype specificity or a lack of reactivity to typing monoclonal antibodies (MAbs) used in this study. Strains belonging to E1, E2, an...
Molecular characterisation of equine group A rotavirus, Nasuno, isolated in Tochigi Prefecture, Japan.
Veterinary journal (London, England : 1997)    July 12, 2005   Volume 172, Issue 2 369-373 doi: 10.1016/j.tvjl.2005.05.004
Fukai K, Saito T, Fukuda O, Hagiwara A, Inoue K, Sato M.In this study, equine group A rotavirus (RV-A), Nasuno, isolated from foal diarrhoea in Tochigi Prefecture, Japan was characterised genetically by sequence analysis of the genome segments encoding VP4 and VP7. The nucleotide and deduced amino acid sequences revealed high homology with P[12] RV-As (94.0-99.3% and 94.9-99.4%) and G3 RV-As (86.9-99.5% and 91.1-99.4%). Nasuno was also classified into P[12] and G3 in the phylogenetic analysis of the nucleotide sequences of the genome segments encoding VP4 and VP7.
Molecular characterizations of human and animal group a rotaviruses in the Netherlands.
Journal of clinical microbiology    February 8, 2005   Volume 43, Issue 2 669-675 doi: 10.1128/JCM.43.2.669-675.2005
van der Heide R, Koopmans MP, Shekary N, Houwers DJ, van Duynhoven YT, van der Poel WH.To gain more insight into interspecies transmission of rotavirus group A, human and animal fecal samples were collected between 1997 and 2001 in The Netherlands. A total of 110 human stool samples were successfully P and G genotyped by reverse transcriptase PCR. All strains belonged to the main human rotavirus genotypes G1 to G4, G9, [P4], [P6], [P8], and [P9]. [P8]G1 was predominant, and 5.5% belonged to the G9 genotype. Eleven percent of all P[8] genotypes could be genotyped only by a recently published modified primer. Rotavirus-positive fecal samples from 28 calf herds were genotyped by DN...
Genetic analysis of Group A rotaviruses: evidence for interspecies transmission of rotavirus genes.
Virus genes    April 4, 2002   Volume 24, Issue 1 11-20 doi: 10.1023/a:1014073618253
Palombo EA.Rotaviruses are the major cause of severe gastroenteritis in young children and animals. The rotavirus genome is composed of eleven segments of double-stranded RNA and can undergo genetic reassortment during mixed infections, leading to progeny viruses with novel or atypical phenotypes. There are numerous descriptions of rotavirus strains isolated from human and animals that share genetic and antigenic features of viruses from heterologous species. In many cases, genetic analysis by hybridization has clearly demonstrated the genetic relatedness of gene segments to those from viruses isolated f...
Predominance of G3B and G14 equine group A rotaviruses of a single VP4 serotype in Japan.
Archives of virology    November 28, 2001   Volume 146, Issue 10 1949-1962 doi: 10.1007/s007050170044
Tsunemitsu H, Imagawa H, Togo M, Shouji T, Kawashima K, Horino R, Imai K, Nishimori T, Takagi M, Higuchi T.A total of 65 equine group A rotaviruses (GAR) isolated from diarrheal foals at 48 farms in Hokkaido, Japan, between 1996 (29 isolates) and 1997 (36 isolates) were characterized for their VP7 and VP4 serotypes by PCR, nucleotide sequencing, and virus neutralization (VN) tests. By PCR VP7 typing, all isolates were classified as G3 or G 14, and the predominant serotype in each year was G3 (86%) in 1996 and G14 (53%) in 1997. VN tests with these 20 isolates randomly selected confirmed the specificity of PCR on the bases of complete agreement of the results in these methods (9 G3 and 11 G14), and ...
Antigenic and molecular analyses reveal that the equine rotavirus strain H-1 is closely related to porcine, but not equine, rotaviruses: interspecies transmission from pigs to horses?
Virus genes    February 24, 2001   Volume 22, Issue 1 5-20 doi: 10.1023/a:1008175716816
Ciarlet M, I a P, Conner ME, Liprandi F.We have sequenced the genes encoding the inner capsid protein VP6 and the outer capsid glycoprotein VP7 of the subgroup (SG) I equine rotavirus strain H-1 (P9[7], G5). The VP6 and VP7 proteins of the equine rotavirus strain H-1 shared a high degree of sequence and deduced amino acid identity with SG I porcine strains and serotype G5 porcine strains, respectively. Previous sequence analyses of the genes encoding the outer capsid spike protein VP4 and the nonstructural proteins NSP1 and NSP4 of equine H-1 strain also revealed a high degree of sequence and deduced amino acid homology with the pro...
Prepartum equine rotavirus vaccination inducing strong specific IgG in mammary secretions.
The Veterinary record    July 7, 2000   Volume 146, Issue 23 672-673 doi: 10.1136/vr.146.23.672
Sheoran AS, Karzenski SS, Whalen JW, Crisman MV, Powell DG, Timoney JF.No abstract available
Gastrointestinal and endocrine function during ‘foal heat diarrhoea’ in healthy foals.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 717-724 
Gianini M, Sutter O, Burger D, Bracher V.Gastrointestinal function was assessed in normal foals before, during and after the onset of 'foal heat diarrhoea' by haematological, biochemical, microbiological and parasitological methods, and by a combined lactose tolerance-breath hydrogen excretion test. Warmblood mares (n=11) and their foals were used. The foals were assessed according to a standard protocol after birth and at regular intervals thereafter. All except one of the foals suffered from diarrhoea that started between day 8 and day 12 after birth, which lasted for 1-4 days. Rotavirus was detected in the faeces of five foals, bu...
[Use of a fast test to detect rotavirus in feces].
Berliner und Munchener tierarztliche Wochenschrift    March 20, 1999   Volume 110, Issue 10 397-400 
Otto P, Elschner M, Schulze P, Prudlo J, Schrader R.The commercially available immunoassay "OnSite Rotavirus" was used for the detection of animal rotaviruses in 113 faecal samples. The sensitivity of the test was 88% and the specificity 96% compared with reference methods (EIA, EM). This test would detect approximately 4.4 x 10(6) to 1.8 x 10(7) virus particles per ml. The presence of virus could be demonstrated in fresh faecal samples from cattle, horses and pigs within a few minutes. The rotaviruses of group A were identified independently of the virus serotype. Further results and additional problems of using this test kit are described.
Prevention of rotavirus diarrhoea in foals by parenteral vaccination of the mares: field trial.
Developments in biological standardization    May 15, 1998   Volume 92 253-257 
Barrandeguy M, Parreño V, Lagos Mármol M, Pont Lezica F, Rivas C, Valle C, Fernandez F.Many countries have reported rotavirus diarrhoea in foals. In Argentina it causes important economic losses to the horse industry. In this work we present the results obtained using an experimental vaccine in a farm with enzootic infection of rotavirus. A hundred mares were vaccinated 60 and 30 days before foaling with inactivated rotavirus SA11 (G3P2), H2 (G3P12), Lincoln (G6P1), with aluminum hydroxide as adjuvant; 65 mares were included in the unvaccinated, control group. To evaluate the vaccine, morbidity, duration of the diarrhoea and rotavirus shedding were recorded. Antibody levels were...
Field study of the safety, immunogenicity, and efficacy of an inactivated equine rotavirus vaccine.
Journal of the American Veterinary Medical Association    July 15, 1997   Volume 211, Issue 2 193-198 
Powell DG, Dwyer RM, Traub-Dargatz JL, Fulker RH, Whalen JW, Srinivasappa J, Acree WM, Chu HJ.To determine safety, immunogenicity, and efficacy of an inactivated equine rotavirus vaccine. Methods: Prospective randomized controlled trial. Methods: 316 pregnant Thoroughbred mares during the first year of the study and 311 during the second year. Methods: During the first year, mares received 3 doses of vaccine or placebo, IM, at 8, 9, and 10 months of gestation. Serum neutralizing antibody titers were measured before vaccination and 1 and 35 days after foaling. Antibody titers were measured in foals 1, 7, 35, 60, 90, and 120 days after birth. During the second year, mares that had been v...
Foal diarrhoea between 1991 and 1994 in the United Kingdom associated with Clostridium perfringens, rotavirus, Strongyloides westeri and Cryptosporidium spp.
Epidemiology and infection    October 1, 1996   Volume 117, Issue 2 375-383 doi: 10.1017/s0950268800001564
Netherwood T, Wood JL, Townsend HG, Mumford JA, Chanter N.A case control study of foal diarrhoea in the United Kingdom was carried out over a 3-year period. Clostridium perfringens was significantly associated with foal diarrhoea (Odds Ratio (OR) = 3.0), being isolated from 57% of 421 animals with diarrhoea but from only 27% of 223 healthy foals. Also, C. perfringens was significantly associated with fatal diarrhoea (OR = 4.5). About half of diarrhoea with a fatal outcome was attributable to this organism. The other pathogens significantly associated with diarrhoea were rotavirus (OR = 5.6), Cryptosporidium spp. (OR = 3.2) and the nematode Strongyloi...
Evaluation of a one-step test for rapid, in practice detection of rotavirus in farm animals.
The Veterinary record    April 20, 1996   Volume 138, Issue 16 393-395 doi: 10.1136/vr.138.16.393
de Verdier Klingenberg K, Esfandiari J.An immunochromatographic test for the detection of group A rotavirus was evaluated against a reference group A rotavirus ELISA, by using a panel of 161 bovine, porcine and equine faecal samples submitted for routine examination. The sensitivity of the test was 89 per cent and the specificity 99 per cent compared with the ELISA. Its reproducibility was 100 per cent. The simplicity and rapidity of the test procedure make it suitable for use in practice.
Prevalence of G and P serotypes among equine rotaviruses in the faeces of diarrhoeic foals.
Archives of virology    January 1, 1996   Volume 141, Issue 6 1077-1089 doi: 10.1007/BF01718611
Browning GF, Begg AP.Variant types of VP4 and VP7 gene segments of faecal rotaviruses from diarrhoeic foals were identified by restriction endonuclease digestion of reverse transcription/polymerase chain reaction (RT/PCR) products. The variants observed were correlated with serotypes by determination of the sequence of representative RT/PCR products (entire coding sequence for VP7 and the VP8 region of VP4) and comparison to published sequences of equine G and P serotype genes. Both G and P serotypes could be predicted for 95/116 (82%) strains, P serotype only for a further 8 (7%) strains and G serotype only for 1...
Survey of equine rotaviruses shows conservation of one P genotype in background of two G genotypes.
Archives of virology    January 1, 1996   Volume 141, Issue 9 1601-1612 doi: 10.1007/BF01718285
Isa P, Wood AR, Netherwood T, Ciarlet M, Imagawa H, Snodgrass DR.DIG-labelled ssRNA probes were prepared from variable regions of VP4 and VP7 cognate genes, and used in hybridization assays for P and G genotyping of group A cell culture-adapted equine rotaviruses and fecal samples collected from foals with and without diarrhea. The probes confirmed known P and G serotypes of sixteen cell culture-adapted strains. From one-hundred and twenty-one rotavirus-positive samples, 83 reacted when tested for their P and G genotype specific probes. From these, 71 were found to contain G3 P12 genotypes, and 11 G14 P12 genotypes. No sample reacted with H1 or L338 P and G...
Species-specific and interspecies relatedness of NSP1 sequences in human, porcine, bovine, feline, and equine rotavirus strains.
Archives of virology    January 1, 1996   Volume 141, Issue 1 1-12 doi: 10.1007/BF01718584
Kojima K, Taniguchi K, Kobayashi N.We have sequenced gene 5 encoding NSP1 for three human, two porcine, two bovine, one feline, and five equine rotavirus strains, and compared the nucleotide and deduced amino acid sequences with the published sequences for other various strains. Subgroup I human strains L26, 69M, and DS-1 were found to have a similar NSP1 sequence despite their different G serotypes, VP4 genotypes, and RNA patterns. The NSP1 sequence of the human strain K8 showed a high degree of homology to those of porcine strains OSU and YM. A high degree of homology was found among three equine strains (H2, FI-14, and FI23)...
Effect of enzymes on the growth of human and animal rotaviruses.
The Journal of veterinary medical science    June 1, 1995   Volume 57, Issue 3 569-570 doi: 10.1292/jvms.57.569
Sato K, Tokuhisa S, Inaba Y.The growth of group A human, bovine, equine and porcine rotaviruses were enhanced by pretreatment of virus with pancreatin, trypsin, protease, alkaline phosphatase or pepsin and incorporation of these enzymes in maintenance medium. In contrast, alpha-amylase or lipase inhibited the growth of equine and porcine rotaviruses. The other enzymes, adenosine deaminase, lactase, lysozyme, ribonuclease or triose-phosphate isomerase gave little or no change in the growth of all four rotaviruses.