151
Kocur M (1986) Genus 1. Micrococcus Cohn 1872, 151
AL
. In: Sneath PHA, Mair NS, Sharpe ME,
Holt JG (eds) Bergey’s manual of systematic bacteriology, vol 2. Williams and Wilkins,
Baltimore, pp 1004–1008
Kohara M, Kasai H, Yoshimizu M (2012) Intra-ovum infection in salmonid eggs artifi cially contaminated with fi sh pathogenic bacteria: Flavobacterium psychrophilum, Renibacterium salmoninarum and Aeromonas salmonicida . Fish Pathol 47:49–55
Kohara M, Kasai H, Yoshimizu M (2013) Low possibility of intra-ovum infection with
Flavobacterium psychrophilum or Renibacterium salmoninarum in salmonid coelomic cavity.
Fish Pathol 48:97–100
Kubilay A, Uloköy G (2004) First isolation of Staphylococcus epidermidis from cultured gilthead
sea bream (Sparus aurata) in Turkey. Bull Euro Assoc Fish Pathol 24:137–143
Kubota S, Kariya T, Nakamura Y, Kira K (1968) Nocardial infection in cultured yellowtails
(Seriola quinqueradiata and S. purpurascens). II. Histological study. Fish Pathol 3:24–33
Kudo T, Hatai K, Seino A (1988) Nocardia seriolae sp. nov. causing nocardiosis of cultured fi sh.
Int J Syst Bacteriol 38:173–178
Kusser W, Fiedler F (1983) Murein type and polysaccharide composition of cell walls from
Renibacterium salmoninarum . FEMS Microbiol Lett 20:391–394
Kusuda R, Nakagawa A (1978) Nocardia infection of cultured yellowtail. Fish Pathol 13:25–31
Kusuda R, Sugiyama A (1981) Studies on the characters of Staphylococcus epidermidis isolated
from diseased fi shes - 1. On the morphological, biological and biochemical properties. Fish
Pathol 16:15–24
Kusuda R, Taki H, Takeuchi T (1974) Studies on a nocardia infection of cultured yellowtail II
Characteristics of Nocardia kampachi isolated from a gill-tuberculosis of yellowtail. Bull Jpn
Soc Sci Fish 40:369–373
Kusuda R, Kawakami K, Kawai K (1987) A fi sh-pathogenic Mycobacterium sp isolated from an
epizootic of cultured yellowtail. Nippon Suisan Gakkaishi 53:1797–1804
Laidler LA (1980) Detection and identifi cation of the bacterial kidney disease (BKD) organism by
the indirect fl uorescent antibody technique. J Fish Dis 3:67–69
Lall SP, Paterson WD, Hines JA, Adams NJ (1985) Control of bacterial kidney in Atlantic salmon,
Salmo salar L., by dietary modifi cation. J Fish Dis 8:113–124
Lansdell W, Dixon B, Smithin N, Benjamin L (1993) Isolation of several Mycobacterium species
from fi sh. J Aquat Anim Health 5:73–76
Lara-Flores M, Aguirre-Guzman G, Balan-Zetina SB, Sonda-Santos KY, Zapata AA (2014)
Identifi cation of a Mycobacterium agent isolated from tissues of Nile tilapia (Oreochromis
niloticus) . Turk J Fish Aquat Sci 14:575–580
Latour RJ, Gauthier DT, Gartland J, Bonzek CF, McNamee KA, Vogelbein WK (2012) Impacts of
mycobacteriosis on the growth of striped bass ( Morone saxatilis) in Chesapeake Bay. Can J
Fish Aquat Sci 69:247–258
Lee EGH, Evelyn TPT (1989) Effect of Renibacterium salmoninarum levels in the ovarian fl uid of
spawning chinook salmon on the prevalence of the pathogen in their eggs and progeny. Dis
Aquat Organ 7:179–184
Lee EGH, Evelyn TPT (1994) Prevention of vertical transmission of the bacterial kidney disease
agent Renibacterium salmoninarum by broodstock injection with erythromycin. Dis Aquat
Organ 18:1–4
Lee EGH, Gordon MR (1987) Immunofl uorescence screening of Renibacterium salmoninarum in
the tissues and eggs of farmed chinook salmon spawners. Aquaculture 65:7–14
León G, Maulén N, Figueroa J, Villanueva J, Rodríguez C, Vera MI, Krauskopf M (1994a) A PCR
based assay for the identifi cation of the fi sh pathogen Renibacterium salmoninarum . FEMS
Microbiol Lett 115:131–136
León G, Martinez MA, Etchegaray JP, Vera MI, Figueroa J, Krauskopf M (1994b) Specifi c DNA
probes for the identifi cation of the fi sh pathogen, Renibacterium salmoninarum . World J
Microbiol Biotechnol 10:149–153
References
Kocur M (1986) Genus 1. Micrococcus Cohn 1872, 151
AL
. In: Sneath PHA, Mair NS, Sharpe ME,
Holt JG (eds) Bergey’s manual of systematic bacteriology, vol 2. Williams and Wilkins,
Baltimore, pp 1004–1008
Kohara M, Kasai H, Yoshimizu M (2012) Intra-ovum infection in salmonid eggs artifi cially contaminated with fi sh pathogenic bacteria: Flavobacterium psychrophilum, Renibacterium salmoninarum and Aeromonas salmonicida . Fish Pathol 47:49–55
Kohara M, Kasai H, Yoshimizu M (2013) Low possibility of intra-ovum infection with
Flavobacterium psychrophilum or Renibacterium salmoninarum in salmonid coelomic cavity.
Fish Pathol 48:97–100
Kubilay A, Uloköy G (2004) First isolation of Staphylococcus epidermidis from cultured gilthead
sea bream (Sparus aurata) in Turkey. Bull Euro Assoc Fish Pathol 24:137–143
Kubota S, Kariya T, Nakamura Y, Kira K (1968) Nocardial infection in cultured yellowtails
(Seriola quinqueradiata and S. purpurascens). II. Histological study. Fish Pathol 3:24–33
Kudo T, Hatai K, Seino A (1988) Nocardia seriolae sp. nov. causing nocardiosis of cultured fi sh.
Int J Syst Bacteriol 38:173–178
Kusser W, Fiedler F (1983) Murein type and polysaccharide composition of cell walls from
Renibacterium salmoninarum . FEMS Microbiol Lett 20:391–394
Kusuda R, Nakagawa A (1978) Nocardia infection of cultured yellowtail. Fish Pathol 13:25–31
Kusuda R, Sugiyama A (1981) Studies on the characters of Staphylococcus epidermidis isolated
from diseased fi shes - 1. On the morphological, biological and biochemical properties. Fish
Pathol 16:15–24
Kusuda R, Taki H, Takeuchi T (1974) Studies on a nocardia infection of cultured yellowtail II
Characteristics of Nocardia kampachi isolated from a gill-tuberculosis of yellowtail. Bull Jpn
Soc Sci Fish 40:369–373
Kusuda R, Kawakami K, Kawai K (1987) A fi sh-pathogenic Mycobacterium sp isolated from an
epizootic of cultured yellowtail. Nippon Suisan Gakkaishi 53:1797–1804
Laidler LA (1980) Detection and identifi cation of the bacterial kidney disease (BKD) organism by
the indirect fl uorescent antibody technique. J Fish Dis 3:67–69
Lall SP, Paterson WD, Hines JA, Adams NJ (1985) Control of bacterial kidney in Atlantic salmon,
Salmo salar L., by dietary modifi cation. J Fish Dis 8:113–124
Lansdell W, Dixon B, Smithin N, Benjamin L (1993) Isolation of several Mycobacterium species
from fi sh. J Aquat Anim Health 5:73–76
Lara-Flores M, Aguirre-Guzman G, Balan-Zetina SB, Sonda-Santos KY, Zapata AA (2014)
Identifi cation of a Mycobacterium agent isolated from tissues of Nile tilapia (Oreochromis
niloticus) . Turk J Fish Aquat Sci 14:575–580
Latour RJ, Gauthier DT, Gartland J, Bonzek CF, McNamee KA, Vogelbein WK (2012) Impacts of
mycobacteriosis on the growth of striped bass ( Morone saxatilis) in Chesapeake Bay. Can J
Fish Aquat Sci 69:247–258
Lee EGH, Evelyn TPT (1989) Effect of Renibacterium salmoninarum levels in the ovarian fl uid of
spawning chinook salmon on the prevalence of the pathogen in their eggs and progeny. Dis
Aquat Organ 7:179–184
Lee EGH, Evelyn TPT (1994) Prevention of vertical transmission of the bacterial kidney disease
agent Renibacterium salmoninarum by broodstock injection with erythromycin. Dis Aquat
Organ 18:1–4
Lee EGH, Gordon MR (1987) Immunofl uorescence screening of Renibacterium salmoninarum in
the tissues and eggs of farmed chinook salmon spawners. Aquaculture 65:7–14
León G, Maulén N, Figueroa J, Villanueva J, Rodríguez C, Vera MI, Krauskopf M (1994a) A PCR
based assay for the identifi cation of the fi sh pathogen Renibacterium salmoninarum . FEMS
Microbiol Lett 115:131–136
León G, Martinez MA, Etchegaray JP, Vera MI, Figueroa J, Krauskopf M (1994b) Specifi c DNA
probes for the identifi cation of the fi sh pathogen, Renibacterium salmoninarum . World J
Microbiol Biotechnol 10:149–153
References
