TY - JOUR
T1 - The female-killing chromosome of the silkworm, Bombyx mori, was generated by translocation between the Z and W chromosomes
AU - Fujii, T.
AU - Tanaka, N.
AU - Yokoyama, T.
AU - Ninaki, O.
AU - Oshiki, T.
AU - Ohnuma, A.
AU - Tazima, Y.
AU - Banno, Y.
AU - Ajimura, M.
AU - Mita, K.
AU - Seki, M.
AU - Ohbayashi, F.
AU - Shimada, T.
AU - Abe, H.
N1 - Funding Information:
This work was supported by PROBRAIN (to K.M. and T.S.), the NIAS/MAFF Insect Technology Program (to K.M. and T.S.), and Grants-in-Aid for Scientific Research, JSPS/MEXT (Nos. 16208006, 16011209 and 16011263). We thank the Genetic Resource team, Institute of Sericulture for providing Z101 strain.
PY - 2006/5
Y1 - 2006/5
N2 - Bombyx mori is a female-heterogametic organism (female, ZW; male, ZZ) that appears to have a putative feminizing gene (Fem) on the W chromosome. The paternally transmitted mutant W chromosome, Df(p Sa + p W + od )Fem, derived from the translocation-carrying W chromosome (p Sa + p W + od ), is inert as femaleness determinant. Moreover, this Df(p Sa + p W + od )Fem chromosome has been thought to have a female-killing factor because no female larvae having the Df(p Sa + p W + od )Fem chromosome are produced. Initially, to investigate whether the Df(p Sa + p W + od )Fem chromosome contains any region of the W chromosome or not, we analyzed the presence or absence of 12 W-specific RAPD markers. The Df(p Sa + p W + od )Fem chromosome contained 3 of 12 W-specific RAPD markers. These results strongly indicate that the Df(p Sa + p W + od )Fem chromosome contains the region of the W chromosome. Moreover, by using phenotypic and molecular markers, we confirmed that the Df(p Sa + p W + od )Fem chromosome is connected with a partially deleted Z chromosome and that this fused chromosome behaves as a Z chromosome during male meiosis. Furthermore, we demonstrated that the ZZW-type triploid female having the Df(p Sa + p W + od )Fem chromosome is viable. Therefore, we concluded that the Df(p Sa + p W + od )Fem chromosome does not have a female-killing factor but that partial deletion of the Z chromosome causes the death of the ZW-type diploid female having the Df(p Sa + p W + od )Fem chromosome. Additionally, our results of detailed genetic analyses strongly indicate that the female-killing chromosome composed of the Df(p Sa + p W + od )Fem chromosome and deleted Z chromosome was generated by translocation between the Z chromosome and the translocation-carrying W chromosome, p Sa + p W + od.
AB - Bombyx mori is a female-heterogametic organism (female, ZW; male, ZZ) that appears to have a putative feminizing gene (Fem) on the W chromosome. The paternally transmitted mutant W chromosome, Df(p Sa + p W + od )Fem, derived from the translocation-carrying W chromosome (p Sa + p W + od ), is inert as femaleness determinant. Moreover, this Df(p Sa + p W + od )Fem chromosome has been thought to have a female-killing factor because no female larvae having the Df(p Sa + p W + od )Fem chromosome are produced. Initially, to investigate whether the Df(p Sa + p W + od )Fem chromosome contains any region of the W chromosome or not, we analyzed the presence or absence of 12 W-specific RAPD markers. The Df(p Sa + p W + od )Fem chromosome contained 3 of 12 W-specific RAPD markers. These results strongly indicate that the Df(p Sa + p W + od )Fem chromosome contains the region of the W chromosome. Moreover, by using phenotypic and molecular markers, we confirmed that the Df(p Sa + p W + od )Fem chromosome is connected with a partially deleted Z chromosome and that this fused chromosome behaves as a Z chromosome during male meiosis. Furthermore, we demonstrated that the ZZW-type triploid female having the Df(p Sa + p W + od )Fem chromosome is viable. Therefore, we concluded that the Df(p Sa + p W + od )Fem chromosome does not have a female-killing factor but that partial deletion of the Z chromosome causes the death of the ZW-type diploid female having the Df(p Sa + p W + od )Fem chromosome. Additionally, our results of detailed genetic analyses strongly indicate that the female-killing chromosome composed of the Df(p Sa + p W + od )Fem chromosome and deleted Z chromosome was generated by translocation between the Z chromosome and the translocation-carrying W chromosome, p Sa + p W + od.
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U2 - 10.1007/s10709-005-4147-8
DO - 10.1007/s10709-005-4147-8
M3 - Article
C2 - 16850229
AN - SCOPUS:33746166768
SN - 0016-6707
VL - 127
SP - 253
EP - 265
JO - Genetica
JF - Genetica
IS - 1-3
ER -