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        Studies on Sex-linked Inheritance of Quantitative Characters in Direct and Reciprocal Crosses of Silkworm Bombyx mori L.

        Reddy, N.Mal,Basavaraja, H.K.,Dar, A.K.,Kumar, N.Suresh,Dandin, S.B. Korean Society of Sericultural Science 2003 International Journal of Industrial Entomology Vol.7 No.1

        The present investigation was carried out to study the possible cause for reciprocal difference in silkworm hybrids. By utilising the polyvoltine race Pure Mysore (PM) and newly evolved breeds (CSR2, CSR5, CSR16 and CSR17), the direct and reciprocal crosses of polyvoltine ${\times}$ bivoltine and also bivoltine hybrids were studied. The hybrids of polyvoltine ${\times}$ bivoltine (direct) are superior to their reciprocal crosses in respect of cocoon yield, cocoon weight and filament length. The reciprocal crosses of polyvoltine ${\times}$ bivoltine are superior to their direct crosses in respect of fecundity and short larval duration. No significant differences were observed in the characters like cocoon shell ratio, raw silk percentage, denier, reelability and neatness in both polyvoltine ${\times}$ bivoltine direct crosses and their reciprocals. The expression of cocoon characters as a function of sex revealed that direct crosses (polyvoltine ${\times}$ bivoltine) showed higher cocoon weight, pupal weight, shell weight and longer filament length in females than the reciprocal crosses (bivoltine ${\times}$ polyvoltine), where as these characters in males were almost the same in both direct and reciprocal crosses, indicating that the sex-linked genetic factor played a more important role. it was clear that difference in cocoon yield observed in reciprocal crosses of polyvoltine ${\times}$ bivoltine was due to the low cocoon and shell weight in females which was turn due to presence of early maturity genes (Lme) linked with sex-chromosome (X) which effect on larvae period of the silkworm. In bivoltine hybrids, i.e., both direct and their reciprocals crosses, all the characters viz., hatching percentage, larval duration, survival, cocoon weight, cocoon shell weight, cocoon shell ratio, raw silk percentage, filament length, denier, reelability and neatness did not show any significant difference (except number of eggs laid by moth) which could account for presence of same maturity genes (Lm) in both direct and reciprocal crosses. it was clear that reciprocal differences occur when the hybrids are prepared from the parental strains with different voltinism.

      • KCI등재

        반성유전에 대한 가상 실험 개발 및 적용

        하양근,이미숙,이길재 韓國生物敎育學會 2008 생물교육 Vol.36 No.2

        The purpose of this study was to develop the simulation program for learning of sex-linkage Inheritance and to verify its effectiveness. The simulation was realized based on the experiment of sex-linkage Inheritance. The learning cycle model was selected to provide students with opportunities to improve scientific thinking abilities through the process of scientific inquiry. To determine its effectiveness, this program was evaluated by expert group and small group of 70 high school students in the second grade. SPSS was used to analyze scores between pre test and post test and questionnaires were used to survey students' responses and opinions. Developed program consisted of inquiring stage, conceptional introduction stage, conceptional application stage and evaluation stage. Inquiring stage provides simulated experiment of Drosophila's white eyes inheritance and wing-shaped inheritance. Conceptional introduction stage allows students to study the contents of sex-linkage inheritance, glossary and the relation between genes and chromosomes. Conceptional application stage provides various inheritances phenomena. Experimental group's performance scores between pre and post test was significantly different(p<0.01). Most of the students showed very affirmative responses to the program. This kind of simulated program will also be very useful as teaching-learning materials in the rapidly changing age.

      • KCI등재후보
      • KCI등재

        유전 및 육종 : 자가성감별 계통 조성을 위한 국내 토종 닭의 깃털 조만성 양상과 유전자형 빈도

        손시환 ( Sea Hwan Sohn ),박단비 ( Dhan Bee Park ),송혜란 ( Hae Ran Song ),조은정 ( Eun Jung Cho ),강보석 ( Bo-seok Kang ),서옥석 ( Ok Suk Suh ) 한국동물자원과학회(구 한국축산학회) 2012 한국축산학회지 Vol.54 No.4

        초생추의 성 감별은 양계산업에서 대단히 중요하다. 현재 대표적인 병아리의 암수 감별 방법은 우모 발생속도에 관여하는 반성유전자를 이용하여 깃털의 형태적 차이로 성을 식별하는 방법이다. 따라서 본 연구에서는 자가성감별 토종 닭 종계 개발을 위하여 국내 보유하고 있는 토종 순계를 대상으로 깃털 조만성의 분포 양상 및 이의 유전자형 빈도를 분석하고 더불어 병아리의 깃털 발생 양상에 따른 조우성과 만우성의 식별 방법을 제시하고자 하였다. 발생 직후 병아리의 주부익우 형태에 따른 조만우성의 식별은 조우성의 경우 주익우가 부익우보다 현저히 길어 형태적 차이가 뚜렷하나, 만우성은 주부익우 간의 차이가 없었다. 또한 꼬리 깃 형태에 따른 조만성의 식별은 5일령 이후 조우성의 경우 꼬리 깃의 성장이 현저하게 나타나는 반면 만우성의 경우 이러한 성장이 보이지 않았다. 두 방법 공히 깃털 형태에 따른 조만우성의 구분이 가능하였고, 주부익우 형태와 꼬리 깃 성장에 의한 식별 간의 판정 일치도는 98% 정도로서 발생 직후 주부익우의 형태적 차이로 거의 모든 개체에서 조만우성의 식별이 가능한 것으로 사료된다. 공시된 품종들의 조만우성 분포 양상 및 유전자형 빈도는 토종 외래계인 흑색 코니시종, 로드아일랜드레드종 및 한국재래닭 적갈색종에서만 조우성과 만우성 개체가 혼재하여 분포하는 것으로 나타났고, 이들 모두 열성 조만성 유전자 빈도가 훨씬 높은 것으로 분석되었다. 반면 국내 토종 순계로서 갈색 코니시종, 오골계, 한국재래닭 황갈색종, 회갈색종, 백색종, 흑색종 및 백색레그혼종들은 모두 조우성만 존재하는 것으로 나타났다. 이러한 결과는 국내 토종 품종을 이용하여 병아리의 깃털 성 감별이 가능함을 시사하는 것으로 만우성 모 계통과 조우성 부 계통을 조성한다면 생산되는 병아리의 깃털 형태로서 쉽게 암수 구분이 가능할 것으로 사료된다. The method of sexing based on differences in the rate of feather growth provides a convenient and inexpensive approach. The locus of feather development gene(K) is located on the Z chromosome and can be utilized to produce phenotypes that distinguish between the sexes of chicks at hatching. To establish the auto-sexing native chicken strains, this study analyzed the genotype frequency of the feathering in domestic chicken breeds. The method of classification of slow- and rapid-feathering chickens was also investigated. In the slow-feathering chicks, the coverts were either the same length or longer than the primary wing feathers at hatching. However, the rapid-feathering chicks had the primary wing feathers that were longer than the coverts. The growth pattern of tail feather also distinctively differed between the rapid- and slow-feathering chicks after 5-days. The accuracy of wing feather sexing was about 98% compared with tail sexing. In domestic chicken breeds, Korean Black Cornish, Korean Rhode Island Red, and Korean Native Chicken-Red had both dominant(K) and recessive(k+) feathering genes. The other breeds of chickens, Korean Brown Cornish, Ogol, White Leghorn, Korean Native Chicken-Yellow, -Gray, -White and -Black had only the recessive feathering gene(k+). Consequently, feather sexing is available using the domestic chicken breeds. Establishing the maternal stock with dominant gene(K-) and paternal stock with recessive gene (k+k+), the slow-feathering characteristic is passed from mothers to their sons, and the rapid-feathering characteristic is inherited by daughters from their fathers.

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