• 제목/요약/키워드: introduction breeding

검색결과 79건 처리시간 0.039초

다수성 편친한성(片親限性) 가을누에 품종 (Breeding of)

  • 강필돈;손봉희;이상욱;김미자;정이연;김용순;김영대;이희삼
    • 한국잠사곤충학회지
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    • 제46권2호
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    • pp.54-57
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    • 2004
  • 다수성 품종으로 육성된 부흥잠은 새로운 가을누에 품종으로서 육성경위와 주요특성을 요약 하면 다음과 같다. 1. 일본종계 원종 잠149와 도입 육성한 무늬 품종이며, 중국종계 원종 잠150은 도입 육성한 강건다수성 한성무늬 누에품종이다. 2. 부흥잠의 일본종계 원종인 잠149은 조사된 주요 양적형질 중 화용비율, 견층비율 및 견사장에서 일반조합능력(GCA)이 높았고, 중국종계 잠150은 견층비율 및 견 사장에서 GCA가 높게 나타났다. 3. 2003년 추잠기 지역적응시험 결과는 부흥잠이 다수견, 다사량의 특성을 지닌 대성 잠에 비해 전견중이 무거워 고치수량이 6% 증수되었다. 4. 조사성적에서는, 견사장은 1,274 m로 대조대비 지수로 3%가 떨어지나, 섬도가 굵고 견사량이 많아 1만두 생사량이 3.68 kg/만두로 대조 대비 지수로 7%높아 다사량의 특성을 나타내었다. 5. 잠종생산능력에 있어서는 일본종계 원종 잠149의 산란수는 525개로 대성잠의 일본종계 원종인 잠125과 같은 수준이었고 중국종계 원종 잠150의 산란수는 510개로 대성잠의 잠126보다 다소 적었으나 산란성은 우수한 편이었다.

인삼의 유용유전자원 확보를 위한 기능 유전체연구 (Functional Genomics for Mass Analysis of Useful Genes in Panax ginseng C.A. Meyer)

  • 양덕춘
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2004년도 춘계 총회 및 학술대회
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    • pp.17-28
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    • 2004
  • 현재 재배되고 있는 고려인삼은 혼계상태로서 개체간의 형질변이가 대단히 심하며, 종자채취를 4년 후에 하기 때문에 신품종육성을 위해서는 매우 오랜 기간이 필요하다. 그러나 식물형질전환기술의 발달로 목적하는 유전자를 식물체에 재도입하여 새로운 품종을 육성할 수 있는 기술이 보급되어 유용유전자만 있다면 단시간에 고기능성 신품종을 육성할 수 있을 것이다. 본 과제에서는 인삼의 유용유전자를 대량으로 발굴하기 위하여 인삼의 조직별, 종간 및 처리간에 의한 cDNA library 총 10종 이상을 제작하고 이들 cDNA library로부터 인삼의 유용유전자원을 확보하기 위하여 EST 20,000개를 5' 한쪽 방향에서 분석하고 이들 분석된 EST clone의 데이터는 data base화 하여 많은 연구자들이 연구정보를 공유한 수 있게 하였다. 그리고 EST clone 중에서 완전한 단백질의 유전정보를 포함하고 있는 clone을100개 선발하여 전장의 염기서열(full length sequence)을 분석하고 data base를 구축하고parental clone을 선발하여 cDNA chip을 제작하였다. 특히 257 clone 주에서 기능성 및 내재해성 유용유전자를 선발하여 전염기서열분석(full length sequencing)을 한 후 인상에 재도입하여 고기능성 및 내재해성 인삼의 분자육종을 비교적 단시간내에 할 수 있는 형질전환 및 재분화 시스템을 개발하고 토양순화 시스템을 확립하고자 하였다.

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An Analysis of the Rice Situation in Nicaragua for Improving National Production.

  • Chang-Min Lee;Oporta Juan;Ho-Ki Park;Hyun-Su Park;Jeonghwan Seo;Man-Kee Baek;Jae-Ryoung Park;O-Young Jeong
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.90-90
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    • 2022
  • Nicaragua is located in Central America, climatic conditions are considered tropical dry forest. Statistics reflex that in Nicaragua exits 24,000 rice farmers. National rice production only covers 73% of the national consumption. It exists two sowing system: irrigation and rainfed. Varieties used in both systems are mid-late maturity (120-135 days), there are 14 released varieties for irrigation, eight for rainfed, and eight landraces used in rainfed. The current breeding system (introduction of lines from Colombia) has increased the national production, however, has some limitation due to the lack of enough variability, reducing the proability of finding good genotypes and therefore the possibility of satisfying 100% of the demand. The purpose of this study was to analyze the problems that must be resolved in the short and long term to improve rice productivity in Nicaragua. In this paper we explain some proposal for an improvement plan. The selection of varieties with high adaptability to various cultivation environmental conditions it is necessary, also to thoroughly manage seed purity to supply certified seeds. In rice cultivation technology, it needs to improve seedling standing and weeding effect by improving soil leveling and water-saving cultivation technology. Also, proper fertilization and planting density must be established in irrigated and rain-fed areas. Furthermore, capacity must be strengthened by collecting and training with the most recent agricultural technology information, as well as by revitalizing the union rather than the individual farmer. It is necessary to develop varieties highly adaptable to the Nicaraguan cultivation environment, as well as to expand irrigation facilities and cultivation technology suitable for weather conditions in rain-fed areas. Last, it is necessary to maintain the consistency of agricultural policy for continuous and stable rice production in response to climate change events such as drought or intermittent heavy rain.

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The Outcomes of Selection in a Closed Herd on a Farm in Operation

  • Do, ChangHee;Yang, ChangBeom;Choi, JaeGwan;Kim, SiDong;Yang, BoSeok;Park, SooBong;Joo, YoungGuk;Lee, SeokHyun
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권9호
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    • pp.1244-1251
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    • 2015
  • A herd of Berkshire pigs was established in 2003 and subjected to selection without introduction of any genetic resources until 2007. The complete pedigree, including 410 boars and 916 sows, as well as the records from 5,845 pigs and 822 litters were used to investigate the results obtained from the selections. The index of selection for breeding values included days to 90 kg (D90kg), backfat thickness (BF) and number of piglets born alive (NBA). The average inbreeding coefficients of pigs were found to be 0.023, 0.008, 0.013, 0.025, 0.026, and 0.005 from 2003 to 2007, respectively. The genetic gains per year were 12.1 g, -0.04 mm, -3.13 days, and 0.181 head for average daily gain (ADG), BF, D90kg, and NBA, respectively. Breeding values of ADG, BF and D90kg were not significantly correlated with inbreeding coefficients of individuals, except for NBA (-0.21). The response per additional 1% of inbreeding was 0.0278 head reduction in NBA. The annual increase of inbreeding was 0.23% and the annual decrease in NBA due to inbreeding was 0.0064 head. This magnitude could be disregarded when compared with the annual gain in NBA (0.181 head). These results suggest that inbreeding and inbreeding depression on ordinary farms can be controlled with a proper breeding scheme and that breeding programs are economical and safe relative to the risks associated with importation of pigs.

국내 억새 유전자원 수집 후 형태 및 생육 특성 변화 (Changes of Morphological and Growth Characteristics Collected Miscanthus Germplasm in Korea)

  • 송연상;이지은;문윤호;유경단;최인성;차영록;김광수
    • Weed & Turfgrass Science
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    • 제7권1호
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    • pp.22-34
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    • 2018
  • Miscanthus has been considered as the most promising bioenergy crop for lignocellulosic biomass production. In Korea, M. sacchariflorus and M. sinensis can be found easily in all regions. It is a great advantage to utilize as important species with respect to genetic and cross-breeding programs materials for creation of novel hybrids. For successful breeding programs, it is important to precisely understand the variability of morphological and growth characteristics among Miscanthus species as breeding parent materials. In this study, morphological and growth characteristics were observed in 960 germplasms of two Miscanthus species (M. sacchariflorus and M. sinensis) for growing seasons over three years. Due to the inherent characteristics of these species, the germplasm of M. sacchariflorus among the collected germplasm were reduced in plant height than in the collection area. In M. sinensis, the plant height of germplasm collected mainly from Jeju-do increased more than those collected from collection area. Sixty-one of the collected 960 germplasms were selected and investigated to the morphological characteristics. Based on the investigated morphological data, the phylogenic tree was developed. As the results, it was confirmed that there exist germplasm in which the characteristics of M. sacchariflorus and M. sinensis are mixed. This study of Miscanthus may provide an important information in order to expedite the introduction as breeding materials for creation of new hybrid.

Evaluation of Optimum Genetic Contribution Theory to Control Inbreeding While Maximizing Genetic Response

  • Oh, S.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권3호
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    • pp.299-303
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    • 2012
  • Inbreeding is the mating of relatives that produce progeny having more homozygous alleles than non-inbred animals. Inbreeding increases numbers of recessive alleles, which is often associated with decreased performance known as inbreeding depression. The magnitude of inbreeding depression depends on the level of inbreeding in the animal. Level of inbreeding is expressed by the inbreeding coefficient. One breeding goal in livestock is uniform productivity while maintaining acceptable inbreeding levels, especially keeping inbreeding less than 20%. However, in closed herds without the introduction of new genetic sources high levels of inbreeding over time are unavoidable. One method that increases selection response and minimizes inbreeding is selection of individuals by weighting estimated breeding values with average relationships among individuals. Optimum genetic contribution theory (OGC) uses relationships among individuals as weighting factors. The algorithm is as follows: i) Identify the individual having the best EBV; ii) Calculate average relationships ($\bar{r_j}$) between selected and candidates; iii) Select the individual having the best EBV adjusted for average relationships using the weighting factor k, $EBV^*=EBV_j(1-k\bar{{r}_j})$ Repeat process until the number of individuals selected equals number required. The objective of this study was to compare simulated results based on OGC selection under different conditions over 30 generations. Individuals (n = 110) were generated for the base population with pseudo random numbers of N~ (0, 3), ten were assumed male, and the remainder female. Each male was mated to ten females, and every female was assumed to have 5 progeny resulting in 500 individuals in the following generation. Results showed the OGC algorithm effectively controlled inbreeding and maintained consistent increases in selection response. Difference in breeding values between selection with OGC algorithm and by EBV only was 8%, however, rate of inbreeding was controlled by 47% after 20 generation. These results indicate that the OGC algorithm can be used effectively in long-term selection programs.

A Case Study on Smart Livestock with Improved Productivity after Information and Communications Technologies Introduction

  • Kim, Gok Mi
    • International Journal of Advanced Culture Technology
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    • 제9권1호
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    • pp.177-182
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    • 2021
  • The fourth industrial revolution based on information and communication technology (ICT) becomes the center of society, and the overall industrial structure is also changing significantly. ICT refers to the hardware of information devices and the software technologies required for the operation and information management of these devices, and any means of collecting, producing, processing, preserving, communicating and utilizing them. ICT is integrated into industries and services or combined with new technologies in various fields such as robotics and nanotechnology to connect all products and services to the network. The development of ICT, which continuously creates new products and services, has spread to all sectors of the industry, affecting not only daily life but also the livestock sector recently. In agriculture, ICT technology can reduce production costs by efficiently managing labor and energy because it can improve quality and yield based on data on environmental and growth information such as temperature, humidity, light and soil. In particular, smart livestock is considered suitable for achieving livestock management goals because it can reduce labor force and improve productivity by remotely and automatically managing accurate information necessary for raising and breeding livestock with ICT devices. The purpose of this study is to propose the need for ICT technology by comparing farm productivity before and after ICT is introduced. The method of the study is to compare the productivity before and after the introduction of ICT in Korean beef farms, pig farms, and poultry farms. The effectiveness of the study proved the excellence of ICT technology through the production results before ICT introduction and the productivity improvement case of livestock farms that efficiently operated manpower management and reduced labor force after ICT introduction. The conclusion of this paper is to present the need for smart livestock through ICT adoption through case study results.

형질전환 벼 이용 품종 조기개발 체계 확립 (Establishment of a New Breeding Scheme for Rapid Release of Variety Using bar Gene Transformed Rice)

  • 원용재;이기환;조준현;고종민;박향미;한창덕;양세준;김순철;남민희
    • Journal of Plant Biotechnology
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    • 제31권1호
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    • pp.7-11
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    • 2004
  • 형질전환 식물체를 직접 이용하기에는 후대에 유전적인 고정 및 포장검정이라는 문제가 대두되는데, 이를 해결하기 위하여 본 연구는 바스타저항성 유전자가 도입된 벼와 직파적 응성 계통을 교잡한 후 약배양에 의한 형질전환체 고정 등 기존 육종체계와 연계하여 제초제 저항성 직파적응 계통을 조기에 육성할 수 있는 체계를 확립하고자 수행하였다. 제초제 저항성 직파적응 계통을 조기에 육성하고자 1999년 동계에 교배된 동진벼 Ds15(Ba $r^{R}$)/주남벼 등 5조합으로부터 2000년 $F_1$을 양성하고, 이들을 PCR분석으로 제초제 저항성 유전자 bar도입을 확인한 후 약배양을 실시하여 얻어진 1,508개의 재분화 식물체 중 제초제 저항성 유전자가 도입된 169개체 ( $A_2$)에서 채종하였다. 이들을 2001년 포장에 공시하여 42계통을 선발하고,2002년에 동진벼 Ds15 (Ba $r^{R}$)/주남벼 조합에서 수량 등 주요 농업형질이 우수한 7계통을 생산력 검정시험에 공시한 결과 제초제 저항성이면서 직파적응성 등 기타 농업형질이 우수한 YR23235Acp79를 선발하여 밀양 204호로 계통명을 부여하였다. 결과적으로 형질전환체를 이용하여 교배부터 계통선발까지 3년 만에 목적하는 계통을 조기에 육성할 수 있는 생력육종체계가 확립되었다.

Diversity of Chinese Indigenous Goat Breeds: A Conservation Perspective - A Review -

  • Li, M.H.;Li, K.;Zhao, S.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권5호
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    • pp.726-732
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    • 2004
  • In this manuscript, a review of the diversity of Chinese indigenous goat breeds according to data from body stature and appearance, chromosome group, blood proteins, DNA molecular markers (mitochondria DNA, random amplified polymorphic DNA, microsatellite DNA, major histocompatibility complex) has been introduced. All of these provide efficient tools for the diversity analysis of Chinese indigenous goat breeds and are very important for biodiversity conservation, restoration of declining goat breeds, the priority defining in Chinese indigenous goat breeds' protection and the selection of nature preservation zones. Many Chinese indigenous goat breeds with small population size in the isolated mountains or reservoir areas are verging the potential threat of extinction, effectively lost with the rapid destroying of ecological environment. On the other hand, as a result of the introduction of modern commercial goat breeds and shortage of effective conservation, some populations, such as Small-xiang goat and Tibetan goat decrease rapidly in number of sires. In the interests of the long-term future of the goat breeds in China, conservation of goat breeds' genetic resources should be considered urgently and some conservation measures should be adopted. In addition, the continuing development of molecular biology will further enhance conservation of diversity of Chinese indigenous goat breeds.

Phenotypic and Genetic Effects of Dwarfing Genes on Plant Height and Some Agronomic Traits in Wheat

  • Moon Seok Kim;Jin Seok Yoon;Yong Weon Seo
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2022년도 추계학술대회
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    • pp.276-276
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    • 2022
  • Wheat is one of the most widely grown food crops worldwide. Extreme precipitation and wind disturbances increased due to the abnormal climate, which resulted in increased lodging. Introduction of dwarf genes in wheat significantly increased lodging resistance and productivity in wheat breeding. In this study, we performed the genotyping of dwarfing genes between 'Keumkang' and 'Komac 5' ('Keumkang' mutant). In addition, we investigated the relationship between plant height and several phenotypic characters using F2 segregation populations derived from crosses between the two varieties. There was no significant difference in phenotypic characters between the two varieties except for plant height. In the genotyping analysis using dwarfing genes, mutations of two dwarfing gene were found to be induced between the two varieties. The four genotypes of the F2 populations from a crossing between 'Keumkang' and 'Komac 5' were used to compare and evaluate the effects of two dwarfing genes. Plants with two single mutant dwarfing gene and double mutant dwarfing gene revealed reduced plant heights than control plants by 4.5%, 6.9%, and 33.2%, respectively. The phenotype analysis showed that double mutant dwarfing gene affected wheat stem growth as the length decreases from the second node, resulting in decreased plant height. However, there were no significant differences in the agronomic traits between mutant plants and control plant. These results may provide novel information about the effect of double mutant dwarfing gene on plant height, and may help improve lodging tolerance and wheat yield.

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