히어로
-
2020 KSBS International Conference on Plant Digital Breeding
Title : Digital Breeding Based on Genomics
Date : 18nd(Tues) - 21th(Fri) August, 2020
Venue : August 18: HOTEL ICC Daejeon, Republic of Korea
August 18~21: www.breeding.or.kr2020년 한국육종학회 국제공동학술발표회일 시 : 2020년 8월 18일(화)~8월 21일(금)
장 소 : 대전ICC, www.breeding.or.kr
주 제 : 유전체기반 디지털육종의 연구와 실용화전략
(Digital Breeding Based on Genomics)
온라인학술대회
online_program
- KOREAN
- ENGLISH
2020년 한국육종학회 국제공동학술발표회 일정
* 행사 진행방식에 따라 일정이 변경될 수 있습니다.
1. 2020년 8월 18일, 대전ICC
10:00~11:00 | 이사회&조직위원회 | 2층 컨벤션홀C,D | |||
11:00~12:00 | 정기총회 및 학회상 시상, 동오 농업과학기술인상, 시드피아, 월드그린 MOU 체결식 | ||||
12:00~13:30 | 중식 | 2층 컨벤션홀A | |||
13:30~14:00 | 개회식 | 2층 컨벤션홀C,D | |||
사회 : 이정동 (사무총장, 경북대학교) | |||||
개회사 - 양태진 (조직위원장, 서울대학교) | |||||
환영사 – 강시용 (학회장, 한국원자력연구소) | |||||
Plenary Session (1) | 2층 컨벤션홀C,D | ||||
14:00~14:40 | 5G Speed in Pepper Breeding: Time Matters | ||||
강병철 교수 (서울대학교) | |||||
14:40~15:20 | Deleterious mutations during domestication in the predominant selfing crop soybean | ||||
정순천 박사 (한국생명공학연구원) | |||||
Plenary Session (2) | www.breeding.or.kr | ||||
15:30~16:10 | Evolution of homoeologous genes and domestication of horticultural traits in the Brassiceae vegetables | ||||
Wang Xiaowu (Institute of Vegetable and Flowers, CAAS, China) | |||||
16:10~16:50 | New cultivar and industry trend for Goji (Lycium species) in Genome era | ||||
Ying Wang (Chinese Academy of Science, China) | |||||
17:00~17:40 | Moving Forward to a Digital Rice Genebank | ||||
Kenneth McNally (International Rice Research Institute (IRRI), Phillipine) | |||||
17:40~18:20 | Genebank genomics bridges the gap between the conservation of crop diversity and plant breeding: a case study in barley | ||||
Martin Mascher (Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Germany) | |||||
18:20~19:00 | Powerful, Scalable and Affordable genotyping solutions for Agrigenomics breeding applications from Thermo Fisher Scientific. | ||||
Dr. Arjun Kandalam (Thermo Fisher Scientific) |
2. 2020년 8월 18~21일, www.breeding.or.kr
8월 18일(화) | 1부 Plenary Session | |||
8월 19일(수) | 2부 한국육종학회 분과발표 | |||
시간 | 발표제목 | 좌장 | ||
09:00-12:00 | CS-1 Genome sequence & Genomics | 강양제(경상대학교), 이태호(국립농업과학원) | ||
CS-2 GWAS and allele mining | 김성길(전남대학교), 이주석(한국생명공학연구원) | |||
CS-3 Highthroughput genotyping & phenotyping | 강성택(국립농업과학원), 김경환(국립농업과학원) | |||
CS-4 New Breeding Technology | 정기홍(경희대학교), 김혜란(강원대학교) | |||
13:30~17:00 | CS-5 Breeding for major crops | 하보근(전남대학교), 김재윤 (공주대학교) | ||
CS-6 Breeding for Horticultural crops | 이준대(전북대학교), 김도선(국립원예특작과학원) | |||
CS-7 Genetic resources & special crops | 조광수(국립식량과학원), 심동환(산림과학원) | |||
CS-8 Young Scientist Session | 유수철 (한경대학교), 장철성 (강원대학교) | |||
8월 20-21일 | 3부 한국육종학회 구두&포스터발표 (발표시간 09:30-17:00) | |||
8월 21일(금) | 학회 종료, 총회 영상 업로드 및 발표상 선정 발표 (11:00~12:00) |
2020년 한국육종학회 공동심포지엄 분과발표 (Concurrent Session)
A. CS-01 Genome sequence & Genomics
좌장: 강양제(경상대학교), 이태호(국립농업과학원) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | Application of best linear unbiased prediction (BLUP) on GWAS identifies candidate gene regulating branch development in soybean | 심상래(서울대학교) | |
2 | Epigenetic diversity in duplicated plant genomes | 김경도(명지대학교) | |
3 | Harnessing Retrotransposons for Crop Improvement | 조정남 (CAS-JIC Centre of Excellence for Plant and Microbial Science, China) | |
4 | Rice arbuscular mycorrhizal symbiosis requires the removal of the suppressor SMAX1 | 최정민 (University of Cambridge, UK) | |
5 | Interactive analysis platform for data management, GWAS and marker development | 유의수(DNACARE Co. Ltd.) |
B. CS-02 GWAS and allele mining
좌장: 김성길(전남대학교), 이주석(한국생명공학연구원) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | Combining GWAS and CRISPR-Cas9 for rapid identification of resistance genes to rice blast | Guo-Liang Wang (Ohio State University, USA) | |
2 | Diversity of alleles related to major agronomic traits in rice | 김규원(공주대학교) | |
3 | Genetic diversity and genome-wide association study in a core collection of peanut germplasms using a high-density SNPs array | 전태환(부산대학교) | |
4 | Uncovering candidate genes controlling major fruit-related traits in pepper via genotype-by-sequencing-based QTL mapping and genome-wide association study | 권진경(서울대학교) | |
5 | Genome-wide association study of eight fruit traits in cultivated tomato (Solanum lycopersicum L.) | 김민경(세종대학교) |
C. CS-03 Highthroughput genotyping & phenotyping
좌장: 강성택(국립농업과학원), 김경환(국립농업과학원) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | Current status of high-throughput genotyping system for molecular breeding : practical considerations | 정영민(농업기술실용화재단) | |
2 | Multiplex Detection of Crop Genetic Mutations Based on Encoded Hydrogel Microparticles | 봉기완(고려대학교) | |
3 | High throughput phenotyping in cost-effective manners | 정용석(제주대학교) | |
4 | Image-based Machine Learning Characterizes Root Nodule in Soybean Exposed to Silicon | 김윤하(경북대학교) | |
5 | 영상 및 분광정보를 활용한 우수 형질 비파괴 선발 방법 | 조병관(충남대학교) | |
6 | Establishment of high-throughput genotyping systems for Panax ginseng | 장우종(서울대학교) |
D. CS-04 New Breeding Technology
좌장: 정기홍(경희대학교), 김혜란(강원대학교) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | RNA Guided Endonucleases based crop genome editing | 김혜란(강원대학교) | |
2 | Efficient and heritable gene edition using CRISPR/cas9system in tomato | 박순주(원광대학교) | |
3 | Chloroplast-targeted transgene delivery and transient expression across varied plant systems using single-walled carbon nanotubes | 곽선영(서울대학교) | |
4 | CRISPR/Cas9-mediated genome editing of Ehd1, a major inducer of flowering in rice, increases vegetative growth and grain yield potential | 조래현(부산대학교) | |
5 | Maintenance of net photosynthesis at the grain-filling stage increases crop productivity of indica rice | 신동진(국립식량과학원) |
E. CS-05 Breeding for major crops
좌장: 하보근(전남대학교), 김재윤 (공주대학교) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | Multiple abiotic stress tolerance improvement by the pyramiding QTLs in rice | 진중현(세종대학교) | |
2 | Genome sequence of Physic Nut (Jatropha curcas L.) provides insights into evolution of Euphorbiaceae family | 하정민(강릉원주대학교) | |
3 | The barley pan-genome reveals the hidden legacy of mutation breeding | Murukarthick Jayakodi (Leibniz Institute of Plant Genetics and Crop Plant Research, Germany) | |
4 | Development and utilization plans for high value colored wheat | 김경훈(국립식량과학원) | |
5 | Current Status and Prospect of Maize Quality Breeding | 김정태(국립식량과학원) |
F. CS-06 Breeding for Horticultural crops
좌장: 이준대(전북대학교), 김도선(국립원예특작과학원) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | QTL mapping of bacterial wilt resistance in pepper (Capsicum annuum L.) using genotyping-by-sequencing analysis and two different isolates of Ralstonia solanacearum | 이준대(전북대학교) | |
2 | A high-contiguity Nanopore assembly of Brassica nigra genome allows localization of active centromeres and defines the ancestral Brassica genome | Sampath Perumal (Agriculture and Agri-Food Canada, Canada) | |
3 | The Use of Genomic Information in Pome Fruit Breeding | 김대일(충북대학교) | |
4 | Specific trait-targeted mutagenesis in radiation breeding | 김상훈(한국원자력연구원) | |
5 | Whole-genome, transcriptome, and methylome analyses provide insights into the evolution of platycoside biosynthesis in balloon flower, a medicinal plant | 김창국(국립농업과학원) |
G. CS-07 Genetic resources & special crops &
좌장: 조광수(국립식량과학원), 심동환(국립산림과학원) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | A Combinatorial Approach of Biparental QTL Mapping and Genome-Wide Association Analysis Identifies Candidate Genes for Phytophthora Blight Resistance in Sesame | 김성업(국립식량과학원) | |
2 | Multi-Seeded(MSD1) regulates pedicellate spikelet fertility in sorghum through jasmonic acid pathway | 이영경(국가핵융합연구소) | |
3 | Population Analysis of Angelica gigas Using Chloroplast Based Markers for Molecular Breeding | 이이(충북대학교) | |
4 | Perspectives and Actions in Breeding of Special-Purpose Trees | 송정호(국립산림과학원) | |
5 | Marker assisted selection (MAS) for breeding high oleic peanut (Arachis hypogaea L.) cultivars | Dr. Jalina(ICRISAT, India) | |
6 | Influence of genome diversity on breeding and DNA barcoding of wildcrafted species. | 박현승(서울대학교) |
H. CS-08 Young Scientist Session
좌장: 유수철 (한경대학교), 장철성 (강원대학교) | |||
---|---|---|---|
순번 | 발표제목 | 발표자(소속) | |
1 | Customizing Solanaceae fruit crops for vertical farming by genome editing | 권춘탁 (Cold Spring Harbor Lab., USA) | |
2 | Characterization of the Common Japonica-Originated Genomic Regions in the High-Yielding Varieties Developed from Inter-Subspecific Crosses in Rice (Oryza sativa L.) | 서정환(서울대학교) | |
3 | An effective approach to accelerate rice pollen genetics utilizing omics data and genome editing technology | 홍우종(경희대학교) | |
4 | Engineering Crassulacean Acid Metabolism (CAM) into C3 Plants to Improve Biomass and Water-Use Efficiency | 임성돈(강원대학교) | |
5 | Identification of qLTG3-1 allele for low-temperature germinability in rice from the Oryza rufipogon | 심규찬(충남대학교) |
2020 KSBS International Conference Program
Day 1 August 18, 2020
10:00~11:00 | Board & Organizing Committee | Convention Hall | |
11:00~12:00 | KSBS’s General Meeting & Award | ||
12:00~13:30 | Lunch | ||
13:30~14:00 | Opening Ceremony | ||
Plenary Session (1) | Convention Hall | ||
14:00~14:40 | 5G Speed in Pepper Breeding | ||
Byoung-Cheorl Kang (Seoul National University, Korea) | |||
14:40~15:20 | Deleterious mutations during domestication in the predominant selfing crop soybean | ||
Soon-Chun Jeong (Korea Research Institute of Bioscience & Biotechnology, Korea) | |||
Plenary Session (2) | www.breeding.or.kr | ||
15:30~16:10 | Evolution of homoeologous genes and domestication of horticultural traits in the Brassiceae vegetables | ||
Wang Xiaowu (Insitute of Vegetables and Flowers, CAAS, China) | |||
16:10~16:50 | New cultivar and industry trend for Goji (Lycium species) in Genome era | ||
Ying Wang (Chinese Academy of Science, China) | |||
17:00~17:40 | Moving Forward to a Digital Rice Genebank | ||
Kenneth McNally (International Rice Research Institute (IRRI), Phillipine) | |||
17:40~18:20 | Genebank genomics bridges the gap between the conservation of crop diversity and plant breeding: a case study in barley | ||
Martin Mascher (Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Germany) | |||
18:20~19:00 | Powerful, Scalable and Affordable genotyping solutions for Agrigenomics breeding applications from Thermo Fisher Scientific. | ||
Dr. Arjun Kandalam (Thermo Fisher Scientific) |
Day 2 August 19, 2020
Concurrent Session | www.breeding.or.kr | ||
09:00-12:00 | CS-1 Genome sequence & Genomics | CS-2 GWAS and allele mining | |
CS-3 Highthroughput genotyping & phenotyping | CS-4 New Breeding Technology | ||
13:30~17:00 | CS-5 Breeding for major crops | CS-6 Breeding for Horticultural crops | |
CS-7 Genetic resources & special crops | CS-8 Young Scientist Session | ||
Day 3 August 20~21, 2020 (09:00~17:00) | |||
Oral presentation & Poster presentation | www.breeding.or.kr | ||
Day 4 August 21, 2020 (11:00~12:00) | |||
Awards Ceremony and Closing Ceremony | www.breeding.or.kr |
2020 KSBS International Conference ‘Concurrent Session’ Program
A. CS-01 Genome sequence & Genomics
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | Application of best linear unbiased prediction (BLUP) on GWAS identifies candidate gene regulating branch development in soybean | Sang Rea Shim (Seoul National University, Korea) | |
2 | Epigenetic diversity in duplicated plant genomes | Kyung Do Kim (Myongji University, Korea) | |
3 | Harnessing Retrotransposons for Crop Improvement | Jungnam Cho (CAS-JIC Centre of Excellence for Plant and Microbial Science, China) | |
4 | Rice arbuscular mycorrhizal symbiosis requires the removal of the suppressor SMAX1 | Jeongmin Choi (Department of Plant Sciences, University of Cambridge, UK) | |
5 | Interactive analysis platform for data management, GWAS and marker development | Seung Wook Lee (DNACARE Co. Ltd., Korea) |
B. CS-02 GWAS and allele mining
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | Combining GWAS and CRISPR-Cas9 for rapid identification of resistance genes to rice blast | Guo-Liang Wang (ohio State University, USA) | |
2 | Diversity of alleles related to major agronomic traits in rice | Kyu-won Kim (Kongju University, Korea) | |
3 | Genetic diversity and genome-wide association study in a core collection of peanut germplasms using a high-density SNPs array | Tae-Hwan Jun (Pusan National University, Korea) | |
4 | Uncovering candidate genes controlling major fruit-related traits in pepper via genotype-by-sequencing-based QTL mapping and genome-wide association study | Jin-Kyung Kwon (Seoul National University, Korea) | |
5 | Genome-wide association study of eight fruit traits in cultivated tomato (Solanum lycopersicum L.) | Minkyung Kim (Sejong University, Korea) |
C. CS-03 Highthroughput genotyping & phenotyping
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | Current status of high-throughput genotyping system for molecular breeding : practical considerations | Young-Min Jeong (Foundation of Agri. Tech. Commercialization & Transfer, Korea) | |
2 | Multiplex Detection of Crop Genetic Mutations Based on Encoded Hydrogel Microparticles | Ki Wan Bong (Korea University, Korea) | |
3 | High throughput phenotyping in cost-effective manners | Yong Suk Chung (Jeju National University, Korea) | |
4 | Image-based Machine Learning Characterizes Root Nodule in Soybean Exposed to Silicon | Yoonha Kim (Kyungpook National University, Korea) | |
5 | 영상 및 분광정보를 활용한 우수 형질 비파괴 선발 방법 | Byoung-Kwan Cho (Chungnam National University, Korea) | |
6 | Establishment of high-throughput genotyping systems for Panax ginseng | Woojong Jang (Seoul National University, Korea) |
D. CS-04 New Breeding Technology
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | RNA Guided Endonucleases based crop genome editing | Hyeran Kim (Kangwon National University, Korea) | |
2 | Efficient and heritable gene edition using CRISPR/cas9system in tomato | Soon Ju Park (Wonkwang University, Korea) | |
3 | Chloroplast-targeted transgene delivery and transient expression across varied plant systems using single-walled carbon nanotubes | Seonyeong Kwak (Seoul National University, Korea) | |
4 | CRISPR/Cas9-mediated genome editing of Ehd1, a major inducer of flowering in rice, increases vegetative growth and grain yield potential | Lae-Hyeon Cho (Pusan National University, Korea) | |
5 | Maintenance of net photosynthesis at the grain-filling stage increases crop productivity of indica rice | Dongjin Shin (National Institute of Crop Science, RDA, Korea) |
E. CS-05 Breeding for major crops
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | Multiple abiotic stress tolerance improvement by the pyramiding QTLs in rice | Joong Hyoun Chin (Sejong University, Korea) | |
2 | Genome sequence of Physic Nut (Jatropha curcas L.) provides insights into evolution of Euphorbiaceae family | Jungmin Ha (Gangneung-Wonju National University, Korea) | |
3 | The barley pan-genome reveals the hidden legacy of mutation breeding | Murukarthick Jayakodi (Leibniz Institute of Plant Genetics and Crop Plant Research, Germany) | |
4 | Development and utilization plans for high value colored wheat | Kyeong-Hoon Kim (National Institute of Crop Science, RDA, Korea) | |
5 | Current Status and Prospect of Maize Quality Breeding | Jung-Tae Kim (National Institute of Crop Science, RDA, Korea) |
F. CS-06 Breeding for Horticultural crops
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | QTL mapping of bacterial wilt resistance in pepper (Capsicum annuum L.) using genotyping-by-sequencing analysis and two different isolates of Ralstonia solanacearum | Jundae Lee (Jeonbuk National University, Korea) | |
2 | A high-contiguity Nanopore assembly of Brassica nigra genome allows localization of active centromeres and defines the ancestral Brassica genome | Sampath Perumal (Agriculture and Agri-Food Canada, Canada) | |
3 | The Use of Genomic Information in Pome Fruit Breeding | Daeil Kim (Chungbuk National University, Korea) | |
4 | Specific trait-targeted mutagenesis in radiation breeding | Sang Hoon Kim (Korea Atomic Energy Research Institute, Korea) | |
5 | Whole-genome, transcriptome, and methylome analyses provide insights into the evolution of platycoside biosynthesis in balloon flower, a medicinal plant | Chang-Kug Kim (National Institute of Agricultural Sciences, RDA, Korea) |
G. CS-07 Genetic resources & special crops
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | A Combinatorial Approach of Biparental QTL Mapping and Genome-Wide Association Analysis Identifies Candidate Genes for Phytophthora Blight Resistance in Sesame | Sung-Up Kim (National Institute of Crop Science, RDA, Korea) | |
2 | Multi-Seeded(MSD1) regulates pedicellate spikelet fertility in sorghum through jasmonic acid pathway | Young Koung Lee (National Fusion Research Institute, Korea) | |
3 | Population Analysis of Angelica gigas Using Chloroplast Based Markers for Molecular Breeding | Yi Lee (Chungbuk National University, Korea) | |
4 | Perspectives and Actions in Breeding of Special-Purpose Trees | Jeong-Ho Song (National Institute of Forest Science, Korea) | |
5 | Marker assisted selection (MAS) for breeding high oleic peanut (Arachis hypogaea L.) cultivars | Dr. Jalina (International Crop Research Institute of Semi Arid Tropics, India) | |
6 | Influence of genome diversity on breeding and DNA barcoding of wildcrafted species. | Hyun-Seung Park (Seoul National University, Korea) |
H. CS-08 Young Scientist Session
no. | Presentation Title | Speaker | |
---|---|---|---|
1 | Customizing Solanaceae fruit crops for vertical farming by genome editing | Choon-Tak Kwon (Cold Spring Harbor, USA) | |
2 | Characterization of the Common Japonica-Originated Genomic Regions in the High-Yielding Varieties Developed from Inter-Subspecific Crosses in Rice (Oryza sativa L.) | Jeonghwan Seo (Seoul National University, Korea) | |
3 | An effective approach to accelerate rice pollen genetics utilizing omics data and genome editing technology | Woo-Jong Hong (Kyung Hee University, Korea) | |
4 | Engineering Crassulacean Acid Metabolism (CAM) into C3 Plants to Improve Biomass and Water-Use Efficiency | Sung Don Lim (Kangwon National University, Korea) | |
5 | Identification of qLTG3-1 allele for low-temperature germinability in rice from the Oryza rufipogon | Kyu-Chan Shim (Chungnam National University, Korea) |