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  1. Home
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  3. The domestication history of lychee and its flowering regulation decoded by full genome sequencing

The domestication history of lychee and its flowering regulation decoded by full genome sequencing

Speaker Introduction: Rui Xia, PhD, Professor at South China Agricultural University. Dr. Xia obtained his PhD degree from Virginia Tech (USA) and had postdoctoral trainings at the University of Delaware and Donald Danforth Plant Science Center (USA). His research focuses on genomics of horticultural plants, flower and fruit development, plant small RNAs and bioinformatics.

Topic Introduction: The decoding of haplotypic genomes of lychee provides novel insights into its domestication history and uncovers the underlying genetics of flowering regulation.

Description: Lychee is an exotic tropical fruit with distinct flavor. The genome of cultivar ‘Feizixiao’ was assembled into 15 pseudo-chromosomes, totaling ~470 Mb. High heterozygosity (2.27%) resulted in two complete haplotypic assemblies. 13,517 allelic genes (42.4%) were differentially expressed in diverse tissues. Analyses of 72 re-sequenced lychee accessions revealed two independent domestication events. The extremely early maturing cultivars (EEMC) preferentially aligned to one haplotype were domesticated from a wild population in Yunnan, whereas the late-maturing cultivars (LMC) mostly mapped to the second haplotype were independently domesticated from a wild population in Hainan. Early maturing cultivars were likely developed in Guangdong via hybridization between EEMC and LMC individuals. Variable deletions of a 3.7 kb region encompassed by a pair of CONSTANS-like genes likely regulate fruit maturation differences among lychee cultivars. These genomic resources provide insights into the natural history of lychee domestication and will accelerate the improvement of lychee and related crops.In this session, you will learn: How to resolve haplotypes of a highly heterozygous genome like lychee and how the haplotypes help to trace back its evolution history. How to utilize population resequencing data to restore origin, domestication and cultivation of lychee. How to find key genes of lychee fruit maturation when data mining.

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WGSDe novo SeqAmplicon SeqShotgun MetagenomeDM-SeqmRNA-SeqSingle Cell Gene ExpressionVisium HDXenium In SituOlinkUntargeted Metabolomics
고객지원
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Copyright © 2026 Novogene Co., Ltd. All Rights Reserved. 노보진의 한국 내 모든 서비스는 연구 목적 (Research Use Only, RUO) 으로만 제공됩니다. 사업자등록번호: 494-86-03792 | 판매자번호: 노보진코리아유한회사 | 대표자명: 리휘시앙 | 사업자주소: 서울시 강서구 마곡동 779-1번지 뉴브클라우드힐스 BT-230, 231호, 07790 | 전화번호: 02-2038-8036
Novogene Korea
  • Novogene Korea
  • Genomics
    • Human Whole Genome Sequencing
    • Plant & Animal Whole Genome Sequencing
    • Microbial Whole Genome Sequencing
    • Whole Exome Sequencing
    • Plant & Animal De novo Sequencing
    • Microbial De novo Sequencing
    • Amplicon Sequencing
    • Shotgun Metagenomics Sequencing
    Transcriptomics
    • mRNA Sequencing
    • Total RNA Sequencing
    • Full-Length Transcriptome Sequencing
    • Whole Transcriptome Sequencing
    • Small RNA Sequencing
    • Circular RNA Sequencing
    • Metatranscriptome Sequencing
    • Prokaryotic RNA Sequencing
    Single Cell & Spatial Omics
    • Single Cell Gene Expression
    • Single Cell Immune Profiling Sequencing
    • Single Cell Long Read Transcriptome
    • Visium HD Spatial Gene Expression
    • Stereo-Seq Spatial Gene Expression
    • Xenium In Situ Spatial Transcriptome
    Epigenomics
    • Whole Genome Bisulfite Sequencing (WGBS)
    • Directed DNA Methylation Sequencing (DM-Seq) NEW
    • Reduced Representation Bisulfite Sequencing (RRBS)
    • Chromatin Immunoprecipitation Sequencing (ChIP-seq)
    • RNA Immunoprecipitation Sequencing (RIP-seq)
    • Assay for Transposase-Accessible Chromatin with Sequencing (ATAC-seq)

    Premade Library

    • Sequencing Only (Illumina 플랫폼)
    • Sequencing Only (PacBio 플랫폼)
    Proteomics & Metabolomics
    • Olink Proteomics
    • Quantitative Proteomics (MS)
    • Untargeted Metabolomics (MS)
  • 프로모션프로모션
    • 플랫폼
    • 자동화 운송 플랫폼 (Falcon)
    • BI 분석툴 (NovoMagic)
    • Customer Service System (CSS)
    • 브로셔
    • 케이스 스터디
    • 웨비나
    • 블로그
    • 샘플준비 가이드라인
    • 커뮤니티
    • 암 연구
    • 면역 종양학
    • 농업
    • 환경
    • 식품
    • 인간 마이크로바이옴
    • 동물 & 식물 마이크로바이옴
    • 신약개발
    • 희귀 질환 연구
    • 회사소개
    • 글로벌 입지
    • 뉴스룸
    • 채용 정보
  • 문의하기문의하기
  1. Home
  2. Resources
  3. The domestication history of lychee and its flowering regulation decoded by full genome sequencing

The domestication history of lychee and its flowering regulation decoded by full genome sequencing

Speaker Introduction: Rui Xia, PhD, Professor at South China Agricultural University. Dr. Xia obtained his PhD degree from Virginia Tech (USA) and had postdoctoral trainings at the University of Delaware and Donald Danforth Plant Science Center (USA). His research focuses on genomics of horticultural plants, flower and fruit development, plant small RNAs and bioinformatics.

Topic Introduction: The decoding of haplotypic genomes of lychee provides novel insights into its domestication history and uncovers the underlying genetics of flowering regulation.

Description: Lychee is an exotic tropical fruit with distinct flavor. The genome of cultivar ‘Feizixiao’ was assembled into 15 pseudo-chromosomes, totaling ~470 Mb. High heterozygosity (2.27%) resulted in two complete haplotypic assemblies. 13,517 allelic genes (42.4%) were differentially expressed in diverse tissues. Analyses of 72 re-sequenced lychee accessions revealed two independent domestication events. The extremely early maturing cultivars (EEMC) preferentially aligned to one haplotype were domesticated from a wild population in Yunnan, whereas the late-maturing cultivars (LMC) mostly mapped to the second haplotype were independently domesticated from a wild population in Hainan. Early maturing cultivars were likely developed in Guangdong via hybridization between EEMC and LMC individuals. Variable deletions of a 3.7 kb region encompassed by a pair of CONSTANS-like genes likely regulate fruit maturation differences among lychee cultivars. These genomic resources provide insights into the natural history of lychee domestication and will accelerate the improvement of lychee and related crops.In this session, you will learn: How to resolve haplotypes of a highly heterozygous genome like lychee and how the haplotypes help to trace back its evolution history. How to utilize population resequencing data to restore origin, domestication and cultivation of lychee. How to find key genes of lychee fruit maturation when data mining.

서비스서비스 menu

고객지원고객지원 menu

기업정보기업정보 menu

서비스
WGSDe novo SeqAmplicon SeqShotgun MetagenomeDM-SeqmRNA-SeqSingle Cell Gene ExpressionVisium HDXenium In SituOlinkUntargeted Metabolomics
고객지원
노보매직CSSFalcon 플랫폼
기업정보
회사소개글로벌 입지플랫폼뉴스룸채용 정보문의하기
LinkedInLinkedIn hoverYouTubeYouTube hoverXX hoverMetaMeta hoverInstagramInstagram hover
Copyright © 2026 Novogene Co., Ltd. All Rights Reserved. 노보진의 한국 내 모든 서비스는 연구 목적 (Research Use Only, RUO) 으로만 제공됩니다. 사업자등록번호: 494-86-03792 | 판매자번호: 노보진코리아유한회사 | 대표자명: 리휘시앙 | 사업자주소: 서울시 강서구 마곡동 779-1번지 뉴브클라우드힐스 BT-230, 231호, 07790 | 전화번호: 02-2038-8036
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