Literature DB >> 34303361

A consensus and saturated genetic map provides insight into genome anchoring, synteny of Solanaceae and leaf- and fruit-related QTLs in wolfberry (Lycium Linn.).

Jianhua Zhao1, Haoxia Li2, Yuhui Xu3, Yue Yin4, Ting Huang4, Bo Zhang4, Yajun Wang4, Yanlong Li4, Youlong Cao4, Wei An5.   

Abstract

BACKGROUND: Lycium Linn. (Solanaceae) is a genus of economically important plants producing fruits and leaves with high nutritional value and medicinal benefits. However, genetic analysis of this plant and molecular breeding for quality improvement are limited by the lack of sufficient molecular markers.
RESULTS: In this study, two parental strains, 'Ningqi No. 1' (Lycium barbarum L.) and 'Yunnan Gouqi' (Lycium yunnanense Kuang et A.M. Lu), and 200 F1 hybrid individuals were resequenced for genetic analysis. In total, 8,507 well-selected SNPs were developed, and a high-density genetic map (NY map) was constructed with a total genetic distance of 2,122.24 cM. A consensus genetic map was established by integrating the NY map and a previously published genetic map (NC map) containing 15,240 SNPs, with a total genetic distance of 3,058.19 cM and an average map distance of 0.21 cM. The 12 pseudochromosomes of the Lycium reference genome were anchored using this consensus genetic map, with an anchoring rate of 64.3%. Moreover, weak collinearities between the consensus map and the pepper, potato, and tomato genomes were observed. Twenty-five stable QTLs were identified for leaf- and fruit-related phenotypes, including fruit weight, fruit longitude, leaf length, the fruit index, and the leaf index; these stable QTLs were mapped to four different linkage groups, with LOD scores ranging from 2.51 to 19.37 and amounts of phenotypic variance explained from 6.2% to 51.9%. Finally, 82 out of 188 predicted genes underlying stable QTLs for fruit-related traits were differentially expressed according to RNA-seq analysis.
CONCLUSIONS: A chromosome-level assembly can provide a foundation for further functional genomics research for wolfberry. The genomic regions of these stably expressed QTLs could be used as targets for further fine mapping and development of molecular markers for marker-assisted selection (MAS). The present study provided valuable information on saturated SNP markers and reliable QTLs for map-based cloning of functional genes related to yield and morphological traits in Lycium spp.
© 2021. The Author(s).

Entities:  

Keywords:  Genetic map; Genome synteny; Leaf- and fruit-related traits; Lycium Linn; QTL; Resequencing

Year:  2021        PMID: 34303361     DOI: 10.1186/s12870-021-03115-1

Source DB:  PubMed          Journal:  BMC Plant Biol        ISSN: 1471-2229            Impact factor:   4.215


  28 in total

1.  High-throughput genotyping by whole-genome resequencing.

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2.  A Sequencing-Based Linkage Map of Cucumber.

Authors:  Qian Zhou; Han Miao; Shuai Li; Shengping Zhang; Ye Wang; Yiqun Weng; Zhonghua Zhang; Sanwen Huang; Xingfang Gu
Journal:  Mol Plant       Date:  2015-03-17       Impact factor: 13.164

3.  Analysis of phenolic acids and flavonoids in leaves of Lycium barbarum from different habitats by ultra-high-performance liquid chromatography coupled with triple quadrupole tandem mass spectrometry.

Authors:  Xue-Qin Zhao; Sheng Guo; Hui Yan; You-Yuan Lu; Fang Zhang; Da-Wei Qian; Han-Qing Wang; Jin-Ao Duan
Journal:  Biomed Chromatogr       Date:  2019-06-03       Impact factor: 1.902

4.  Identification of QTLs for eight agronomically important traits using an ultra-high-density map based on SNPs generated from high-throughput sequencing in sorghum under contrasting photoperiods.

Authors:  Guihua Zou; Guowei Zhai; Qi Feng; Song Yan; Ahong Wang; Qiang Zhao; Jianfeng Shao; Zhipeng Zhang; Jianqiu Zou; Bin Han; Yuezhi Tao
Journal:  J Exp Bot       Date:  2012-08-01       Impact factor: 6.992

5.  Trait discovery and editing in tomato.

Authors:  Christophe Rothan; Isidore Diouf; Mathilde Causse
Journal:  Plant J       Date:  2018-12-24       Impact factor: 6.417

6.  Phylogeny and biogeography of the genus Lycium (Solanaceae): inferences from chloroplast DNA sequences.

Authors:  T Fukuda; J Yokoyama; H Ohashi
Journal:  Mol Phylogenet Evol       Date:  2001-05       Impact factor: 4.286

Review 7.  Advances in Arachis genomics for peanut improvement.

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Journal:  Biotechnol Adv       Date:  2011-11-09       Impact factor: 14.227

8.  Sequence-based ultra-dense genetic and physical maps reveal structural variations of allopolyploid cotton genomes.

Authors:  Sen Wang; Jiedan Chen; Wenpan Zhang; Yan Hu; Lijing Chang; Lei Fang; Qiong Wang; Fenni Lv; Huaitong Wu; Zhanfeng Si; Shuqi Chen; Caiping Cai; Xiefei Zhu; Baoliang Zhou; Wangzhen Guo; Tianzhen Zhang
Journal:  Genome Biol       Date:  2015-05-24       Impact factor: 13.583

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Authors:  Xinpeng Qi; Man-Wah Li; Min Xie; Xin Liu; Meng Ni; Guihua Shao; Chi Song; Aldrin Kay-Yuen Yim; Ye Tao; Fuk-Ling Wong; Sachiko Isobe; Chi-Fai Wong; Kwong-Sen Wong; Chunyan Xu; Chunqing Li; Ying Wang; Rui Guan; Fengming Sun; Guangyi Fan; Zhixia Xiao; Feng Zhou; Tsui-Hung Phang; Xuan Liu; Suk-Wah Tong; Ting-Fung Chan; Siu-Ming Yiu; Satoshi Tabata; Jian Wang; Xun Xu; Hon-Ming Lam
Journal:  Nat Commun       Date:  2014-07-09       Impact factor: 14.919

10.  A re-sequencing-based ultra-dense genetic map reveals a gummy stem blight resistance-associated gene in Cucumis melo.

Authors:  Zhongyuan Hu; Guancong Deng; Haipeng Mou; Yuhui Xu; Li Chen; Jinghua Yang; Mingfang Zhang
Journal:  DNA Res       Date:  2018-02-01       Impact factor: 4.458

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  2 in total

Review 1.  Germplasm Resources and Strategy for Genetic Breeding of Lycium Species: A Review.

Authors:  Haiguang Gong; Fazal Rehman; Yun Ma; Biao A; Shaohua Zeng; Tianshun Yang; Jianguo Huang; Zhong Li; Dongpo Wu; Ying Wang
Journal:  Front Plant Sci       Date:  2022-02-11       Impact factor: 5.753

2.  A High-Density Genetic Map Enables Genome Synteny and QTL Mapping of Vegetative Growth and Leaf Traits in Gardenia.

Authors:  Yang Cui; Baolian Fan; Xu Xu; Shasha Sheng; Yuhui Xu; Xiaoyun Wang
Journal:  Front Genet       Date:  2022-01-04       Impact factor: 4.599

  2 in total

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