Co-expression pan-network reveals genes involved in complex traits within maize pan-genome

被引:2
作者
Cagirici, H. Busra [1 ]
Andorf, Carson M. M. [2 ,3 ]
Sen, Taner Z. Z. [4 ]
机构
[1] USDA ARS, Western Reg Res Ctr, Crop Improvement Genet Res Unit, 800 Buchanan St, Albany, CA 94710 USA
[2] Iowa State Univ, USDA ARS, Corn Insects & Crop Genet Res Unit, Ames, IA 50011 USA
[3] Iowa State Univ, Dept Comp Sci, Ames, IA 50011 USA
[4] Univ Calif Berkeley, Dept Bioengn, Berkeley, CA 94720 USA
关键词
Co-expression network; Pan-network; Maize; Pan-genome; GWAS; Complex traits; Tassel branch number; Starch; WIDE ASSOCIATION; RNA-SEQ; ARCHITECTURE; IDENTIFICATION; CYTOSCAPE; GWAS;
D O I
10.1186/s12870-022-03985-z
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Background: With the advances in the high throughput next generation sequencing technologies, genome-wide association studies (GWAS) have identified a large set of variants associated with complex phenotypic traits at a very fine scale. Despite the progress in GWAS, identification of genotype-phenotype relationship remains challenging in maize due to its nature with dozens of variants controlling the same trait. As the causal variations results in the change in expression, gene expression analyses carry a pivotal role in unraveling the transcriptional regulatory mechanisms behind the phenotypes. Results: To address these challenges, we incorporated the gene expression and GWAS-driven traits to extend the knowledge of genotype-phenotype relationships and transcriptional regulatory mechanisms behind the phenotypes. We constructed a large collection of gene co-expression networks and identified more than 2 million co-expressing gene pairs in the GWAS-driven pan-network which contains all the gene-pairs in individual genomes of the nested association mapping (NAM) population. We defined four sub-categories for the pan-network: (1) core-network contains the highest represented -1% of the gene-pairs, (2) near-core network contains the next highest represented 1-5% of the gene-pairs, (3) private-network contains -50% of the gene pairs that are unique to individual genomes, and (4) the dispensable-network contains the remaining 50-95% of the gene-pairs in the maize pan-genome. Strikingly, the private-network contained almost all the genes in the pan-network but lacked half of the interactions. We performed gene ontology (GO) enrichment analysis for the pan-, core-, and private- networks and compared the contributions of variants overlapping with genes and promoters to the GWAS-driven pan-network. Conclusions: Gene co-expression networks revealed meaningful information about groups of co-regulated genes that play a central role in regulatory processes. Pan-network approach enabled us to visualize the global view of the gene regulatory network for the studied system that could not be well inferred by the core-network alone.
引用
收藏
页数:13
相关论文
共 46 条
[1]   Network-Guided GWAS Improves Identification of Genes Affecting Free Amino Acids [J].
Angelovici, Ruthie ;
Batushansky, Albert ;
Deason, Nicholas ;
Gonzalez-Jorge, Sabrina ;
Gore, Michael A. ;
Fait, Aaron ;
DellaPenna, Dean .
PLANT PHYSIOLOGY, 2017, 173 (01) :872-886
[2]   The InterPro protein families and domains database: 20 years on [J].
Blum, Matthias ;
Chang, Hsin-Yu ;
Chuguransky, Sara ;
Grego, Tiago ;
Kandasaamy, Swaathi ;
Mitchell, Alex ;
Nuka, Gift ;
Paysan-Lafosse, Typhaine ;
Qureshi, Matloob ;
Raj, Shriya ;
Richardson, Lorna ;
Salazar, Gustavo A. ;
Williams, Lowri ;
Bork, Peer ;
Bridge, Alan ;
Gough, Julian ;
Haft, Daniel H. ;
Letunic, Ivica ;
Marchler-Bauer, Aron ;
Mi, Huaiyu ;
Natale, Darren A. ;
Necci, Marco ;
Orengo, Christine A. ;
Pandurangan, Arun P. ;
Rivoire, Catherine ;
Sigrist, Christian J. A. ;
Sillitoe, Ian ;
Thanki, Narmada ;
Thomas, Paul D. ;
Tosatto, Silvio C. E. ;
Wu, Cathy H. ;
Bateman, Alex ;
Finn, Robert D. .
NUCLEIC ACIDS RESEARCH, 2021, 49 (D1) :D344-D354
[3]   The Genetic Architecture of Maize Flowering Time [J].
Buckler, Edward S. ;
Holland, James B. ;
Bradbury, Peter J. ;
Acharya, Charlotte B. ;
Brown, Patrick J. ;
Browne, Chris ;
Ersoz, Elhan ;
Flint-Garcia, Sherry ;
Garcia, Arturo ;
Glaubitz, Jeffrey C. ;
Goodman, Major M. ;
Harjes, Carlos ;
Guill, Kate ;
Kroon, Dallas E. ;
Larsson, Sara ;
Lepak, Nicholas K. ;
Li, Huihui ;
Mitchell, Sharon E. ;
Pressoir, Gael ;
Peiffer, Jason A. ;
Rosas, Marco Oropeza ;
Rocheford, Torbert R. ;
Cinta Romay, M. ;
Romero, Susan ;
Salvo, Stella ;
Sanchez Villeda, Hector ;
da Silva, H. Sofia ;
Sun, Qi ;
Tian, Feng ;
Upadyayula, Narasimham ;
Ware, Doreen ;
Yates, Heather ;
Yu, Jianming ;
Zhang, Zhiwu ;
Kresovich, Stephen ;
McMullen, Michael D. .
SCIENCE, 2009, 325 (5941) :714-718
[4]   Re-programming of gene expression in the CS8 rice line over-expressing ADPglucose pyrophosphorylase induces a suppressor of starch biosynthesis [J].
Cakir, Bilal ;
Tian, Li ;
Crofts, Naoko ;
Chou, Hong-Li ;
Koper, Kaan ;
Ng, Chun-Yeung ;
Tuncel, Aytug ;
Gargouri, Mahmoud ;
Hwang, Seon-Kap ;
Fujita, Naoko ;
Okita, Thomas W. .
PLANT JOURNAL, 2019, 97 (06) :1073-1088
[5]   Metabolic and co-expression network-based analyses associated with nitrate response in rice [J].
Coneva, Viktoriya ;
Simopoulos, Caitlin ;
Casaretto, Jose A. ;
El-kereamy, Ashraf ;
Guevara, David R. ;
Cohn, Jonathan ;
Zhu, Tong ;
Guo, Lining ;
Alexander, Danny C. ;
Bi, Yong-Mei ;
McNicholas, Paul D. ;
Rothstein, Steven J. .
BMC GENOMICS, 2014, 15
[6]   RNA-Seq and human complex diseases: recent accomplishments and future perspectives [J].
Costa, Valerio ;
Aprile, Marianna ;
Esposito, Roberta ;
Ciccodicola, Alfredo .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2013, 21 (02) :134-142
[7]   Genetic diversity in elite inbred lines of maize and its association with heterosis [J].
Fernandes, E. H. ;
Schuster, I. ;
Scapim, C. A. ;
Vieira, E. S. N. ;
Coan, M. M. D. .
GENETICS AND MOLECULAR RESEARCH, 2015, 14 (02) :6509-6517
[8]   Ten Years of the Maize Nested Association Mapping Population: Impact, Limitations, and Future Directions [J].
Gage, Joseph L. ;
Monier, Brandon ;
Giri, Anju ;
Buckler, Edward S. .
PLANT CELL, 2020, 32 (07) :2083-2093
[9]   Rare and common variants: twenty arguments [J].
Gibson, Greg .
NATURE REVIEWS GENETICS, 2012, 13 (02) :135-145
[10]   Characterization of introgression from the teosinte Zea mays ssp. mexicana to Mexican highland maize [J].
Gonzalez-Segovia, Eric ;
Perez-Limon, Sergio ;
Carolina Cintora-Martinez, G. ;
Guerrero-Zavala, Alejandro ;
Janzen, Garrett M. ;
Hufford, Matthew B. ;
Ross-Ibarra, Jeffrey ;
Sawers, Ruairidh J. H. .
PEERJ, 2019, 7