he Maize273 and SAM273 panels is a subset of the data used for the root-GWAS of the SAM Diversity Panel. GWAS was conducted with the same protocol as in comparative GWAS between maize and sorghum (see above section), except an arbitrarily relaxed window of 100 kb, centered on the TAS was used here. COFE Software is available at https://bitbucket.org/baskargroup/cofe/src/master/.Accession Numbers The maize sequence data from this article can be found in the GenBank/ EMBL data libraries under accession numbers SRP055871. The sorghum SNP data were downloaded from https://www.morrislab.org/data.Supplemental Data The following supplemental materials are available. Supplemental Text S1. CREAMD-CO
Open resource ↗baskargroup/cofe · pdf-raw-page:12 lines:1-84Unverified paper record
Shared Genetic Control of Root System Architecture between Zea mays and Sorghum bicolor .
Plant physiology · 18 Nov 2019 · 10.1104/pp.19.00752
Abstract
Determining the genetic control of root system architecture (RSA) in plants via large-scale genome-wide association study (GWAS) requires high-throughput pipelines for root phenotyping. We developed Core Root Excavation using Compressed-air (CREAMD), a high-throughput pipeline for the cleaning of field-grown roots, and Core Root Feature Extraction (COFE), a semiautomated pipeline for the extraction of RSA traits from images. CREAMD-COFE was applied to diversity panels of maize ( Zea mays ) and sorghum ( Sorghum bicolor ), which consisted of 369 and 294 genotypes, respectively. Six RSA-traits were extracted from images collected from >3,300 maize roots and >1,470 sorghum roots. Single nucleotide polymorphism (SNP)-based GWAS identified 87 TAS (trait-associated SNPs) in maize, representing 77 genes and 115 TAS in sorghum. An additional 62 RSA-associated maize genes were identified via expression read depth GWAS. Among the 139 maize RSA-associated genes (or their homologs), 22 (16%) are known to affect RSA in maize or other species. In addition, 26 RSA-associated genes are coregulated with genes previously shown to affect RSA and 51 (37% of RSA-associated genes) are themselves transe-quantitative trait locus for another RSA-associated gene. Finally, the finding that RSA-associated genes from maize and sorghum included seven pairs of syntenic genes demonstrates the conservation of regulation of morphology across taxa.
Plant phenotyping relevance
根系形態の画像取得・特徴抽出パイプライン(CREAMD-COFE)の開発が研究の中心であり、RSA形質を大規模に抽出しているため。
abstractWe developed Core Root Excavation using Compressed-air (CREAMD), a high-throughput pipeline for the cleaning of field-grown roots, and Core Root Feature Extraction (COFE), a semiautomated pipeline for the extraction of RSA traits from images.
abstractSix RSA-traits were extracted from images collected from >3,300 maize roots and >1,470 sorghum roots.
Code and data availability
The paper's COFE root-image analysis software is explicitly stated to be publicly available on Bitbucket, and the paper's RSA phenotype measurements (maize BLUP trait values and sorghum trait values) are released as supplemental tables accessible with the article.
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