276 277 Phenotyping database extracted by HCR at 9 time points 278 During the tillering stage, 234 rice plants were automatically measured by HCR at 9 279 different development time points (once every 3 d, starting from 41 ~ 67 d after 280 sowing). All the phenotypic data and images can be viewed and downloaded via the 281 link http://plantphenomics.hzau.edu.cn/checkiflogin_en.action and then following 282 these steps: (1) select ‘rice’; (2) select ‘2015-tiller’ in the year section; (3) select one 283 of the accession IDs in the ID section and then press ‘search images’; (4) 9 CT images 284 and 9 side-view color images can be viewed and downloaded; (5) a similar process 285 can be used to vi
Open resource ↗plantphenomics.hzau.edu.cn · pdf-raw-page:10 lines:1-76Unverified paper record
Combining high-throughput micro-CT-RGB phenotyping and genome-wide association study to dissect the genetic architecture of tiller growth in rice
bioRxiv · 15 Jan 2018 · 10.1101/247841
Abstract
Traditional phenotyping of rice tillers is time consuming and labor intensive and lags behind the rapid development of rice functional genomics. Thus, dynamic phenotyping of rice tiller traits at a high spatial resolution and high-throughput for large-scale rice accessions is urgently needed. In this study, we developed a high-throughput micro-CT-RGB (HCR) imaging system to non-destructively extract 730 traits from 234 rice accessions at 9 time points. We used these traits to predict the grain yield in the early growth stage, and 30% of the grain yield variance was explained by 2 tiller traits in the early growth stage. A total of 402 significantly associated loci were identified by GWAS, and dynamic and static genetic components were found across the nine time points. A major locus associated with tiller angle was detected at nine time points, which contained a major gene TAC1. Significant variants associated with tiller angle were enriched in the 3'-UTR of TAC1. Three haplotypes for the gene were found and tiller angles of rice accessions containing haplotype H3 were much smaller. Further, we found two loci contained associations with both vigor-related HCR traits and yield. The superior alleles would be beneficial for breeding of high yield and dense planting.\n\nHighlightCombining high-throughput micro-CT-RGB phenotyping facility and genome-wide association study to dissect the genetic architecture of rice tiller development by using the indica subpopulation.
Plant phenotyping relevance
高スループットのマイクロCT-RGB画像システムを開発し、イネの形態形質を多数・時系列で抽出することが研究の中心であるため。GWASはその応用にあたる。
abstractwe developed a high-throughput micro-CT-RGB (HCR) imaging system to non-destructively extract 730 traits from 234 rice accessions at 9 time points.
abstractTraditional phenotyping of rice tillers is time consuming and labor intensive
Code and data availability
The paper's own micro-CT-RGB phenotyping outputs (CT images, side-view RGB images, and extracted phenotypic traits for 234 rice accessions at 9 time points) are explicitly stated to be publicly viewable and downloadable from the authors' Huazhong Agricultural University plant phenotyping database. RiceVarMap is an exte
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