Unverified paper record
Non-functional and weak alleles of FRIGIDA and FLOWERING LOCUS C reduce lifetime water-use independent of leaf-level water-use-efficiency traits in Arabidopsis thaliana
15 Oct 2018 · 10.1101/443424
Abstract
Natural selection driven by water availability has resulted in considerable variation for traits associated with drought tolerance and leaf level water-use efficiency ( WUE ). In Arabidopsis, little is known about the variation of whole-plant water use (PWU) and whole-plant WUE (TE). To investigate the genetic basis of PWU, we developed a novel proxy trait by combining flowering time and rosette water use to estimate lifetime PWU. We validated its usefulness for large scale screening of mapping populations in a subset of ecotypes. This parameter subsequently facilitated the screening of water-use but also drought tolerance traits in a recombinant inbred line population derived from two Arabidopsis accessions with distinct water use strategies, namely C24 (low PWU) and Col-0 (high PWU). Subsequent quantitative trait loci (QTL) mapping and validation through near-isogenic lines identified two causal QTLs, which showed that a combination of weak and non-functional alleles of the FRIGIDA (FRI) and FLOWERING LOCUS C (FLC) genes substantially reduced plant water-use without penalising reproductive performance. Drought tolerance traits, stomatal conductance, intrinsic water use efficiency (δ 13 C) and rosette water-use were independent of allelic variation at FRI and FLC , suggesting that flowering is critical in determining life-time plant water use, but not leaf-level traits.
Plant phenotyping relevance
生涯の全植物水利用量を推定する新規プロキシ形質を開発し、大規模スクリーニングへの有用性を検証しており、表現型取得・推定手法が実質的に中心である。
abstractwe developed a novel proxy trait by combining flowering time and rosette water use to estimate lifetime PWU.
abstractWe validated its usefulness for large scale screening of mapping populations in a subset of ecotypes.
Code and data availability
The supplied blocks describe phenotyping (water use, flowering time, biomass, δ13C) and QTL analysis in R, but contain no public phenotype dataset, image/sensor inputs, author code repository, or data availability statement with a URL. The only public data mentioned are third-party molecular omics deposits (GSE61542, E
No evidence-backed public reproduction asset is currently recorded.
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