Unverified paper record
Strong prevalence of light regime‐specific QTL in Arabidopsis detected using automated high‐throughput phenotyping in fluctuating or constant light
Physiologia Plantarum. · 1 Jan 2024
Abstract
Plants have evolved and adapted under dynamic environmental conditions, particularly to fluctuating light, but plant research has often focused on constant growth conditions. To quantitatively asses the adaptation to fluctuating light, a panel of 384 natural Arabidopsis thaliana accessions was analyzed in two parallel independent experiments under fluctuating and constant light conditions in an automated high‐throughput phenotyping system upgraded with supplemental LEDs. While the integrated daily photosynthetically active radiation was the same under both light regimes, plants in fluctuating light conditions accumulated significantly less biomass and had lower leaf area during their measured vegetative growth than plants in constant light. A total of 282 image‐derived architectural and/or color‐related traits at six common time points, and 77 photosynthesis‐related traits from one common time point were used to assess their associations with genome‐wide natural variation for both light regimes. Out of the 3000 significant marker‐trait associations (MTAs) detected, only 183 (6.1%) were common for fluctuating and constant light conditions. The prevalence of light regime‐specific QTL indicates a complex adaptation. Genes in linkage disequilibrium with fluctuating light‐specific MTAs with an adjusted repeatability value >0.5 were filtered for gene ontology terms containing “photo” or “light”, yielding 15 selected candidates. The candidate genes are involved in photoprotection, PSII maintenance and repair, maintenance of linear electron flow, photorespiration, phytochrome signaling, and cell wall expansion, providing a promising starting point for further investigations into the response of Arabidopsis thaliana to fluctuating light conditions.
Plant phenotyping relevance
自動ハイスループット表現型解析システムを用い、画像から多数の植物形態・色関連形質を抽出するワークフローが研究の中心的な基盤となっているため、QTL解析を目的とした応用でも植物フェノタイピング手法の実質的な適用に該当する。
abstracta panel of 384 natural Arabidopsis thaliana accessions was analyzed in two parallel independent experiments under fluctuating and constant light conditions in an automated high‐throughput phenotyping system upgraded with supplemental LEDs.
abstractA total of 282 image‐derived architectural and/or color‐related traits at six common time points, and 77 photosynthesis‐related traits from one common time point were used
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