不同光周期和蔗糖供应对拟南芥及其F1杂交种表型和代谢组学变化的影响

IF 1.4 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Plant Biotechnology Pub Date : 2019-09-25 DOI:10.5511/plantbiotechnology.19.0604a
Quynh Thi Ngoc Le, Naoya Sugi, J. Furukawa, Makoto Kobayashi, K. Saito, M. Kusano, H. Shiba
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引用次数: 2

摘要

光周期和蔗糖同化在植物生长发育调控中起着重要作用。然而,目前尚不清楚植物的自然变异如何在各种生长条件下促成代谢变化。在这里,我们研究了两种拟南芥天然材料Columbia和C24的发育和代谢组学反应,以及它们在四种碳源方案下生长的相互F1杂交种,即两种不同的光周期和是否存在外源Suc供应。外源Suc的作用明显出现在Col和F1杂交种的生长中,但在C24中没有,而长日条件对所有品系的生长都有显著的正向影响。Col、C24和F1杂交种的比较代谢产物图谱显示,代谢产物水平的变化,特别是糖的变化,高度依赖于基因型特异性反应,而不是生长条件。Suc的存在导致七种代谢产物的过度积累,包括C24中的四种糖、一种多胺和两种氨基酸,而在Col和F1杂交种的图谱中没有观察到这种积累。因此,比较代谢产物图谱显示,杂交种的两个亲本系在糖代谢方面表现出明显的差异。
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Association analysis of phenotypic and metabolomic changes in Arabidopsis accessions and their F1 hybrids affected by different photoperiod and sucrose supply.
Photoperiod and sucrose (Suc) assimilation play important roles in the regulation of plant growth and development. However, it remains unclear how natural variation of plants could contribute to metabolic changes under various growth conditions. Here, we investigated the developmental and metabolomic responses of two natural accessions of Arabidopsis thaliana, Columbia (Col) and C24, and their reciprocal F1 hybrids grown under four carbon source regimens, i.e., two different photoperiods and the presence or absence of exogenous Suc supply. The effect of exogenous Suc clearly appeared in the growth of Col and the F1 hybrid but not in C24, whereas long-day conditions had significant positive effects on the growth of all lines. Comparative metabolite profiling of Col, C24, and the F1 hybrid revealed that changes in metabolite levels, particularly sugars, were highly dependent on genotype-specific responses rather than growth conditions. The presence of Suc led to over-accumulation of seven metabolites, including four sugars, a polyamine, and two amino acids in C24, whereas no such accumulation was observed in the profiles of Col and the F1 hybrid. Thus, the comparative metabolite profiling revealed that the two parental lines of the hybrid show a distinct difference in sugar metabolism.
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来源期刊
Plant Biotechnology
Plant Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-PLANT SCIENCES
CiteScore
2.90
自引率
18.80%
发文量
45
审稿时长
6-12 weeks
期刊介绍: Plant Biotechnology is an international, open-access, and online journal, published every three months by the Japanese Society for Plant Biotechnology. The journal, first published in 1984 as the predecessor journal, “Plant Tissue Culture Letters” and became its present form in 1997 when the society name was renamed to Japanese Society for Plant Cell and Molecular Biology, publishes findings in the areas from basic- to application research of plant biotechnology. The aim of Plant Biotechnology is to publish original and high-impact papers, in the most rapid turnaround time for reviewing, on the plant biotechnology including tissue culture, production of specialized metabolites, transgenic technology, and genome editing technology, and also on the related research fields including molecular biology, cell biology, genetics, plant breeding, plant physiology and biochemistry, metabolic engineering, synthetic biology, and bioinformatics.
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