Onda Yoshihiko, Hashimoto Kei, Yoshida Takuhiro, Sakurai Tetsuya, Sawada Yuji, Hirai Masami Yokota, Toyooka Kiminori, Mochida Keiichi, Shinozaki Kazuo
Cellulose Production Research Team, RIKEN Center for Sustainable Resource Science, Kanagawa, Japan Kihara Institute for Biological Research, Yokohama City University, Kanagawa, Japan.
Technology Platform Division, Mass Spectrometry and Microscopy Unit, RIKEN Center for Sustainable Resource Science, Kanagawa, Japan.
Proc Biol Sci. 2015 Jul 22;282(1811). doi: 10.1098/rspb.2015.0964.
Brachypodium distachyon is an emerging model plant for studying biological phenomena in temperate grasses. Study of the growth scale is essential to analyse spatio-temporal changes in molecular factors throughout the life cycle. For sensitive and robust staging based on morphology in B. distachyon, we demonstrated the utility of the BBCH (Biologische Bundesanstalt, Bundessortenamt and CHemical industry) scale, which is comparable to the Zadoks scale conventionally used for Triticeae crops. We compared the chronological progression of B. distachyon accessions Bd21 and Bd3-1, in addition to the progression of Chinese Spring wheat. The comparison of growth stages illustrates the morphological similarities and differences in the timing of life cycle events. Furthermore, we compared metabolite accumulation patterns across different growth stages and across different stress conditions using a widely targeted metabolome analysis. Metabolic profiling determined commonalities and specificities in chemical properties that were dependent on organisms, growth stages and/or stress conditions. Most metabolites accumulated equivalently in B. distachyon and wheat. This qualitative similarity indicated the superiority of B. distachyon as a model for Triticeae crops. The growth scale of B. distachyon should provide a conceptual framework for comparative analysis and for knowledge integration between this model grass and crops in the Pooideae subfamily.
短柄草是一种新兴的用于研究温带禾本科植物生物学现象的模式植物。研究生长尺度对于分析整个生命周期中分子因子的时空变化至关重要。为了基于短柄草的形态进行敏感且可靠的分期,我们证明了BBCH(联邦生物研究中心、联邦植物品种办公室和化学工业)尺度的实用性,它与传统上用于小麦族作物的扎多克斯尺度相当。我们比较了短柄草品种Bd21和Bd3 - 1的时间进程,以及中国春小麦的进程。生长阶段的比较说明了生命周期事件发生时间上的形态相似性和差异。此外,我们使用广泛靶向代谢组分析比较了不同生长阶段和不同胁迫条件下的代谢物积累模式。代谢谱分析确定了取决于生物体、生长阶段和/或胁迫条件的化学性质的共性和特异性。大多数代谢物在短柄草和小麦中积累情况相当。这种定性相似性表明短柄草作为小麦族作物模型的优越性。短柄草的生长尺度应为该模式禾本科植物与早熟禾亚科作物之间的比较分析和知识整合提供一个概念框架。