Fukushima Atsushi, Kuroha Takeshi, Nagai Keisuke, Hattori Yoko, Kobayashi Makoto, Nishizawa Tomoko, Kojima Mikiko, Utsumi Yoshinori, Oikawa Akira, Seki Motoaki, Sakakibara Hitoshi, Saito Kazuki, Ashikari Motoyuki, Kusano Miyako
RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.
Bioscience and Biotechnology Center, Nagoya University, Nagoya, Aichi 464-8601, Japan.
Metabolites. 2020 Feb 14;10(2):68. doi: 10.3390/metabo10020068.
Rice varieties that can survive under submergence conditions respond to flooding either by enhancing internode elongation or by quiescence of shoot elongation. Despite extensive efforts to identify key metabolites triggered by complete submergence of rice possessing UBMERGENCE () locus, metabolic responses of internode elongation of deepwater rice governed by the and genes remain elusive. This study investigated specific metabolomic responses under partial submergence (PS) to deepwater- (C9285) and non-deepwater rice cultivars (Taichung 65 (T65)). In addition, we examined the response in a near-isogenic line (NIL-12) that has a C9285 genomic fragment on chromosome 12 introgressed into the genetic background of T65. Under short-term submergence (0-24 h), metabolite profiles of C9285, NIL-12, and T65 were compared to extract significantly changed metabolites in deepwater rice under PS conditions. Comprehensive metabolite and phytohormone profiling revealed increases in metabolite levels in the glycolysis pathway in NIL-12 plants. Under long-term submergence (0-288 h), we found decreased amino acid levels. These metabolomic changes were opposite when compared to those in flood-tolerant rice with locus. Auxin conjugate levels related to stress response decreased in NIL-12 lines relative to T65. Our analysis helped clarify the complex metabolic reprogramming in deepwater rice as an escape strategy.
能够在淹水条件下存活的水稻品种对洪水的响应方式,要么是通过增强节间伸长,要么是通过抑制地上部伸长。尽管人们付出了巨大努力来鉴定由具有UBMERGENCE()基因座的水稻完全淹水引发的关键代谢产物,但由和基因控制的深水稻节间伸长的代谢响应仍不清楚。本研究调查了深水稻品种(C9285)和非深水稻品种(台中65(T65))在部分淹水(PS)条件下的特定代谢组学响应。此外,我们还检测了一个近等基因系(NIL-12)的响应,该近等基因系在12号染色体上有一个C9285基因组片段渗入到T65的遗传背景中。在短期淹水(0-24小时)条件下,比较了C9285、NIL-12和T65的代谢产物谱,以提取PS条件下深水稻中显著变化的代谢产物。综合代谢产物和植物激素分析表明,NIL-12植株糖酵解途径中的代谢产物水平增加。在长期淹水(0-288小时)条件下,我们发现氨基酸水平下降。与具有基因座的耐淹水稻相比,这些代谢组学变化相反。相对于T65,NIL-12品系中与应激反应相关的生长素共轭物水平降低。我们的分析有助于阐明深水稻作为一种逃避策略的复杂代谢重编程。