Department of Plant Science, Plant Genomics and Breeding Institute, Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, 151-921, Korea.
Interdisciplinary Program in Bioinformatics, Seoul National University, Seoul, 151-741, Korea.
J Integr Plant Biol. 2015 Jun;57(6):562-76. doi: 10.1111/jipb.12276. Epub 2014 Sep 30.
Jasmonic acid (JA) functions in plant development, including senescence and immunity. Arabidopsis thaliana CORONATINE INSENSITIVE 1 encodes a JA receptor and functions in the JA-responsive signaling pathway. The Arabidopsis genome harbors a single COI gene, but the rice (Oryza sativa) genome harbors three COI homologs, OsCOI1a, OsCOI1b, and OsCOI2. Thus, it remains unclear whether each OsCOI has distinct, additive, synergistic, or redundant functions in development. Here, we use the oscoi1b-1 knockout mutants to show that OsCOI1b mainly affects leaf senescence under senescence-promoting conditions. oscoi1b-1 mutants stayed green during dark-induced and natural senescence, with substantial retention of chlorophylls and photosynthetic capacity. Furthermore, several senescence-associated genes were downregulated in oscoi1b-1 mutants, including homologs of Arabidopsis thaliana ETHYLENE INSENSITIVE 3 and ORESARA 1, important regulators of leaf senescence. These results suggest that crosstalk between JA signaling and ethylene signaling affects leaf senescence. The Arabidopsis coi1-1 plants containing 35S:OsCOI1a or 35S:OsCOI1b rescued the delayed leaf senescence during dark incubation, suggesting that both OsCOI1a and OsCOI1b are required for promoting leaf senescence in rice. oscoi1b-1 mutants showed significant decreases in spikelet fertility and grain weight, leading to severe reduction of grain yield, indicating that OsCOI1-mediated JA signaling affects spikelet fertility and grain filling.
茉莉酸(JA)在植物发育中发挥作用,包括衰老和免疫。拟南芥 CORONATINE INSENSITIVE 1 编码 JA 受体,在 JA 响应信号通路中发挥作用。拟南芥基因组仅含有一个 COI 基因,但水稻(Oryza sativa)基因组含有三个 COI 同源物,OsCOI1a、OsCOI1b 和 OsCOI2。因此,每个 OsCOI 是否在发育中具有独特、累加、协同或冗余的功能尚不清楚。在这里,我们使用 oscoi1b-1 敲除突变体表明 OsCOI1b 主要影响促进衰老条件下的叶片衰老。oscoi1b-1 突变体在黑暗诱导和自然衰老期间保持绿色,叶绿素和光合作用能力大量保留。此外,几个与衰老相关的基因在 oscoi1b-1 突变体中下调,包括拟南芥 ETHYLENE INSENSITIVE 3 和 ORESARA 1 的同源物,它们是叶片衰老的重要调节剂。这些结果表明 JA 信号和乙烯信号之间的串扰影响叶片衰老。含有 35S:OsCOI1a 或 35S:OsCOI1b 的拟南芥 coi1-1 植物挽救了黑暗孵育期间延迟的叶片衰老,表明 OsCOI1a 和 OsCOI1b 都需要促进水稻叶片衰老。oscoi1b-1 突变体的小穗育性和粒重显著降低,导致粒重严重降低,表明 OsCOI1 介导的 JA 信号影响小穗育性和灌浆。