Marine Bio-Products Research Laboratory, Department of Plant, Food and Environmental Sciences, Faculty of Agriculture, Dalhousie University, Nova Scotia, Canada.
Physiol Plant. 2024 Sep-Oct;176(5):e14531. doi: 10.1111/ppl.14531.
Flowering, the change from vegetative development to the reproductive phase, represents a crucial and intricate stage in the life cycle of plants, which is tightly controlled by both internal and external factors. In this study, we investigated the effect of Ascophyllum nodosum extract (ANE) on the flowering time of Arabidopsis. We found that a 0.1% concentration of ANE induced flowering in Arabidopsis, accompanied by the upregulation of key flowering time genes: FT (FLOWERING LOCUS T), SOC1 (SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1), and LFY (LEAFY). Further investigation showed that ANE specifically promotes flowering through the MIR156-mediated age pathway. ANE treatment resulted in the repression of negative regulator genes, MIR156, while simultaneously enhancing the expression of positive regulator genes, including SPLs and MIR172. This, in turn, led to the downregulation of AP2-like genes, which are known as floral repressors. It is worth noting that ANE did not alleviate the late flowering phenotype of MIR156-overexpressing plants and spl mutants. Furthermore, ANE-derived fucoidan mimics the function of sugars in regulating MIR156, closely mirroring the effects induced by ANE treatments. It suppresses the transcript levels of MIR156 and AP2-like genes while inducing those of SPLs and MIR172, thereby reinforcing the involvement of fucoidan in the control of flowering by ANE. In summary, our results demonstrate that ANE induces flowering by modulating the MIR156-SPL module within the age pathway, and this effect is mediated by fucoidan.
开花是植物从营养生长向生殖生长转变的关键阶段,是一个复杂的过程,受到内部和外部因素的严格调控。在本研究中,我们研究了泡叶藻提取物(ANE)对拟南芥开花时间的影响。我们发现,0.1%浓度的 ANE 诱导拟南芥开花,同时上调关键开花时间基因:FT(FLOWERING LOCUS T)、SOC1(SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1)和 LFY(LEAFY)。进一步的研究表明,ANE 通过 MIR156 介导的年龄途径特异性促进开花。ANE 处理导致负调节基因 MIR156 的抑制,同时增强包括 SPLs 和 MIR172 在内的正调节基因的表达。这反过来导致 AP2 样基因的下调,AP2 样基因是已知的花抑制因子。值得注意的是,ANE 并没有减轻 MIR156 过表达植物和 spl 突变体的晚花表型。此外,ANE 衍生的褐藻胶模拟糖在调节 MIR156 中的功能,与 ANE 处理诱导的效果非常相似。它抑制 MIR156 和 AP2 样基因的转录水平,同时诱导 SPLs 和 MIR172 的转录水平,从而证实褐藻胶在 ANE 调控开花中的作用。综上所述,我们的结果表明,ANE 通过调节年龄途径中的 MIR156-SPL 模块诱导开花,这种作用是由褐藻胶介导的。