Kalve Shweta, Sizani Bulelani L, Markakis Marios Nektarios, Helsmoortel Céline, Vandeweyer Geert, Laukens Kris, Sommen Manou, Naulaerts Stefan, Vissenberg Kris, Prinsen Els, Beemster Gerrit T S
Department of Biology, University of Antwerp, Antwerp, Belgium.
Department of Medical Genetics, University of Antwerp, Antwerp, Belgium.
New Phytol. 2020 Jun;226(6):1766-1780. doi: 10.1111/nph.16490. Epub 2020 Apr 6.
We investigated the interaction between osmotic stress and auxin signaling in leaf growth regulation. Therefore, we grew Arabidopsis thaliana seedlings on agar media supplemented with mannitol to impose osmotic stress and 1-naphthaleneacetic acid (NAA), a synthetic auxin. We performed kinematic analysis and flow-cytometry to quantify the effects on cell division and expansion in the first leaf pair, determined the effects on auxin homeostasis and response (DR5::β-glucuronidase), performed a next-generation sequencing transcriptome analysis and investigated the response of auxin-related mutants. Mannitol inhibited cell division and expansion. NAA increased the effect of mannitol on cell division, but ameliorated its effect on expansion. In proliferating cells, NAA and mannitol increased free IAA concentrations at the cost of conjugated IAA and stimulated DR5 promotor activity. Transcriptome analysis shows a large overlap between NAA and osmotic stress-induced changes, including upregulation of auxin synthesis, conjugation, transport and TRANSPORT INHIBITOR RESPONSE1 (TIR1) and AUXIN RESPONSE FACTOR (ARF) response genes, but downregulation of Aux/IAA response inhibitors. Consistently, arf7/19 double mutant lack the growth response to auxin and show a significantly reduced sensitivity to osmotic stress. Our results show that osmotic stress inhibits cell division during leaf growth of A. thaliana at least partly by inducing the auxin transcriptional response.
我们研究了渗透胁迫与生长素信号传导在叶片生长调控中的相互作用。因此,我们将拟南芥幼苗培养在添加了甘露醇以施加渗透胁迫的琼脂培养基上,并添加了合成生长素1-萘乙酸(NAA)。我们进行了运动学分析和流式细胞术,以量化对第一对叶片中细胞分裂和扩展的影响,确定对生长素稳态和反应(DR5::β-葡萄糖醛酸酶)的影响,进行了下一代测序转录组分析,并研究了生长素相关突变体的反应。甘露醇抑制细胞分裂和扩展。NAA增强了甘露醇对细胞分裂的影响,但减轻了其对扩展的影响。在增殖细胞中,NAA和甘露醇以结合态IAA为代价增加了游离IAA的浓度,并刺激了DR5启动子活性。转录组分析表明,NAA和渗透胁迫诱导的变化之间存在很大重叠,包括生长素合成、结合、运输以及运输抑制剂反应1(TIR1)和生长素反应因子(ARF)反应基因的上调,但Aux/IAA反应抑制剂下调。一致地,arf7/19双突变体缺乏对生长素的生长反应,并且对渗透胁迫的敏感性显著降低。我们的结果表明,渗透胁迫在拟南芥叶片生长过程中至少部分通过诱导生长素转录反应来抑制细胞分裂。