Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Aichi, 464-8601, Japan.
Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Aichi, 464-8601, Japan; Philippine Rice Research Institute, Central Experiment Station, Science City of Muñoz, Nueva Ecija, 3119, Philippines.
Plant Sci. 2021 May;306:110861. doi: 10.1016/j.plantsci.2021.110861. Epub 2021 Feb 25.
A well-developed root system is essential for efficient water uptake, particularly in drought-prone environments. However, the molecular mechanisms underlying the promotion of root development are poorly understood. We identified and characterized a rice mutant, outstanding rooting1 (our1), which exhibited a well-developed root system. The our1 mutant displayed typical auxin-related phenotypes, including elongated seminal root and defective gravitropism. Seminal root elongation in the our1 mutant was accelerated via the promotion of cell division and elongation. In addition, compared with the wild type, the density of short and thin lateral roots (S-type LRs) was reduced in the our1 mutant, whereas that of long and thick LRs (L-type LRs) was increased. Expression of OUR1, which encodes OsbZIP1, a member of the basic leucine zipper transcription factor family, was observed in the seminal root tip and sites of LR emergence, wherein attenuation of reporter gene expression levels controlled by the auxin response promoter DR5 was also observed in the our1 mutant. Taken together, our results indicate that the our1 gene promotes root development by suppressing auxin signaling, which may be a key factor contributing to an improvement in root architecture.
一个发达的根系对于高效的水分吸收至关重要,特别是在易发生干旱的环境中。然而,促进根系发育的分子机制还知之甚少。我们鉴定并描述了一个水稻突变体,突出生根 1(our1),其表现出发达的根系。our1 突变体表现出典型的生长素相关表型,包括伸长的胚根和缺陷的向重力性。our1 突变体中的胚根伸长是通过促进细胞分裂和伸长来加速的。此外,与野生型相比,our1 突变体中短而细的侧根(S 型侧根)的密度降低,而长而粗的侧根(L 型侧根)的密度增加。OUR1 基因的表达,该基因编码 OsbZIP1,是碱性亮氨酸拉链转录因子家族的成员,在胚根尖端和侧根出现的部位观察到,在 our1 突变体中,也观察到由生长素响应启动子 DR5 控制的报告基因表达水平的衰减。总之,我们的结果表明,our1 基因通过抑制生长素信号来促进根系发育,这可能是改善根系结构的关键因素。