State Key Laboratory of Plant Physiology and Biochemistry, College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.
Plant J. 2021 Feb;105(3):649-667. doi: 10.1111/tpj.15061. Epub 2020 Nov 30.
Low soil phosphorus (P) availability is a major limitation for crop production. The molecular mechanisms underlying plant responses and adaptation to phosphate (Pi) deficiency are unclear. OsbHLH6 (hereafter bHLH6), an uncharacterized rice (Oryza sativa) Pi starvation response gene encoding a basic helix-loop-helix protein, was identified by yeast two-hybrid screening using the phosphate response repressor OsSPX4 (hereafter SPX4) as bait. bHLH6 is expressed in shoots and roots, and its expression is significantly induced in shoots by Pi deficiency. bHLH6 overexpression lines showed Pi accumulation and enhanced Pi starvation responses, including upregulation of Pi starvation-induced genes and longer root hairs. A bhlh6 mutant showed no significant phenotype variation at the seedling stage. A pull-down assay indicated that bHLH6 had higher binding affinity with SPX4 compared to OsPHR2; therefore, bHLH6 competitively inhibited the interaction of SPX4 and OsPHR2. SPX4 overexpression rescued the Pi accumulation caused by bHLH6 overexpression under high- and low-P conditions. Moreover, overexpression of bHLH6 in an spx4 background did not affect the Pi content of spx4 under high- and low-P conditions. The bhlh6 spx4 double mutant showed lower shoot Pi concentrations and transcript levels of OsPT3 and OsPT10 compared with the spx4 mutant under high-P conditions. RNA sequencing results indicated that bHLH6 overexpression and spx4 mutant lines share many differentially expressed Pi-responsive genes. Therefore, bHLH6 is an important regulator for Pi signaling and homeostasis which antagonizes SPX4. This knowledge helps elucidate the molecular regulation of plant adaptation to Pi deficiency and will promote efforts toward the creation of low Pi-tolerant crops.
低土壤磷(P)有效性是作物生产的主要限制因素。植物对磷酸盐(Pi)缺乏的响应和适应的分子机制尚不清楚。OsbHLH6(简称 bHLH6)是一种未被表征的水稻(Oryza sativa)Pi 饥饿响应基因,编码一个碱性螺旋-环-螺旋蛋白,通过酵母双杂交筛选,以磷酸盐响应抑制剂 OsSPX4(简称 SPX4)为诱饵而被鉴定。bHLH6 在地上部和根部表达,其表达在 Pi 缺乏时在地上部显著诱导。bHLH6 过表达系表现出 Pi 积累和增强的 Pi 饥饿响应,包括 Pi 饥饿诱导基因的上调和更长的根毛。bhlh6 突变体在幼苗期没有表现出明显的表型变异。下拉测定表明,bHLH6 与 SPX4 的结合亲和力高于 OsPHR2;因此,bHLH6 竞争性抑制 SPX4 和 OsPHR2 的相互作用。在高磷和低磷条件下,过表达 SPX4 可挽救 bHLH6 过表达引起的 Pi 积累。此外,bHLH6 在 spx4 背景下的过表达在高磷和低磷条件下均不影响 spx4 的 Pi 含量。bhlh6 spx4 双突变体在高磷条件下的地上部 Pi 浓度和 OsPT3 和 OsPT10 的转录水平均低于 spx4 突变体。RNA 测序结果表明,bHLH6 过表达和 spx4 突变体系具有许多差异表达的 Pi 响应基因。因此,bHLH6 是 Pi 信号和稳态的重要调节剂,拮抗 SPX4。这一知识有助于阐明植物适应 Pi 缺乏的分子调控机制,并将促进创造低 Pi 耐受作物的努力。