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硫化氢缓解磷饥饿诱导的根生长抑制。

Hydrogen sulphide alleviates root growth inhibition induced by phosphate starvation.

机构信息

College of Life Science and Technology, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.

出版信息

Plant Cell Environ. 2024 Dec;47(12):5265-5279. doi: 10.1111/pce.15110. Epub 2024 Aug 23.

DOI:10.1111/pce.15110
PMID:39175420
Abstract

Phosphorus (P) has crucial roles in plant growth and development. Hydrogen sulphide (HS) has multiple functions in plants, particularly having the ability to promote tolerance to a variety of adversity stresses. However, it is unclear whether HS has a function when plants suffer Pi-deficiency stress. DES1, encoding L-cysteine desulfhydrase1, is a crucial source of HS in Arabidopsis thaliana by catalysing the substrate L-cysteine. Under phosphate starvation, the des1 mutant had a significantly shorter primary root length than the wild-type Col-0, and exogenous application of HS donor NaHS could compensate for the root growth-sensitive phenotype. In contrast, the transgenic lines DES1ox overexpressing DES1 exhibited less sensitivity to phosphate starvation in terms of longer roots compared to the Col-0. These results demonstrate that HS is involved in the regulation of Arabidopsis root growth under phosphate starvation. Moreover, using quantitative real-time polymerase chain reaction experiments to analyse the changes in genes induced by phosphate starvation in des1 mutant and Col-0, we screened to find that the expression of the Sulfoquinovosyl diacylglycerol 1 (SQD1) gene was significantly downregulated in the des1 mutant. Consistently, exogenous HS significantly promoted SQD1 expression levels in roots of Col-0. Taken together, we demonstrate that DES1-mediated HS participates in alleviating root growth inhibition by promoting the expression of SQD1 under Pi starvation.

摘要

磷(P)在植物生长和发育中起着至关重要的作用。硫化氢(HS)在植物中有多种功能,特别是具有促进耐受各种逆境胁迫的能力。然而,当植物遭受磷缺乏胁迫时,HS 是否具有功能尚不清楚。DES1 编码 L-半胱氨酸脱硫酶 1,是拟南芥中 HS 的重要来源,通过催化底物 L-半胱氨酸。在缺磷条件下,des1 突变体的主根长度明显短于野生型 Col-0,外源性 HS 供体 NaHS 的应用可以补偿根生长敏感表型。相比之下,与 Col-0 相比,过表达 DES1 的转基因系 DES1ox 的根对缺磷的敏感性较低,表现为根较长。这些结果表明,HS 参与了拟南芥在缺磷条件下根生长的调节。此外,通过定量实时聚合酶链反应实验分析 des1 突变体和 Col-0 中受缺磷诱导的基因变化,我们筛选发现 Sulfoquinovosyl diacylglycerol 1 (SQD1) 基因在 des1 突变体中的表达显著下调。一致地,外源性 HS 显著促进了 Col-0 根系中 SQD1 表达水平的升高。总之,我们证明了 DES1 介导的 HS 通过促进 SQD1 的表达参与缓解 Pi 饥饿下根生长的抑制。

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