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一种豆科植物特有的新型植物硫肽激素PSK-δ,通过增强根瘤器官发生来促进结瘤。

A legume-specific novel type of phytosulfokine, PSK-δ, promotes nodulation by enhancing nodule organogenesis.

作者信息

Yu Liangliang, Di Qi, Zhang Danping, Liu Yumin, Li Xiaolin, Mysore Kirankumar S, Wen Jiangqi, Yan Junhui, Luo Li

机构信息

Shanghai Key Laboratory of Bio-energy Crops, School of Life Sciences, Shanghai University, Shanghai, China.

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Shanghai Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai, China.

出版信息

J Exp Bot. 2022 Apr 18;73(8):2698-2713. doi: 10.1093/jxb/erac051.

Abstract

Phytosulfokine-α (PSK-α), a tyrosine-sulfated pentapeptide with the sequence YSO3IYSO3TQ, is widely distributed across the plant kingdom and plays multiple roles in plant growth, development, and immune response. Here, we report a novel type of phytosulfokine, PSK-δ, and its precursor proteins (MtPSKδ, LjPSKδ, and GmPSKδ1), specifically from legume species. The sequence YSO3IYSO3TN of sulfated PSK-δ peptide is different from PSK-α at the last amino acid. Expression pattern analysis revealed PSK-δ-encoding precursor genes to be expressed primarily in legume root nodules. Specifically, in Medicago truncatula, MtPSKδ expression was detected in root cortical cells undergoing nodule organogenesis, in nodule primordia and young nodules, and in the apical region of mature nodules. Accumulation of sulfated PSK-δ peptide in M. truncatula nodules was detected by LC/MS. Application of synthetic PSK-δ peptide significantly increased nodule number in legumes. Similarly, overexpression of MtPSKδ in transgenic M. truncatula markedly promoted symbiotic nodulation. This increase in nodule number was attributed to enhanced nodule organogenesis induced by PSK-δ. Additional genetic evidence from the MtPSKδ mutant and RNA interference assays suggested that the PSK-δ and PSK-α peptides function redundantly in regulating nodule organogenesis. These results suggest that PSK-δ, a legume-specific novel type of phytosulfokine, promotes symbiotic nodulation by enhancing nodule organogenesis.

摘要

植物硫酸化细胞因子-α(PSK-α)是一种序列为YSO3IYSO3TQ的酪氨酸硫酸化五肽,广泛分布于植物界,在植物生长、发育和免疫反应中发挥多种作用。在此,我们报道了一种新型植物硫酸化细胞因子PSK-δ及其前体蛋白(MtPSKδ、LjPSKδ和GmPSKδ1),它们特别存在于豆科植物中。硫酸化PSK-δ肽的序列YSO3IYSO3TN在最后一个氨基酸处与PSK-α不同。表达模式分析表明,编码PSK-δ的前体基因主要在豆科植物根瘤中表达。具体而言,在蒺藜苜蓿中,MtPSKδ在经历根瘤器官发生的根皮层细胞、根瘤原基和幼根瘤以及成熟根瘤的顶端区域中被检测到。通过液相色谱/质谱法检测到蒺藜苜蓿根瘤中硫酸化PSK-δ肽的积累。合成PSK-δ肽的应用显著增加了豆科植物的根瘤数量。同样,在转基因蒺藜苜蓿中过表达MtPSKδ显著促进了共生结瘤。根瘤数量的增加归因于PSK-δ诱导的根瘤器官发生增强。来自MtPSKδ突变体和RNA干扰试验的额外遗传证据表明,PSK-δ和PSK-α肽在调节根瘤器官发生中发挥冗余功能。这些结果表明,PSK-δ是一种豆科植物特有的新型植物硫酸化细胞因子,通过增强根瘤器官发生促进共生结瘤。

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