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质外体 III 类过氧化物酶 PRX62 和 PRX69 促进拟南芥根毛在低温下的生长。

Apoplastic class III peroxidases PRX62 and PRX69 promote Arabidopsis root hair growth at low temperature.

机构信息

Fundación Instituto Leloir and IIBBA-CONICET, Av. Patricias Argentinas 435, Buenos Aires, C1405BWE, Argentina.

Université de Toulouse, UPS, UMR 5546, Laboratoire de Recherche en Sciences Végétales, Université de Toulouse, CNRS, UPS, Toulouse INP, Castanet-Tolosan, 31326, France.

出版信息

Nat Commun. 2022 Mar 14;13(1):1310. doi: 10.1038/s41467-022-28833-4.

Abstract

Root Hairs (RHs) growth is influenced by endogenous and by external environmental signals that coordinately regulate its final cell size. We have recently determined that RH growth was unexpectedly boosted when Arabidopsis thaliana seedlings are cultivated at low temperatures. It was proposed that RH growth plasticity in response to low temperature was linked to a reduced nutrient availability in the media. Here, we explore the molecular basis of this RH growth response by using a Genome Wide Association Study (GWAS) approach using Arabidopsis thaliana natural accessions. We identify the poorly characterized PEROXIDASE 62 (PRX62) and a related protein PRX69 as key proteins under moderate low temperature stress. Strikingly, a cell wall protein extensin (EXT) reporter reveals the effect of peroxidase activity on EXT cell wall association at 10 °C in the RH apical zone. Collectively, our results indicate that PRX62, and to a lesser extent PRX69, are key apoplastic PRXs that modulate ROS-homeostasis and cell wall EXT-insolubilization linked to RH elongation at low temperature.

摘要

根毛(RH)的生长受内源性和外部环境信号的影响,这些信号协同调节其最终细胞大小。我们最近发现,拟南芥幼苗在低温下培养时,根毛的生长出人意料地得到了促进。有人提出,根毛对低温的生长可塑性与培养基中营养物质可用性的降低有关。在这里,我们使用拟南芥天然品系的全基因组关联研究(GWAS)方法来探索这种根毛生长反应的分子基础。我们鉴定了特征不明显的过氧化物酶 62(PRX62)和相关蛋白 PRX69 作为中度低温胁迫下的关键蛋白。引人注目的是,过氧化物酶活性对 10°C 时 RH 顶端区 EXT 细胞壁结合的影响可以通过细胞壁蛋白伸展素(EXT)报告基因揭示。总的来说,我们的结果表明,PRX62 和在较小程度上的 PRX69 是关键的质外体 PRX,它们调节 ROS 稳态和细胞壁 EXT 不溶性,与低温下 RH 的伸长有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b493/8921275/a39bd5be3960/41467_2022_28833_Fig1_HTML.jpg

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