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脂肪醇氧化酶 3(FAO3)和 FAO4b 连接了拟南芥茎蜡生物合成中的醇形成途径和烷形成途径。

Fatty alcohol oxidase 3 (FAO3) and FAO4b connect the alcohol- and alkane-forming pathways in Arabidopsis stem wax biosynthesis.

机构信息

College of Life Sciences, Shandong Normal University, Jinan, 250014, China.

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan, 430062, China.

出版信息

J Exp Bot. 2022 May 13;73(9):3018-3029. doi: 10.1093/jxb/erab532.

Abstract

The alcohol- and alkane-forming pathways in cuticular wax biosynthesis are well characterized in Arabidopsis. However, potential interactions between the two pathways remain unclear. Here, we reveal that mutation of CER4, the key gene in the alcohol-forming pathway, also led to a deficiency in the alkane-forming pathway in distal stems. To trace the connection between the two pathways, we characterized two homologs of fatty alcohol oxidase (FAO), FAO3 and FAO4b, which were highly expressed in distal stems and localized to the endoplasmic reticulum. The amounts of waxes from the alkane-forming pathway were significantly decreased in stems of fao4b and much lower in fao3 fao4b plants, indicative of an overlapping function for the two proteins in wax synthesis. Additionally, overexpression of FAO3 and FAO4b in Arabidopsis resulted in a dramatic reduction of primary alcohols and significant increases of aldehydes and related waxes. Moreover, expressing FAO3 or FAO4b led to significantly decreased amounts of C18-C26 alcohols in yeast co-expressing CER4 and FAR1. Collectively, these findings demonstrate that FAO3 and FAO4b are functionally redundant in suppressing accumulation of primary alcohols and contributing to aldehyde production, which provides a missing and long-sought-after link between these two pathways in wax biosynthesis.

摘要

角质层蜡生物合成中的醇和烷形成途径在拟南芥中得到了很好的描述。然而,这两种途径之间的潜在相互作用尚不清楚。在这里,我们揭示了关键基因 CER4 的突变也导致了远端茎中烷形成途径的缺陷。为了追踪这两种途径之间的联系,我们对两种脂肪酸醇氧化酶 (FAO) 的同源物 FAO3 和 FAO4b 进行了特征描述,它们在远端茎中高度表达,并定位于内质网。烷形成途径产生的蜡的量在 fao4b 茎中显著减少,而在 fao3 fao4b 植物中则更低,表明这两种蛋白质在蜡合成中具有重叠的功能。此外,FAO3 和 FAO4b 在拟南芥中的过表达导致初级醇的大量减少,醛和相关蜡的显著增加。此外,在共表达 CER4 和 FAR1 的酵母中表达 FAO3 或 FAO4b 会导致 C18-C26 醇的量显著减少。总的来说,这些发现表明 FAO3 和 FAO4b 在抑制初级醇的积累和促进醛的产生方面具有功能冗余性,这为蜡生物合成中这两种途径之间提供了一个缺失且长期以来一直寻求的联系。

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