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工程化香豆素积累可降低真菌毒素诱导的氧化应激和疾病易感性。

Engineered coumarin accumulation reduces mycotoxin-induced oxidative stress and disease susceptibility.

机构信息

Department of Plant Physiology, RWTH Aachen University, Aachen, Germany.

Department of Molecular Phytomedicine, University of Bonn, Bonn, Germany.

出版信息

Plant Biotechnol J. 2023 Dec;21(12):2490-2506. doi: 10.1111/pbi.14144. Epub 2023 Aug 14.

Abstract

Coumarins can fight pathogens and are thus promising for crop protection. Their biosynthesis, however, has not yet been engineered in crops. We tailored the constitutive accumulation of coumarins in transgenic Nicotiana benthamiana, Glycine max and Arabidopsis thaliana plants, as well as in Nicotiana tabacum BY-2 suspension cells. We did so by overexpressing A. thaliana feruloyl-CoA 6-hydroxylase 1 (AtF6'H1), encoding the key enzyme of scopoletin biosynthesis. Besides scopoletin and its glucoside scopolin, esculin at low level was the only other coumarin detected in transgenic cells. Mechanical damage of scopolin-accumulating tissue led to a swift release of scopoletin, presumably from the scopolin pool. High scopolin levels in A. thaliana roots coincided with reduced susceptibility to the root-parasitic nematode Heterodera schachtii. In addition, transgenic soybean plants were more tolerant to the soil-borne pathogenic fungus Fusarium virguliforme. Because mycotoxin-induced accumulation of reactive oxygen species and cell death were reduced in the AtF6'H1-overexpressors, the weaker sensitivity to F. virguliforme may be caused by attenuated oxidative damage of coumarin-hyperaccumulating cells. Together, engineered coumarin accumulation is promising for enhanced disease resilience of crops.

摘要

香豆素可以抵御病原体,因此在作物保护方面具有广阔的应用前景。然而,其生物合成尚未在作物中得到工程化应用。我们通过过表达拟南芥 6-香豆酰辅酶 A 羟化酶 1(AtF6'H1),在转基因烟草、大豆和拟南芥植株,以及烟草 BY-2 悬浮细胞中实现了香豆素的组成型积累。AtF6'H1 编码了香豆素生物合成的关键酶。除了香豆素和其葡萄糖苷scopolin,低水平的esculetin 是转基因细胞中唯一检测到的另一种香豆素。积累 scopolin 的组织受到机械损伤后,香豆素迅速释放,可能来自 scopolin 库。在拟南芥根中高水平的 scopolin 与对根寄生线虫异皮线虫的敏感性降低有关。此外,转基因大豆植株对土壤传播的致病真菌尖孢镰刀菌的耐受性更强。由于过表达 AtF6'H1 的植物中真菌毒素诱导的活性氧积累和细胞死亡减少,对 F. virguliforme 的敏感性降低可能是由于香豆素超积累细胞的氧化损伤减弱所致。总的来说,工程化的香豆素积累有望增强作物的疾病抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5051/11376766/c2881bca18a0/PBI-21-2490-g005.jpg

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