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拟南芥中具有渗透性的角质层可使其对灰霉病菌产生强大抗性。

A permeable cuticle in Arabidopsis leads to a strong resistance to Botrytis cinerea.

作者信息

Bessire Michael, Chassot Céline, Jacquat Anne-Claude, Humphry Matt, Borel Sandra, Petétot Jean Macdonald-Comber, Métraux Jean-Pierre, Nawrath Christiane

机构信息

Department of Plant Molecular Biology, University of Lausanne, Lausanne, Switzerland.

出版信息

EMBO J. 2007 Apr 18;26(8):2158-68. doi: 10.1038/sj.emboj.7601658. Epub 2007 Mar 29.

Abstract

The plant cuticle composed of cutin, a lipid-derived polyester, and cuticular waxes covers the aerial portions of plants and constitutes a hydrophobic extracellular matrix layer that protects plants against environmental stresses. The botrytis-resistant 1 (bre1) mutant of Arabidopsis reveals that a permeable cuticle does not facilitate the entry of fungal pathogens in general, but surprisingly causes an arrest of invasion by Botrytis. BRE1 was identified to be long-chain acyl-CoA synthetase2 (LACS2) that has previously been shown to be involved in cuticle development and was here found to be essential for cutin biosynthesis. bre1/lacs2 has a five-fold reduction in dicarboxylic acids, the typical monomers of Arabidopsis cutin. Comparison of bre1/lacs2 with the mutants lacerata and hothead revealed that an increased permeability of the cuticle facilitates perception of putative elicitors in potato dextrose broth, leading to the presence of antifungal compound(s) at the surface of Arabidopsis plants that confer resistance to Botrytis and Sclerotinia. Arabidopsis plants with a permeable cuticle have thus an altered perception of their environment and change their physiology accordingly.

摘要

植物角质层由角质(一种脂质衍生的聚酯)和角质蜡组成,覆盖植物的地上部分,构成一个疏水性细胞外基质层,保护植物免受环境胁迫。拟南芥的抗灰霉病1(bre1)突变体表明,一般来说,可渗透的角质层并不利于真菌病原体的侵入,但令人惊讶的是,它会导致灰霉病菌的侵入受阻。BRE1被鉴定为长链酰基辅酶A合成酶2(LACS2),此前已证明其参与角质层发育,在此发现它对角质生物合成至关重要。bre1/lacs2中二元羧酸(拟南芥角质的典型单体)减少了五倍。将bre1/lacs2与lacerata和hothead突变体进行比较发现,角质层通透性增加有助于感知马铃薯葡萄糖肉汤中的假定激发子,从而导致拟南芥植物表面存在抗真菌化合物,赋予其对灰霉病菌和核盘菌的抗性。因此,具有可渗透角质层的拟南芥植物对其环境的感知发生了改变,并相应地改变了其生理状态。

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