Biochimie et Physiologie Moléculaire des Plantes, Unité Mixte de Recherche Montpellier, SupAgro/CNRS/INRA/Université Montpellier II, 2 Place Viala, F-34060, Montpellier Cedex 1, France.
Montpellier SupAgro, UMR AGAP, F-34060, Montpellier, France.
New Phytol. 2013 Nov;200(3):820-833. doi: 10.1111/nph.12396. Epub 2013 Jul 19.
Plant defensins are recognized for their antifungal properties. However, a few type 1 defensins (PDF1s) were identified for their cellular zinc (Zn) tolerance properties after a study of the metal extremophile Arabidopsis halleri. In order to investigate whether different paralogues would display specialized functions, the A. halleri PDF1 family was characterized at the functional and genomic levels. Eleven PDF1s were isolated from A. halleri. Their ability to provide Zn tolerance in yeast cells, their activity against Fusarium oxysporum f. sp. melonii, and their level of expression in planta were compared with those of the seven A. thaliana PDF1s. The genomic organization of the PDF1 family was comparatively analysed within the Arabidopsis genus. AhPDF1s and AtPDF1s were able to confer Zn tolerance and AhPDF1s also displayed antifungal activity. PDF1 transcripts were constitutively more abundant in A. halleri than in A. thaliana. Within the Arabidopsis genus, the PDF1 family is evolutionarily dynamic, in terms of gain and loss of gene copy. Arabidopsis halleri PDF1s display no superior abilities to provide Zn tolerance. A constitutive increase in AhPDF1 transcript accumulation is proposed to be an evolutionary innovation co-opting the promiscuous PDF1 protein for its contribution to Zn tolerance in A. halleri.
植物防御素因其抗真菌特性而广为人知。然而,在对金属极端微生物拟南芥进行研究后,发现了少数 1 型防御素 (PDF1) 具有细胞锌 (Zn) 耐受特性。为了研究不同的同源基因是否具有特殊的功能,在功能和基因组水平上对拟南芥 PDF1 家族进行了表征。从拟南芥中分离出 11 种 PDF1。比较了它们在酵母细胞中提供 Zn 耐受性的能力、对尖孢镰刀菌 f. sp. melonii 的活性以及在植物体内的表达水平,与 7 种拟南芥 PDF1 进行了比较。在拟南芥属内比较分析了 PDF1 家族的基因组组织。AhPDF1s 和 AtPDF1s 能够赋予 Zn 耐受性,而 AhPDF1s 还具有抗真菌活性。与拟南芥相比,PDF1 转录本在拟南芥中更为丰富。就基因拷贝的获得和丢失而言,在拟南芥属内,PDF1 家族在进化上是动态的。拟南芥 PDF1s 没有提供 Zn 耐受性的优越能力。拟南芥 PDF1 转录本积累的组成性增加被认为是一种进化创新,它利用混杂的 PDF1 蛋白为拟南芥提供 Zn 耐受性。