CSIRO Agriculture and Food, Canberra, ACT 2601, Australia.
Australian Research Council Centre of Excellence in Plant Energy Biology, School of Agriculture, Food and Wine, University of Adelaide, Urrbrae, SA 5064, Australia.
J Exp Bot. 2024 Jul 10;75(13):3877-3890. doi: 10.1093/jxb/erae164.
Partial resistance to multiple biotrophic fungal pathogens in wheat (Triticum aestivum L.) is conferred by a variant of the Lr67 gene, which encodes a hexose-proton symporter. Two mutations (G144R and V387L) differentiate the resistant and susceptible protein variants (Lr67res and Lr67sus). Lr67res lacks sugar transport capability and was associated with anion transporter-like properties when expressed in Xenopus laevis oocytes. Here, we extended this functional characterization to include yeast and in planta studies. The Lr67res allele, but not Lr67sus, induced sensitivity to ions in yeast (including NaCl, LiCl, and KI), which is consistent with our previous observations that Lr67res expression in oocytes induces novel ion fluxes. We demonstrate that another naturally occurring single amino acid variant in wheat, containing only the Lr67G144R mutation, confers rust resistance. Transgenic barley plants expressing the orthologous HvSTP13 gene carrying the G144R and V387L mutations were also more resistant to Puccinia hordei infection. NaCl treatment of pot-grown adult wheat plants with the Lr67res allele induced leaf tip necrosis and partial leaf rust resistance. An Lr67res-like function can be introduced into orthologous plant hexose transporters via single amino acid mutation, highlighting the strong possibility of generating disease resistance in other crops, especially with gene editing.
小麦(Triticum aestivum L.)对多种生物营养性真菌病原体的部分抗性由 Lr67 基因的变异体赋予,该基因编码己糖质子同向转运蛋白。两个突变(G144R 和 V387L)区分了抗性和敏感的蛋白变异体(Lr67res 和 Lr67sus)。Lr67res 缺乏糖转运能力,当在非洲爪蟾卵母细胞中表达时,与阴离子转运蛋白样特性相关。在这里,我们将这种功能特征扩展到包括酵母和体内研究。Lr67res 等位基因,但不是 Lr67sus,会使酵母(包括 NaCl、LiCl 和 KI)中的离子敏感,这与我们之前的观察结果一致,即 Lr67res 在卵母细胞中的表达会诱导新的离子流。我们证明,小麦中另一个自然发生的单一氨基酸变异体,仅包含 Lr67G144R 突变,赋予了对锈病的抗性。表达含有 G144R 和 V387L 突变的同源 HvSTP13 基因的转基因大麦植物也对禾柄锈菌感染更具抗性。用 Lr67res 等位基因处理盆栽成年小麦植物的 NaCl 会诱导叶尖坏死和部分叶锈病抗性。通过单个氨基酸突变,可以将类似于 Lr67res 的功能引入同源植物己糖转运蛋白中,这突出了在其他作物中产生抗病性的可能性很大,尤其是通过基因编辑。