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田间种植的转 Pm3e 基因小麦品系表现出抗白粉病的特性,并且与高转基因表达相关的适应性代价无关。

Field grown transgenic Pm3e wheat lines show powdery mildew resistance and no fitness costs associated with high transgene expression.

机构信息

Department of Plant and Microbial Biology, University of Zurich, Zollikerstrasse 107, 8008, Zurich, Switzerland.

Agroscope, Reckenholzstrasse 191, 8046, Zurich, Switzerland.

出版信息

Transgenic Res. 2019 Feb;28(1):9-20. doi: 10.1007/s11248-018-0099-5. Epub 2018 Oct 9.

Abstract

Pm3 from wheat encodes a nucleotide-binding leucine-rich repeat type of receptor and confers resistance to powdery mildew caused by the fungal pathogen Blumeria graminis f.sp. tritici (Bgt). Each of the 17 functional Pm3 alleles identified so far confers resistance to a distinct spectrum of Bgt isolates. Variant Pm3e has been found in wheat donor line W150 and differs only by two amino acids from the non-functional variant Pm3CS. In order to evaluate the capability of Pm3e to provide powdery mildew field resistance, we generated transgenic Pm3e lines by biolistic transformation of the powdery mildew susceptible spring wheat cultivar Bobwhite. Field trials conducted during four field seasons in Switzerland showed significant and strong powdery mildew resistance of the Pm3e transgenic lines, whereas the corresponding biological sister lines, not containing the transgene, were severely powdery mildew infected. Thus Pm3e alone is responsible for the strong resistance phenotype. The field grown transgenic lines showed high transgene expression and Pm3e protein accumulation with no fitness costs on plant development and yield associated with Pm3e abundance. Line E#1 as well as sister line E#1 showed delayed flowering due to somaclonal variation. The study shows the capability of Pm3e in providing strong powdery mildew field resistance, making its use in wheat breeding programs very promising.

摘要

小麦 Pm3 基因编码一个核苷酸结合富含亮氨酸重复受体,赋予对由真菌病原体禾布氏白粉菌引起的白粉病的抗性。到目前为止,已鉴定出的 17 个功能性 Pm3 等位基因中的每一个都赋予了对特定范围的禾布氏白粉菌分离株的抗性。在小麦供体系 W150 中发现了变体 Pm3e,它与非功能性变体 Pm3CS 仅相差两个氨基酸。为了评估 Pm3e 提供白粉病田间抗性的能力,我们通过生物弹丸转化法将其转化为对白粉病敏感的春小麦品种 Bobwhite,生成了 Pm3e 转基因系。在瑞士进行的四个田间季节的田间试验表明,Pm3e 转基因系具有显著且强烈的白粉病抗性,而不含转基因的相应生物姐妹系则严重感染白粉病。因此,单独的 Pm3e 是强抗性表型的原因。田间生长的转基因系表现出高的转基因表达和 Pm3e 蛋白积累,与 Pm3e 丰度相关的植物发育和产量没有适应性成本。E#1 系以及姐妹系 E#1 由于体细胞变异而出现开花延迟。该研究表明了 Pm3e 在提供强白粉病田间抗性方面的能力,使其在小麦育种计划中具有很大的应用前景。

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