Molecular Plant Pathology, Swammerdam Institute for Life Sciences (SILS), University of Amsterdam, Amsterdam, the Netherlands.
Mass Spectrometry of Biomolecules, Swammerdam Institute for Life Sciences (SILS), University of Amsterdam, Amsterdam, the Netherlands.
Plant Biotechnol J. 2024 Jan;22(1):248-261. doi: 10.1111/pbi.14183. Epub 2023 Oct 11.
Vascular wilt diseases caused by Fusarium oxysporum are a major threat to many agriculturally important crops. Genetic resistance is rare and inevitably overcome by the emergence of new races. To identify potentially durable and non-race-specific genetic resistance against Fusarium wilt diseases, we set out to identify effector targets in tomato that mediate susceptibility to the fungus. For this purpose, we used the SIX8 effector protein, an important and conserved virulence factor present in many pathogenic F. oxysporum isolates. Using protein pull-downs and yeast two-hybrid assays, SIX8 was found to interact specifically with two members of the tomato TOPLESS family: TPL1 and TPL2. Loss-of-function mutations in TPL1 strongly reduced disease susceptibility to Fusarium wilt and a tpl1;tpl2 double mutant exerted an even higher level of resistance. Similarly, Arabidopsis tpl;tpr1 mutants became significantly less diseased upon F. oxysporum inoculation as compared to wildtype plants. We conclude that TPLs encode susceptibility genes whose mutation can confer resistance to F. oxysporum.
由尖孢镰刀菌引起的维管束萎蔫病是许多重要农作物的主要威胁。遗传抗性很少见,而且新菌系的出现不可避免地会克服它。为了鉴定对枯萎病具有潜在持久和非专化性遗传抗性的目标,我们着手鉴定介导番茄对真菌易感性的效应子靶标。为此,我们使用了 SIX8 效应蛋白,这是许多致病尖孢镰刀菌分离物中存在的一种重要且保守的毒力因子。通过蛋白下拉和酵母双杂交实验,发现 SIX8 与番茄 TOPLESS 家族的两个成员(TPL1 和 TPL2)特异性相互作用。TPL1 的功能丧失突变强烈降低了对枯萎病的易感性,而 tpl1;tpl2 双突变体则表现出更高水平的抗性。类似地,与野生型植物相比,拟南芥 tpl;tpr1 突变体在接种尖孢镰刀菌后患病程度显著降低。我们得出结论,TPL 基因编码易感性基因,其突变可赋予对 F. oxysporum 的抗性。