Giuliano Garisto Donzelli Bruno, Gibson Donna M, Krasnoff Stuart B
School of Integrative Plant Science - Plant Pathology and Plant-Microbe Biology Section, Cornell University, Ithaca, NY 14853, United States.
USDA ARS, Robert W. Holley Center for Agriculture and Health, 538 Tower Road, Ithaca, NY 14853, United States.
Fungal Genet Biol. 2015 Sep;82:56-68. doi: 10.1016/j.fgb.2015.06.008. Epub 2015 Jun 29.
Efficient iron acquisition mechanisms are fundamental for microbial survival in the environment and for pathogen virulence within their hosts. M. robertsii produces two known iron-binding natural products: metachelins, which are used to scavenge extracellular iron, and ferricrocin, which is strictly intracellular. To study the contribution of siderophore-mediated iron uptake and storage to M. robertsii fitness, we generated null mutants for each siderophore synthase gene (mrsidD and mrsidC, respectively), as well as for the iron uptake transcriptional repressor mrsreA. All of these mutants showed impaired germination speed, differential sensitivity to hydrogen peroxide, and differential ability to overcome iron chelation on growth-limiting iron concentrations. RT-qPCR data supported regulation of mrsreA, mrsidC, and mrsidD by supplied iron in vitro and during growth within the insect host, Spodoptera exigua. We also observed strong upregulation of the insect iron-binding proteins, transferrins, during infection. Insect bioassays revealed that ferricrocin is required for full virulence against S. exigua; neither the loss of metachelin production nor the deletion of the transcription factor mrsreA significantly affected M. robertsii virulence.
高效的铁获取机制对于微生物在环境中的生存以及病原体在宿主内的毒力至关重要。罗伯茨绿僵菌产生两种已知的铁结合天然产物:用于清除细胞外铁的铁载体菌素,以及严格存在于细胞内的铁载体铁菌素。为了研究铁载体介导的铁摄取和储存对罗伯茨绿僵菌适应性的贡献,我们构建了每个铁载体合成酶基因(分别为mrsidD和mrsidC)以及铁摄取转录阻遏物mrsreA的缺失突变体。所有这些突变体在萌发速度上均受损,对过氧化氢的敏感性不同,并且在生长受限的铁浓度下克服铁螯合的能力也不同。逆转录定量PCR数据支持在体外以及在昆虫宿主甜菜夜蛾体内生长期间,铁对mrsreA、mrsidC和mrsidD的调控作用。我们还观察到在感染期间昆虫铁结合蛋白转铁蛋白的强烈上调。昆虫生物测定表明,铁载体铁菌素是对甜菜夜蛾具有完全毒力所必需的;铁载体菌素产生的丧失或转录因子mrsreA的缺失均未显著影响罗伯茨绿僵菌的毒力。