Oide Shinichi, Krasnoff Stuart B, Gibson Donna M, Turgeon B Gillian
Department of Plant Pathology and Plant-Microbe Biology, 334 Plant Science Bldg., Cornell University, Ithaca, NY 14853, USA.
Eukaryot Cell. 2007 Aug;6(8):1339-53. doi: 10.1128/EC.00111-07. Epub 2007 Jun 29.
Connections between fungal development and secondary metabolism have been reported previously, but as yet, no comprehensive analysis of a family of secondary metabolites and their possible role in fungal development has been reported. In the present study, mutant strains of the heterothallic ascomycete Cochliobolus heterostrophus, each lacking one of 12 genes (NPS1 to NPS12) encoding a nonribosomal peptide synthetase (NRPS), were examined for a role in sexual development. One type of strain (Delta nps2) was defective in ascus/ascospore development in homozygous Delta nps2 crosses. Homozygous crosses of the remaining 11 Delta nps strains showed wild-type (WT) fertility. Phylogenetic, expression, and biochemical analyses demonstrated that the NRPS encoded by NPS2 is responsible for the biosynthesis of ferricrocin, the intracellular siderophore of C. heterostrophus. Functional conservation of NPS2 in both heterothallic C. heterostrophus and the unrelated homothallic ascomycete Gibberella zeae was demonstrated. G. zeae Delta nps2 strains are concomitantly defective in intracellular siderophore (ferricrocin) biosynthesis and sexual development. Exogenous application of iron partially restored fertility to C. heterostrophus and G. zeae Delta nps2 strains, demonstrating that abnormal sexual development of Delta nps2 strains is at least partly due to their iron deficiency. Exogenous application of the natural siderophore ferricrocin to C. heterostrophus and G. zeae Delta nps2 strains restored WT fertility. NPS1, a G. zeae NPS gene that groups phylogenetically with NPS2, does not play a role in sexual development. Overall, these data demonstrate that iron and intracellular siderophores are essential for successful sexual development of the heterothallic ascomycete C. heterostrophus and the homothallic ascomycete G. zeae.
此前已有关于真菌发育与次级代谢之间联系的报道,但迄今为止,尚未见对一族次级代谢产物及其在真菌发育中可能作用的全面分析报道。在本研究中,对异宗配合子囊菌玉米小斑病菌(Cochliobolus heterostrophus)的突变菌株进行了检测,这些菌株各自缺失编码非核糖体肽合成酶(NRPS)的12个基因(NPS1至NPS12)中的一个,以探究其在有性发育中的作用。一种菌株(Δnps2)在纯合Δnps2杂交中,子囊/子囊孢子发育存在缺陷。其余11个Δnps菌株的纯合杂交显示出野生型(WT)育性。系统发育、表达及生化分析表明,NPS2编码的NRPS负责玉米小斑病菌细胞内铁载体铁载体菌素(ferricrocin)的生物合成。已证实在异宗配合的玉米小斑病菌和不相关的同宗配合子囊菌禾谷镰刀菌(Gibberella zeae)中,NPS2具有功能保守性。禾谷镰刀菌Δnps2菌株在细胞内铁载体(铁载体菌素)生物合成和有性发育方面同时存在缺陷。向玉米小斑病菌和禾谷镰刀菌Δnps2菌株外源施加铁可部分恢复其育性,表明Δnps2菌株异常的有性发育至少部分归因于其缺铁。向玉米小斑病菌和禾谷镰刀菌Δnps2菌株外源施加天然铁载体铁载体菌素可恢复野生型育性。NPS1是禾谷镰刀菌中一个在系统发育上与NPS2归为一类的NPS基因,在有性发育中不起作用。总体而言,这些数据表明铁和细胞内铁载体对于异宗配合子囊菌玉米小斑病菌和同宗配合子囊菌禾谷镰刀菌成功进行有性发育至关重要。