Departamento de Genética, Evolução e Bioagentes, Universidade Estadual de Campinas, São Paulo, Brazil.
PLoS One. 2012;7(9):e45929. doi: 10.1371/journal.pone.0045929. Epub 2012 Sep 20.
The widespread SCP/TAPS superfamily (SCP/Tpx-1/Ag5/PR-1/Sc7) has multiple biological functions, including roles in the immune response of plants and animals, development of male reproductive tract in mammals, venom activity in insects and reptiles and host invasion by parasitic worms. Plant Pathogenesis Related 1 (PR-1) proteins belong to this superfamily and have been characterized as markers of induced defense against pathogens. This work presents the characterization of eleven genes homologous to plant PR-1 genes, designated as MpPR-1, which were identified in the genome of Moniliophthora perniciosa, a basidiomycete fungus responsible for causing the devastating witches' broom disease in cacao. We describe gene structure, protein alignment and modeling analyses of the MpPR-1 family. Additionally, the expression profiles of MpPR-1 genes were assessed by qPCR in different stages throughout the fungal life cycle. A specific expression pattern was verified for each member of the MpPR-1 family in the conditions analyzed. Interestingly, some of them were highly and specifically expressed during the interaction of the fungus with cacao, suggesting a role for the MpPR-1 proteins in the infective process of this pathogen. Hypothetical functions assigned to members of the MpPR-1 family include neutralization of plant defenses, antimicrobial activity to avoid competitors and fruiting body physiology. This study provides strong evidence on the importance of PR-1-like genes for fungal virulence on plants.
广泛存在的 SCP/TAPS 超家族(SCP/Tpx-1/Ag5/PR-1/Sc7)具有多种生物学功能,包括在动植物的免疫反应、哺乳动物雄性生殖道发育、昆虫和爬行动物毒液活性以及寄生虫对宿主的入侵中发挥作用。植物病程相关蛋白 1(PR-1)蛋白属于该超家族,已被表征为对病原体诱导防御的标志物。本研究对在引起可可毁灭性扫帚病的担子菌真菌蜜环菌基因组中鉴定出的 11 个与植物 PR-1 基因同源的基因(命名为 MpPR-1)进行了特征描述。我们描述了 MpPR-1 家族的基因结构、蛋白质比对和建模分析。此外,通过 qPCR 在真菌生命周期的不同阶段评估了 MpPR-1 基因的表达谱。在分析的条件下,MpPR-1 家族的每个成员都验证了特定的表达模式。有趣的是,其中一些在真菌与可可相互作用期间高度且特异性表达,表明 MpPR-1 蛋白在该病原体的感染过程中发挥作用。分配给 MpPR-1 家族成员的假设功能包括中和植物防御、避免竞争的抗菌活性和子实体生理学。本研究为 PR-1 样基因对植物病原真菌的毒力的重要性提供了有力证据。