CSIRO Plant Industry, GPO Box 1600, Canberra, ACT 2601, Australia.
Mol Plant Pathol. 2006 Mar 1;7(2):87-101. doi: 10.1111/j.1364-3703.2006.00327.x.
SUMMARY We sought to identify Fusarium oxysporum f. sp. vasinfectum (Fov) genes that may be associated with pathogenicity. Initially we utilized microarray and Q-PCR technology to identify Fov genes expressed in root and hypocotyl tissues during a compatible infection of cotton. We identified 218 fungal clones representing 174 Fov non-redundant genes as expressed in planta. The majority of the expressed sequences were expressed in infected roots, with only six genes detected in hypocotyl tissue. The Fov genes identified were predominately of unknown function or associated with fungal growth and energy production. We then analysed the expression of the identified fungal genes in infected roots and in saprophytically grown mycelia and identified 11 genes preferentially expressed in plant tissue. A putative oxidoreductase gene (with homology to AtsC) was found to be highly preferentially expressed in planta. In Agrobacterium tumefaciens, AtsC is associated with virulence. Inoculation of a susceptible and a partially resistant cotton cultivar with either a pathogenic or a non-pathogenic isolate of Fov revealed that the expression of the Fov AtsC homologue was associated with pathogenicity and disease symptom formation.
摘要 本研究旨在鉴定与致病相关的尖孢镰刀菌古巴专化型(Fusarium oxysporum f. sp. vasinfectum,Fov)基因。我们最初利用微阵列和 Q-PCR 技术,鉴定了棉花亲和性感染过程中在根部和下胚轴组织中表达的 Fov 基因。我们鉴定了 218 个真菌克隆,代表了 174 个 Fov 非冗余基因在植物中表达。大多数表达的序列在感染的根部表达,只有 6 个基因在下胚轴组织中检测到。鉴定的 Fov 基因主要具有未知功能或与真菌生长和能量产生有关。然后,我们分析了在感染的根部和腐生生长的菌丝体中鉴定出的真菌基因的表达情况,发现 11 个基因在植物组织中优先表达。一个假定的氧化还原酶基因(与 AtsC 同源)在植物中高度优先表达。在根癌农杆菌中,AtsC 与毒力有关。用致病或非致病的 Fov 分离株接种易感和部分抗性棉花品种,发现 Fov AtsC 同源物的表达与致病性和疾病症状形成有关。