Lamour Kurt H, Finley Ledare, Hurtado-Gonzales Oscar, Gobena Daniel, Tierney Melinda, Meijer Harold J G
Department of Entomology and Plant Pathology, The University of Tennessee, Rm 205 Ellington Plant Science, 2431 Joe Johnson Dr., Knoxville 37996, USA.
Mol Plant Microbe Interact. 2006 Dec;19(12):1359-67. doi: 10.1094/MPMI-19-1359.
The genus Phytophthora belongs to the oomycetes and is composed of plant pathogens. Currently, there are no strategies to mutate specific genes for members of this genus. Whole genome sequences are available or being prepared for Phytophthora sojae, P. ramorum, P. infestans, and P. capsici and the development of molecular biological techniques for functional genomics is encouraged. This article describes the adaptation of the reverse-genetic strategy of targeting induced local lesions in genomes (TILLING) to isolate gene-specific mutants in Phytophthora spp. A genomic library of 2,400 ethylnitrosourea (ENU) mutants of P. sojae was created and screened for induced point mutations in the genes encoding a necrosisinducing protein (PsojNIP) and a Phytophthora-specific phospholipase D (PsPXTM-PLD). Mutations were detected in single individuals and included silent, missense, and nonsense changes. Homozygous mutant isolates carrying a potentially deleterious missense mutation in PsojNIP and a premature stop codon in PsPXTM-PLD were identified. No phenotypic effect has yet been found for the homozygous mutant of PsojNIP. For those of PsPXTM-PLD, a reduction in growth rate and an appressed mycelial growth was observed. This demonstrates the feasibility of target-selected gene disruption for Phytophthora spp. and adds an important tool for functional genomic investigation.
疫霉属属于卵菌纲,由植物病原体组成。目前,对于该属成员尚无突变特定基因的策略。大豆疫霉、栎叶疫霉、致病疫霉和辣椒疫霉的全基因组序列已经可用或正在准备中,因此鼓励开发用于功能基因组学的分子生物学技术。本文描述了将靶向基因组中诱导局部损伤的反向遗传策略(TILLING)应用于分离疫霉属基因特异性突变体的过程。构建了一个包含2400个大豆疫霉乙基亚硝基脲(ENU)突变体的基因组文库,并筛选编码坏死诱导蛋白(PsojNIP)和疫霉属特异性磷脂酶D(PsPXTM-PLD)的基因中的诱导点突变。在单个个体中检测到了突变,包括沉默突变、错义突变和无义突变。鉴定出了在PsojNIP中携带潜在有害错义突变以及在PsPXTM-PLD中携带提前终止密码子的纯合突变体分离株。尚未发现PsojNIP纯合突变体有表型效应。对于PsPXTM-PLD的纯合突变体,观察到生长速率降低和菌丝体紧贴生长。这证明了对疫霉属进行目标选择基因破坏的可行性,并为功能基因组研究增加了一个重要工具。