Laboratory of Phytopathology, Wageningen University, Binnenhaven 5, NL-6709 PD Wageningen and Graduate School Experimental Plant Sciences, The Netherlands.
Mol Plant Pathol. 2004 Sep 1;5(5):483-94. doi: 10.1111/j.1364-3703.2004.00247.x.
SUMMARY In many plant pathogens heterotrimeric G-proteins are essential signalling components involved in development and pathogenicity. In the late blight oomycete pathogen Phytophthora infestans the G-protein alpha subunit PiGPA1 controls zoospore motility and is required for virulence. To identify G-protein targets and signalling pathways downstream of PiGPA1, we used an optimized cDNA-AFLP protocol for analysing gene expression profiles in hypovirulent P. infestans strains that were previously generated by silencing the Pigpa1 gene. First, expression profiles in sporangia and mycelium of the wild-type strain were compared, and this revealed a substantial number of mycelium- or sporangia-specific transcript derived fragments (TDFs). Subsequently, profiles in sporangia of wild-type, Pigpa1-silenced mutants and of a strain expressing a constitutively active form of PiGPA1 were compared. From a total of 2860 TDFs, 92 were down- and 19 up-regulated in the Pigpa1-silenced mutants. A subset of the differential TDFs was cloned and sequenced, and homology searches were carried out against Phytophthora EST and genomic databases and the NCBI database. cDNA-AFLP expression profiles were verified by Northern blot analysis or RT-PCR. The power of cDNA-AFLP for the identification of target genes in knock-down or gain-of-function mutants is discussed.
摘要 在许多植物病原体中,三聚体 G 蛋白是参与发育和致病性的重要信号成分。在晚疫病卵菌病原体致病疫霉中,G 蛋白α亚基 PiGPA1 控制游动孢子的运动,并且是毒力所必需的。为了鉴定 PiGPA1 下游的 G 蛋白靶标和信号通路,我们使用了优化的 cDNA-AFLP 协议,用于分析先前通过沉默 Pigpa1 基因产生的低毒力致病疫霉菌株中的基因表达谱。首先,比较了野生型菌株的游动孢子和菌丝中的表达谱,这揭示了大量菌丝或游动孢子特异性转录衍生片段(TDF)。随后,比较了野生型、Pigpa1 沉默突变体和表达组成型活性形式的 PiGPA1 的游动孢子中的表达谱。在总共 2860 个 TDF 中,92 个在 Pigpa1 沉默突变体中下调,19 个上调。对差异 TDF 的一部分进行了克隆和测序,并与 Phytophthora EST 和基因组数据库以及 NCBI 数据库进行了同源性搜索。通过 Northern blot 分析或 RT-PCR 验证了 cDNA-AFLP 表达谱。讨论了 cDNA-AFLP 在敲除或功能获得突变体中鉴定靶基因的能力。