Vieira Paulo, Maier Thomas R, Eves-van den Akker Sebastian, Howe Dana K, Zasada Inga, Baum Thomas J, Eisenback Jonathan D, Kamo Kathryn
Department of Plant Pathology, Physiology, and Weed Science, Virginia Tech, Blacksburg, VA 24061, USA.
Floral and Nursery Plants Research Unit, U.S. National Arboretum, U.S. Department of Agriculture, Beltsville, MD 20705-2350, USA.
Mol Plant Pathol. 2018 Feb 9;19(8):1887-907. doi: 10.1111/mpp.12666.
Pratylenchus penetrans is one of the most important species of root lesion nematodes (RLNs) because of its detrimental and economic impact in a wide range of crops. Similar to other plant-parasitic nematodes (PPNs), P. penetrans harbours a significant number of secreted proteins that play key roles during parasitism. Here, we combined spatially and temporally resolved next-generation sequencing datasets of P. penetrans to select a list of candidate genes aimed at the identification of a panel of effector genes for this species. We determined the spatial expression of transcripts of 22 candidate effectors within the oesophageal glands of P. penetrans by in situ hybridization. These comprised homologues of known effectors of other PPNs with diverse putative functions, as well as novel pioneer effectors specific to RLNs. It is noteworthy that five of the pioneer effectors encode extremely proline-rich proteins. We then combined in situ localization of effectors with available genomic data to identify a non-coding motif enriched in promoter regions of a subset of P. penetrans effectors, and thus a putative hallmark of spatial expression. Expression profiling analyses of a subset of candidate effectors confirmed their expression during plant infection. Our current results provide the most comprehensive panel of effectors found for RLNs. Considering the damage caused by P. penetrans, this information provides valuable data to elucidate the mode of parasitism of this nematode and offers useful suggestions regarding the potential use of P. penetrans-specific target effector genes to control this important pathogen.
穿刺短体线虫是根腐线虫中最重要的物种之一,因为它对多种作物具有有害影响并造成经济损失。与其他植物寄生线虫(PPN)类似,穿刺短体线虫含有大量在寄生过程中起关键作用的分泌蛋白。在这里,我们结合了穿刺短体线虫在空间和时间上解析的下一代测序数据集,以选择一组候选基因,旨在鉴定该物种的一组效应子基因。我们通过原位杂交确定了22个候选效应子转录本在穿刺短体线虫食管腺内的空间表达。这些包括具有不同推定功能的其他PPN已知效应子的同源物,以及根腐线虫特有的新型先驱效应子。值得注意的是,其中五个先驱效应子编码富含脯氨酸的蛋白质。然后,我们将效应子的原位定位与可用的基因组数据相结合,以鉴定在穿刺短体线虫效应子子集的启动子区域中富集的非编码基序,从而确定空间表达的推定标志。对一部分候选效应子的表达谱分析证实了它们在植物感染期间的表达。我们目前的结果提供了根腐线虫中发现的最全面的效应子组。考虑到穿刺短体线虫造成的损害,这些信息为阐明该线虫的寄生模式提供了有价值的数据,并为潜在利用穿刺短体线虫特异性靶效应子基因控制这一重要病原体提供了有用的建议。