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STATAWAARS:与植物寄生线虫松材线虫主要效应器产生组织的空间表达相关的启动子基序。

STATAWAARS: a promoter motif associated with spatial expression in the major effector-producing tissues of the plant-parasitic nematode Bursaphelenchus xylophilus.

机构信息

NemaLab, ICAAM - Instituto de Ciências Agrárias e Ambientais Mediterrânicas, Universidade de Évora, Instituto de Investigação e Formação Avançada, Universidade de Évora, Pólo da Mitra, Ap. 94, 7006-554, Évora, Portugal.

Cell and Molecular Sciences Group, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.

出版信息

BMC Genomics. 2018 Jul 27;19(1):553. doi: 10.1186/s12864-018-4908-2.

Abstract

BACKGROUND

Plant-parasitic nematodes cause severe damage to a wide range of crop and forest species worldwide. The migratory endoparasitic nematode, Bursaphelenchus xylophilus, (pinewood nematode) is a quarantine pathogen that infects pine trees and has a hugely detrimental economic impact on the forestry industry. Under certain environmental conditions large areas of infected trees can be destroyed, leading to damage on an ecological scale. The interactions of B. xylophilus with plants are mediated by secreted effector proteins produced in the pharyngeal gland cells. Identification of effectors is important to understand mechanisms of parasitism and to develop new control measures for the pathogens.

RESULTS

Using an approach pioneered in cyst nematodes, we have analysed the promoter regions of a small panel of previously validated pharyngeal gland cell effectors from B. xylophilus to identify an associated putative regulatory promoter motif: STATAWAARS. The presence of STATAWAARS in the promoter region of an uncharacterized gene is a predictor that the corresponding gene encodes a putatively secreted protein, consistent with effector function. Furthermore, we are able to experimentally validate that a subset of STATAWAARS-containing genes are specifically expressed in the pharyngeal glands. Finally, we independently validate the association of STATAWAARS with tissue-specific expression by directly sequencing the mRNA of pharyngeal gland cells. We combine a series of criteria, including STATAWAARS predictions and abundance in the gland cell transcriptome, to generate a comprehensive effector repertoire for B. xylophilus. The genes highlighted by this approach include many previously described effectors and a series of novel "pioneer" effectors.

CONCLUSIONS

We provide a major scientific advance in the area of effector regulation. We identify a novel promoter motif (STATAWAARS) associated with expression in the pharyngeal gland cells. Our data, coupled with those from previous studies, suggest that lineage-specific promoter motifs are a theme of effector regulation in the phylum Nematoda.

摘要

背景

植物寄生线虫对全球范围内的多种作物和森林物种造成严重破坏。迁移性内寄生线虫松材线虫(简称松材线虫)是一种检疫病原体,感染松树,对林业产业造成巨大的经济影响。在某些环境条件下,大面积感染的树木可能会被破坏,导致生态规模的破坏。松材线虫与植物的相互作用是由咽腺细胞分泌的效应蛋白介导的。鉴定效应蛋白对于了解寄生机制和开发新的病原体控制措施非常重要。

结果

我们采用在胞囊线虫中首创的方法,分析了一小部分先前验证的松材线虫咽腺细胞效应子的启动子区域,以鉴定一个相关的假定调节启动子模体:STATAWAARS。在未表征基因的启动子区域存在 STATAWAARS 是该基因编码假定分泌蛋白的预测因子,符合效应子功能。此外,我们能够通过实验验证,包含 STATAWAARS 的亚组基因在咽腺中特异性表达。最后,我们通过直接对咽腺细胞的 mRNA 进行测序,独立验证了 STATAWAARS 与组织特异性表达的关联。我们结合了一系列标准,包括 STATAWAARS 预测和在腺细胞转录组中的丰度,生成了松材线虫的综合效应子库。该方法突出显示的基因包括许多先前描述的效应子和一系列新的“先驱”效应子。

结论

我们在效应子调控领域取得了重大科学进展。我们鉴定了一个与咽腺细胞表达相关的新启动子模体(STATAWAARS)。我们的数据与之前的研究数据相结合,表明谱系特异性启动子模体是线虫门效应子调控的主题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4301/6062891/0becbe35e5fe/12864_2018_4908_Fig1_HTML.jpg

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