Centre for Novel Agricultural Products, Department of Biology, University of York, York YO10 5DD UK.
Fera Science Ltd., Sand Hutton, York YO41 1LZ UK.
Sci Rep. 2017 Feb 6;7:41987. doi: 10.1038/srep41987.
Herbicide resistance in wild grasses is widespread in the UK, with non-target site resistance (NTSR) to multiple chemistries being particularly problematic in weed control. As a complex trait, NTSR is driven by complex evolutionary pressures and the growing awareness of the role of the phytobiome in plant abiotic stress tolerance, led us to sequence the transcriptomes of herbicide resistant and susceptible populations of black-grass and annual rye-grass for the presence of endophytes. Black-grass (Alopecurus myosuroides; Am) populations, displaying no overt disease symptoms, contained three previously undescribed viruses belonging to the Partititiviridae (AMPV1 and AMPV2) and Rhabdoviridae (AMVV1) families. These infections were widespread in UK black-grass populations and evidence was obtained for similar viruses being present in annual rye grass (Lolium rigidum), perennial rye-grass (Lolium perenne) and meadow fescue (Festuca pratensis). In black-grass, while no direct causative link was established linking viral infection to herbicide resistance, transcriptome sequencing showed a high incidence of infection in the NTSR Peldon population. The widespread infection of these weeds by little characterised and persistent viruses and their potential evolutionary role in enhancing plant stress tolerance mechanisms including NTSR warrants further investigation.
英国野生草类普遍存在除草剂抗性,尤其是对多种化学物质的非靶标位点抗性(NTSR),这对杂草防治来说是一个特别棘手的问题。作为一种复杂的特性,NTSR 受到复杂的进化压力的驱动,人们越来越意识到植物生物群落在植物非生物胁迫耐受中的作用,这促使我们对具有抗除草剂和敏感特性的黑麦草和一年生黑麦草种群进行转录组测序,以检测内生菌的存在。未表现出明显疾病症状的黑麦草(Alopecurus myosuroides;Am)种群中含有三种先前未描述的病毒,属于呼肠孤病毒科(AMPV1 和 AMPV2)和弹状病毒科(AMVV1)。这些感染在英国黑麦草种群中广泛存在,并且有证据表明,一年生黑麦草(Lolium rigidum)、多年生黑麦草(Lolium perenne)和草地羊茅(Festuca pratensis)中也存在类似的病毒。在黑麦草中,尽管没有直接建立病毒感染与除草剂抗性之间的因果关系,但转录组测序显示,在 NTSR Peldon 种群中,感染的发生率很高。这些杂草受到了广泛感染,而这些病毒的特征和持久性尚未得到充分认识,它们在增强植物应激耐受机制(包括 NTSR)方面的潜在进化作用值得进一步研究。