首页> 外文期刊>Plant Pathology >Testing and modelling the potential of three diploid plants in Poaceae as a new pathosystem to investigate the interactions between cereal hosts and cereal cyst nematode (Heterodera avenae)
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Testing and modelling the potential of three diploid plants in Poaceae as a new pathosystem to investigate the interactions between cereal hosts and cereal cyst nematode (Heterodera avenae)

机译:测试和建模禾本科三种二倍体植物作为新的病理系统的潜力,以研究谷物宿主与谷物囊肿线虫(Heterodera avenae)之间的相互作用

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摘要

Cereal cyst nematode (CCN), Heterodera avenae, is one of the most important pathogens of wheat worldwide, and causes significant yield losses. Research on CCN-wheat interactions is hampered by the lack of an effective model pathosystem. This study investigated the potential of the model cereal Brachypodium distachyon (Bd21-3) and diploid wheat 2A (G1812) and 2D (AL8/78) as model hosts for CCN. Nematode infection analysis showed that although some CCN penetrated Bd21-3 roots, these nematodes failed to develop to the later developmental stages or form cysts, indicating B.distachyon is not a host for CCN. A strong burst of reactive oxygen species (ROS) within Bd21-3 roots infected with CCN was induced 3days after infection and the expression of seven ROS-producing genes was significantly increased. In contrast, CCN completed its life cycle in both diploid wheat 2A and 2D, and formed normal syncytia in these hosts. Although CCN developmental processes within both diploid wheat 2A and 2D were very similar to those in the susceptible control, the number of cysts formed on diploid wheat 2D was less than those formed on diploid wheat 2A and the susceptible control, indicating that diploid wheat 2A was a more suitable host for CCN than 2D. This is the first report of a potential new pathosystem for CCN-host interactions using diploid wheat.
机译:谷物囊肿线虫(CCN)是世界上最重要的小麦病原体之一,并导致大量的产量损失。缺乏有效的模型病理系统阻碍了CCN-小麦相互作用的研究。这项研究调查了模型谷物短螺旋藻distachyon(Bd21-3)和二倍体小麦2A(G1812)和2D(AL8 / 78)作为CCN的模型宿主的潜力。线虫感染分析表明,尽管某些CCN穿透了Bd21-3根,但这些线虫未能发育到后期发育阶段或形成囊肿,表明B.distachyon不是CCN的宿主。感染后3天,在感染CCN的Bd21-3根中强烈激发了活性氧(ROS)爆发,并且七个产生ROS的基因的表达显着增加。相反,CCN在二倍体小麦2A和2D中均完成了其生命周期,并在这些寄主中形成正常合胞体。尽管二倍体小麦2A和2D内的CCN发育过程与易感对照非常相似,但在二倍体小麦2D上形成的囊肿数量少于在二倍体小麦2A和易感对照上形成的囊肿,表明二倍体小麦2A是比2D更适合用于CCN。这是使用二倍体小麦进行CCN-宿主相互作用的潜在新病理系统的首次报道。

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