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Phytophthora ramorum as the Cause of Extensive Mortality of Quercus spp. and Lithocarpus densiflorus in California.加州栎属植物和密花石栎大量死亡的病因——栎树猝死病菌
Plant Dis. 2002 Mar;86(3):205-214. doi: 10.1094/PDIS.2002.86.3.205.
2
Identification and molecular mapping of a single Arabidopsis thaliana locus determining resistance to a phytopathogenic Pseudomonas syringae isolate.鉴定和分子图谱定位拟南芥中一个决定对植物病原菌丁香假单胞菌分离株抗性的单一基因座。
Plant J. 1991 Nov;1(3):289-302. doi: 10.1046/j.1365-313X.1991.t01-7-00999.x.
3
Deciphering host resistance and pathogen virulence: the Arabidopsis/Pseudomonas interaction as a model.解析宿主抗性和病原体毒力:以拟南芥/假单胞菌相互作用为例。
Mol Plant Pathol. 2003 Nov 1;4(6):517-30. doi: 10.1046/j.1364-3703.2003.00198.x.
4
Active defence responses associated with non-host resistance of Arabidopsis thaliana to the oomycete pathogen Phytophthora infestans.拟南芥对卵菌病原体致病疫霉非寄主抗性相关的主动防御反应。
Mol Plant Pathol. 2003 Nov 1;4(6):487-500. doi: 10.1046/j.1364-3703.2003.00195.x.
5
Optimization of pathogenicity assays to study the Arabidopsis thaliana-Xanthomonas campestris pv. campestris pathosystem.优化致病性测定方法研究拟南芥-野油菜黄单胞菌 pv. 野油菜致病变种互作体系。
Mol Plant Pathol. 2005 May 1;6(3):327-33. doi: 10.1111/j.1364-3703.2005.00287.x.
6
Gene expression in germinated cysts of Phytophthora nicotianae.根肿菌萌发厚垣孢子的基因表达。
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7
Histochemical and genetic analysis of host and non-host interactions of Arabidopsis with three Botrytis species: an important role for cell death control.拟南芥与三种 Botrytis 物种的宿主和非宿主相互作用的组织化学和遗传分析:细胞死亡控制的重要作用。
Mol Plant Pathol. 2007 Jan;8(1):41-54. doi: 10.1111/j.1364-3703.2006.00367.x.
8
Characterization of Arabidopsis thaliana-Fusarium graminearum interactions and identification of variation in resistance among ecotypes.拟南芥-禾谷镰刀菌互作的特征描述及生态型间抗性差异的鉴定。
Mol Plant Pathol. 2006 Sep;7(5):391-403. doi: 10.1111/j.1364-3703.2006.00349.x.
9
The immediate activation of defense responses in Arabidopsis roots is not sufficient to prevent Phytophthora parasitica infection.拟南芥根部防御反应的即刻激活不足以防止寄生疫霉的感染。
New Phytol. 2010 Jul;187(2):449-460. doi: 10.1111/j.1469-8137.2010.03272.x. Epub 2010 Apr 29.
10
Cellular and molecular characterization of Phytophthora parasitica appressorium-mediated penetration.寄生疫霉附着胞介导穿透的细胞和分子特征。
New Phytol. 2010 Jan;185(1):248-57. doi: 10.1111/j.1469-8137.2009.03048.x. Epub 2009 Oct 6.

拟南芥被寄生疫霉感染及宿主特异性变化的鉴定。

Infection of Arabidopsis thaliana by Phytophthora parasitica and identification of variation in host specificity.

机构信息

College of Plant Protection, Northwest A&F University, Yangling, Shaanxi 712100, China.

出版信息

Mol Plant Pathol. 2011 Feb;12(2):187-201. doi: 10.1111/j.1364-3703.2010.00659.x. Epub 2010 Oct 1.

DOI:10.1111/j.1364-3703.2010.00659.x
PMID:21199568
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6640465/
Abstract

Oomycete pathogens cause severe damage to a wide range of agriculturally important crops and natural ecosystems. They represent a unique group of plant pathogens that are evolutionarily distant from true fungi. In this study, we established a new plant-oomycete pathosystem in which the broad host range pathogen Phytophthora parasitica was demonstrated to be capable of interacting compatibly with the model plant Arabidopsis thaliana. Water-soaked lesions developed on leaves within 3 days and numerous sporangia formed within 5 days post-inoculation of P. parasitica zoospores. Cytological characterization showed that P. parasitica developed appressoria-like swellings and penetrated epidermal cells directly and preferably at the junction between anticlinal host cell walls. Multiple haustoria-like structures formed in both epidermal cells and mesophyll cells 1 day post-inoculation of zoospores. Pathogenicity assays of 25 A. thaliana ecotypes with six P. parasitica strains indicated the presence of a natural variation in host specificity between A. thaliana and P. parasitica. Most ecotypes were highly susceptible to P. parasitica strains Pp014, Pp016 and Pp025, but resistant to strains Pp008 and Pp009, with the frequent appearance of cell wall deposition and active defence response-based cell necrosis. Gene expression and comparative transcriptomic analysis further confirmed the compatible interaction by the identification of up-regulated genes in A. thaliana which were characteristic of biotic stress. The established A. thaliana-P. parasitica pathosystem expands the model systems investigating oomycete-plant interactions, and will facilitate a full understanding of Phytophthora biology and pathology.

摘要

卵菌病原体对广泛的重要农作物和自然生态系统造成严重破坏。它们代表了一类独特的植物病原体,与真正的真菌在进化上相距甚远。在这项研究中,我们建立了一个新的植物-卵菌病理系统,其中广泛宿主范围的病原体寄生疫霉被证明能够与模式植物拟南芥相容互作。在接种游动孢子后 3 天内,叶片上出现水渍状病斑,5 天内形成大量游动孢子囊。细胞学特征表明,寄生疫霉形成类似附着胞的肿胀,并直接穿透表皮细胞,优先穿透在细胞垂周壁交界处的表皮细胞。在接种游动孢子后 1 天,在表皮细胞和叶肉细胞中形成多个类似于吸器的结构。对 25 个拟南芥生态型和 6 个寄生疫霉菌株进行的致病性测定表明,在拟南芥和寄生疫霉之间存在天然的宿主特异性变异。大多数生态型对寄生疫霉菌株 Pp014、Pp016 和 Pp025 高度敏感,但对菌株 Pp008 和 Pp009 具有抗性,经常出现细胞壁沉积和基于主动防御反应的细胞坏死。基因表达和比较转录组分析通过鉴定拟南芥中上调的基因进一步证实了这种兼容互作,这些基因特征是生物胁迫的特征。建立的拟南芥-寄生疫霉病理系统扩展了研究卵菌-植物相互作用的模型系统,并将有助于全面了解寄生疫霉的生物学和病理学。