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Molecular interactions of arbuscular mycorrhizal fungi with mycotoxin-producing fungi and their role in plant defense responses.

机译:丛枝菌根真菌与产生真菌毒素的真菌的分子相互作用及其在植物防御反应中的作用。

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摘要

Fusarium trichothecenes are a large group of sesquiterpenes that are inhibitors of eukaryotic protein synthesis. They cause health problems for humans and animals that consume fungus-infected agricultural products. In addition some of Fusarium trichothecenes are virulence factors of plant pathogenesis. In this study, sixteen Fusarium strains were isolated and characterized from naturally infected potato plants. Pathogenicity tests were carried out to evaluate the virulence of these isolates on potato plants and their trichothecene production capacity. We chose F. sambucinum strain T5 as a model for this study because it was the most aggressive strain when tested on potato plants. It induces a rapid wilting and yellowing resulting in plant death. This strain produced 4,15-diacetoxyscirpenol (4,15-DAS) when grown in liquid culture. We amplified and characterized five trichothecene genes (TRI5, TRI4, TRI3, TRI11,, and TRI101) involved in the production of 4,15-DAS. Nucleotide BLAST search showed 98% and 97% sequence identity with trichothecene biosynthetic genes of F. sporotrichioides and Gibberella zeae, respectively. We used F. sambucinum to determine if trichothecene gene expression was affected by the symbiotic arbuscular mycorrhizal fungus (AMF) Glomus irregulare. We found that the growth of F. sambucinum was significantly reduced in the presence of G. irregulare isolate DAOM-197198 compared with controls that consisted of carrot roots without G. irregulare or F. sambucinum alone. Furthermore, inhibition of the growth F. sambucinum was associated with morphological changes, which were observed when G. irregulare hyphae reached F. sambucinum mycelium, suggesting that G. irregulare may produce compounds that interfere with the growth of F. sambucinum . Using real-time qRT-PCR assays, we assessed the relative expression of trichothecene genes of F. sambucinum confronted or not with G. irregulare. When G. irregulare was confronted with F. sambucinum, TRI5 and TRI6 genes were up-regulated, while TRI4, TRI13 and TRI101 were down-regulated. We therefore used GC-MS analysis to determine whether G. irregulare affects trichothecene production by F. sambucinum . We found that the production of 4,15-DAS trichothecene was significantly reduced in the presence of G. irregulare compared with controls that consisted of carrot roots without G. irregulare or F. sambucinum alone. Interestingly, 4,15-DAS pattern was reduced to 39 μg/ml GYEP medium by G. irregulare compared to 144 μg/ml GYEP with F. sambucinum grown with carrot roots or F. sambucinum alone respectively.;We tested the AMF capacity to induce defense responses of potato plants following infection with F. sambucinum. The response of AMF-colonized potatoes to F. sambucinum was investigated by tracking the expression of genes homologous with pathogenesis-related proteins chitinase class II (ChtA3), 1,3-β-glucanase (gluB), peroxidase (CEVI16), osmotin-like protein (OSM-8 e) and pathogenesis-related protein (PR-1). We found that the AMF treatment up-regulated the expression of all defense genes in roots at 72 hours post-infection (hpi) with F. sambucinum. We also found that a decrease provoked by F. sambucinum in gluB and CEVI16 expression in shoots could be blocked by AMF treatment. Overall, a differential regulation of PR homologues genes in shoots indicates that AMF are a systemic bio-inducer and their effects could extend into non-infected parts.;In conclusion, this study provides new insight into on the interactions between plants and microbes, in particular the effects of AMF on the growth and the reduction of mycotoxins in Fusarium. It also shows that AMF are able to reduce the disease severity in plants by stimulating their defense. The data presented provide new opportunities for bio-control against mycotoxin-producing pathogens in plants.;Keywords: Mycotoxins – Fusarium sambucinum – Trichothecenes cluster genes – 4,15- diactoxycscirpenol (4,15-DAS) – qRT-PCR – Gene expression – Arbuscular mycorrhizal fungi – Defense related genes.
机译:镰刀菌镰刀菌是一大类倍半萜,它们是真核蛋白质合成的抑制剂。它们对食用被真菌感染的农产品的人和动物造成健康问题。另外,镰孢镰刀菌中的一些是植物发病机理的毒力因子。在这项研究中,从自然感染的马铃薯植物中分离并鉴定了16种镰刀菌菌株。进行了致病性测试,以评估这些分离株对马铃薯植物的毒力及其单端孢菌素的生产能力。我们选择沙门氏菌菌株T5作为本研究的模型,因为当在马铃薯植物上测试时,它是最具攻击性的菌株。它引起快速的枯萎和泛黄,导致植物死亡。当在液体培养物中生长时,该菌株产生4,15-二乙酰氧基scirpenol(4,1​​5-DAS)。我们扩增并表征了参与生产4,15-DAS的五个毛发上四烯基因(TRI5,TRI4,TRI3,TRI11和TRI101)。核苷酸BLAST搜索显示与F. sporotrichioides和Gibberella zeae的单端孢菌素生物合成基因有98%和97%的序列同一性。我们使用桑布鲁杆菌​​来确定天花粉蛋白基因表达是否受到共生的丛枝菌根真菌(AMF)Glomus Regulare的影响。我们发现,与由不具不规则根腐菌或单独的不具球形芽孢杆菌的胡萝卜根组成的对照相比,在存在不规则芽孢杆菌分离物DAOM-197198的情况下,桑树芽孢杆菌的生长显着降低。此外,抑制金黄色葡萄球菌的生长与形态学变化有关,当不规则G.菌丝菌丝到达菌形葡萄球菌菌丝体时观察到这种变化,这表明不规则芽孢杆菌可能产生干扰金黄色葡萄球菌生长的化合物。使用实时qRT-PCR分析,我们评估了面对或不与不规则G.的G. s.sambucinum的单端孢菌丝基因的相对表达。当不规则链霉菌面对桑蚕镰刀菌时,TRI5和TRI6基因被上调,而TRI4,TRI13和TRI101被下调。因此,我们使用GC-MS分析来确定不规则芽孢杆菌是否影响桑树镰刀菌的单端孢菌素生产。我们发现,与不包含不规则G.或单独的F. s.ambucinum的胡萝卜根组成的对照相比,在不规则G.的存在下,4,15-DAS的三茂萜的生产显着降低。有趣的是,相比于分别由胡萝卜根或单独的沙门氏菌种植的沙棘镰刀菌的144μg/ ml GYEP,不规则芽孢杆菌将4,15-DAS模式减少到39μg/ ml GYEP培养基;我们测试了AMF对诱导沙门氏菌感染马铃薯植株的防御反应。通过追踪与致病相关蛋白II类几丁质酶(ChtA3),1,3-β-葡聚糖酶(gluB),过氧化物酶(CEVI16),渗透压蛋白-同源的基因的表达,研究了AMF殖民化马铃薯对沙门氏菌的反应。像蛋白(OSM-8 e)和发病相关蛋白(PR-1)。我们发现,AMF处理在桑树镰刀菌感染后(hpi)72小时上调了根部所有防御基因的表达。我们还发现,AMF处理可以阻止由桑树镰刀菌引起的gluB和CEVI16表达的减少。总体而言,芽中PR同源基因的差异调节表明AMF是一种系统性生物诱导剂,其作用可能扩展到未感染的部分。总之,本研究为植物与微生物之间的相互作用提供了新的见解。特别是AMF对镰刀菌生长和霉菌毒素减少的影响。它还表明,AMF能够通过刺激植物防御来降低疾病的严重程度。提出的数据为生物防治植物中产生霉菌毒素的病原体提供了新的机会。关键词:霉菌毒素–镰孢镰刀菌–毛孢菌素簇基因– 4,15-二actoxycscirpenol(4,1​​5-DAS)– qRT-PCR –基因表达–丛枝菌根真菌–防御相关基因。

著录项

  • 作者

    Ismail, Youssef.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Biology Botany.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

  • 入库时间 2022-08-17 11:44:21

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