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首页> 外文期刊>Physiological and Molecular Plant Pathology >Use of Fusarium graminearum transformed with gfp to follow infection patterns in barley and Arabidopsis
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Use of Fusarium graminearum transformed with gfp to follow infection patterns in barley and Arabidopsis

机译:用gfp转化的禾谷镰刀菌追踪大麦和拟南芥的感染模式

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The fungal pathogen Fusarium graminearum attacks the seed spikes of barley and wheat, causing sterility, reduced seed weight and accumulation of mycotoxins. To explore infection patterns in barley and in the Arabidopsis model system, the green fluorescent protein gene (gfp) was used to transform F. graminearum. Inoculation of intact barley spikes resulted in rapid colonization of the brush hairs (ovary epithelial hairs) at the extruded seed tip within 7 It. Colonization followed a pattern of rapid basipetal growth along the pericarp epithelium (interior to the lemma and palea), accompanied by slower growth inward through the pericarp and testa. However, at 16 days after infection the aleurone and starchy endosperm remained uninfected, despite heavy colonization of the pericarp. Colonization of the outer lemma also occurred but was much slower. No increase in amylase enzyme activities was found, discounting the possibility that F. graminearum utilizes gibberellin-induced host enzymes to tap the endosperm for nutrients. The transformed Fusarium strain readily infected Arabidopsis thaliana leaves and produced copious spores within distant leaves. Results show the utility of gfp in tracing the growth of this pathogen, without misinterpretation due to contaminating fungi, and for resistance studies utilizing the Arabidopsis model system.
机译:真菌病原体禾谷镰孢(Fusarium graminearum)攻击大麦和小麦的种子穗,导致不育,降低种子重量和霉菌毒素的积累。为了探索大麦和拟南芥模型系统中的感染模式,绿色荧光蛋白基因(gfp)用于转化禾本科镰刀菌。完整大麦穗的接种导致刷毛(卵巢上皮毛)在7 It内的挤出种子尖端迅速定居。沿果皮沿上皮(外lem和内脏的内部)快速基底生长的模式是殖民化,随后通过果皮和睾丸向内生长较慢。然而,尽管果皮大量定殖,但感染后第16天,糊粉和淀粉质胚乳仍未受到感染。外引物的定殖也发生了,但速度要慢得多。没有发现淀粉酶活性的增加,消除了禾谷镰孢利用赤霉素诱导的宿主酶挖掘胚乳中营养的可能性。转化的镰刀菌菌株很容易感染拟南芥叶,并在远处的叶中产生大量孢子。结果表明,gfp可用于追踪这种病原体的生长,而不会由于污染真菌而产生误解,并利用拟南芥模型系统进行耐药性研究。

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