首页> 外文期刊>Plant Biotechnology Journal >Screening for resistance against Pseudomonas syringae in rice-FOX Arabidopsis lines identified a putative receptor-like cytoplasmic kinase gene that confers resistance to major bacterial and fungal pathogens in Arabidopsis and rice
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Screening for resistance against Pseudomonas syringae in rice-FOX Arabidopsis lines identified a putative receptor-like cytoplasmic kinase gene that confers resistance to major bacterial and fungal pathogens in Arabidopsis and rice

机译:筛选稻米福克斯拟南芥中的抗染蛋白酶的抗性抗性鉴定了一种引用的受体样细胞质激酶基因,赋予拟南芥和水稻主要细菌和真菌病原体的抗性

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Approximately 20 000 of the rice-FOX Arabidopsis transgenic lines, which overexpress 13 000 rice full-length cDNAs at random in Arabidopsis, were screened for bacterial disease resistance by dip inoculation with Pseudomonas syringae pv. tomato DC3000 (Pst DC3000). The identities of the overexpressed genes were determined in 72 lines that showed consistent resistance after three independent screens. Pst DC3000 resistance was verified for 19 genes by characterizing other independent Arabidopsis lines for the same genes in the original rice-FOX hunting population or obtained by reintroducing the genes into ecotype Columbia by floral dip transformation. Thirteen lines of these 72 selections were also resistant to the fungal pathogen Colletotrichum higginsianum. Eight genes that conferred resistance to Pst DC3000 in Arabidopsis have been introduced into rice for overexpression, and transformants were evaluated for resistance to the rice bacterial pathogen, Xanthomonas oryzae pv. oryzae. One of the transgenic rice lines was highly resistant to Xanthomonas oryzae pv. oryzae. Interestingly, this line also showed remarkably high resistance to Magnaporthe grisea, the fungal pathogen causing rice blast, which is the most devastating rice disease in many countries. The causal rice gene, encoding a putative receptor-like cytoplasmic kinase, was therefore designated as BROAD-SPECTRUM RESISTANCE 1. Our results demonstrate the utility of the rice-FOX Arabidopsis lines as a tool for the identification of genes involved in plant defence and suggest the presence of a defence mechanism common between monocots and dicots.
机译:大约20,000 000种稻米狐狸拟南芥转基因素,其在拟南芥中随机过表达13 000米全长CDNA,浸入浸入Pseudomonas Syringae PV的细菌性疾病性抗菌性抗菌性抗菌性抗菌性抗菌性疾病。番茄DC3000(PST DC3000)。过表达基因的身份在72条线中测定,其在三个独立屏幕后显示出一致的抗性。通过在原始稻狐狩猎人群中表征其他基因的其他独立拟南芥系或通过花卉浸渍转化将基因重新引入生态型哥伦比亚而获得的其他独立拟南芥系来验证PST DC3000抗性。这72个选择的十三条线也对真菌病原体Collettrichum Higginsianum抵抗。已经将占拟南芥PST DC3000抵抗的八种基因被引入过量表达的水稻中,并评估转化体的耐水稻细菌病原体,Xanthomonas oryzae PV。 oryzae。转基因水稻线的一种对Xanthomonas oryzae PV具有高度抗性。 oryzae。有趣的是,这一系列也表现出对Magnaporthe Grisea的显着高,导致稻瘟病的真菌病原体,这是许多国家最毁灭性的水稻疾病。因此,编码推定的受体样细胞质激酶的因果水稻基因被称为广谱抗性1.我们的结果证明了稻米狐狸拟南芥系作为鉴定植物防御和建议所涉及的基因的工具的效用单焦炭和奇特之间存在常见的防御机制。

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