首页> 外文期刊>Journal of Phytopathology >Morphological and Molecular Identification of Phytophthora tropicalis as Causal Agent of Crown and Root Rot on Albizia julibrissin
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Morphological and Molecular Identification of Phytophthora tropicalis as Causal Agent of Crown and Root Rot on Albizia julibrissin

机译:热带疫霉菌(Phytophthora)作为西洋参(Albizia julibrissin)冠和根腐病的致病因子的形态和分子鉴定

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Isolates of a Phytophthora sp. were obtained from soil and root baiting of declining Albizia julibrissin plants grown in soil in an Italian nursery. Identification was performed on the basis of morphological, pathological and molecular features. As main characteristics, isolates did not grow at 35 degrees C, were poorly pathogenic when inoculated on bell pepper plants, and had the average sporangium pedicel length longer than 100, being similar to Phytophthora tropicalis. A comparative study of internal transcribed spacer, beta-tubulin, translation elongation factor-1 alpha and cytochrome c oxidase subunit II (CoxII) sequences supported the identification of the isolates as P.tropicalis. Comparison included all the European isolate sequences available in GenBank. Pathogenicity tests reproduced symptoms of root and crown browning and rotting and wilting as originally observed on nursery plants. Considering all the results, we identified P.tropicalis as the causal agent of A. julibrissin decline, crown and root rot. To our knowledge, this is the first report of this host-pathogen combination in Italy or elsewhere. P.tropicalis has to be considered a serious threat to agricultural and natural environment because it is highly polyphagous and easy to spread due to its caducous sporangia.
机译:疫霉属(Phytophthora sp。)的分离物。从意大利苗圃中土壤中生长的衰落的合欢树植物的土壤和诱饵中获得。根据形态,病理和分子特征进行鉴定。作为主要特征,分离株没有在35摄氏度下生长,当接种在甜椒植物上时病原性很差,并且平均孢子花梗长度长于100,类似于热带疫霉菌。对内部转录的间隔区,β-微管蛋白,翻译延伸因子-1α和细胞色素c氧化酶亚基II(CoxII)序列的比较研究支持将分离株鉴定为热带疟原虫。比较包括GenBank中所有可用的欧洲分离株序列。病原性测试再现了最初在苗圃植物上观察到的根和冠褐变,腐烂和枯萎的症状。考虑到所有结果,我们确定了P.tropicalis是A. julibrissin下降,冠和根腐烂的病因。据我们所知,这是这种宿主-病原体组合在意大利或其他地方的首次报道。热带假单胞菌被认为是对农业和自然环境的严重威胁,因为它的早发性孢子囊高度多食性并且易于传播。

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