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首页> 外文期刊>Asian Journal of Agriculture and Biology >ISOLATION AND CHARACTERIZATION OF SEEDBORNE PSEUDOMONAS SYRINGAE PV PISI FROM PEA (PISUM SATIVUM L.)
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ISOLATION AND CHARACTERIZATION OF SEEDBORNE PSEUDOMONAS SYRINGAE PV PISI FROM PEA (PISUM SATIVUM L.)

机译:豌豆(PESUM SATIVUM L.)种子假单胞菌丁香PV PISI的分离与鉴定

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This study was focused on isolation and biochemical characterization of pea ( Pisum sativum L.) seed borne bacteria. A total of 25 bacteria were isolated from pea seeds collected from different sources. Of 25 isolates, 3 most aggressive isolates (Psp-1, Psp-6, Psp-14) which produced hypersensitive response (HR) within 24 hours of post inoculation on tobacco leaf were picked for further bio-pathological assays. Bacterial isolates were able to produce brown necrotic spots on pea leaves after few days of inoculation which later coalesced and gave peculiar blight like appearance. However, bacterial isolates were unable to reduce nitrogen and also unable to grow at 41 0C which considered as a hall mark of only plant pathogenic pseudomonads. Furthermore, results of LOPAT (levan production from sucrose (L), presence of oxidase (O), pectolytic activity on potato (P), the pres­ence of arginine dihydrolase (A) confirmed that seed borne bacteria were Pseudomonas syringae pv pisi which are reported as looming threat to pea production in different parts of world. Therefore, current study gave a clue about the presence of potential bacterial pathogens in seeds which would easily be resulted into future disease outbreak. Thus, regular disease surveillance and pathogenicity assays on commercial pea varieties must be incorporated to avoid any future pea epidemic.
机译:这项研究的重点是豌豆(Pisum sativum L.)种子传播细菌的分离和生化特性。从不同来源收集的豌豆种子中总共分离出25种细菌。在25种分离物中,选择了3种最具侵略性的分离物(Psp-1,Psp-6,Psp-14),这些分离物在接种烟叶后24小时内产生了过敏反应(HR),用于进一步的生物病理学分析。接种数天后,细菌分离物能够在豌豆叶片上产生褐色坏死斑,随后凝结并产生特殊的枯萎状外观。然而,细菌分离株不能还原氮,也不能在41 0 C下生长,这被认为是唯一的植物致病性假单胞菌的标志。此外,LOPAT(蔗糖的左旋糖生产(L),氧化酶(O)的存在,对马铃薯的果胶分解活性(P),精氨酸二水解酶(A)的存在)的结果证实了种子传播的细菌为丁香假单胞菌pv pisi。作为对世界各地豌豆生产的迫在眉睫的威胁,因此,当前的研究提供了有关种子中潜在细菌病原体的存在的线索,这些细菌病原体很容易导致未来的疾病暴发,因此,对商品豌豆品种进行定期的疾病监测和致病性分析必须将其合并以避免将来出现豌豆流行病。

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