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两种能促进辣椒(辣椒属)生长并增强其防御能力的内生细菌。

Two bacterial entophytes eliciting both plant growth promotion and plant defense on pepper (Capsicum annuum L.).

作者信息

Kang Seung Hoon, Cho Hyun-Soo, Cheong Hoon, Ryu Choong-Min, Kim Jihyun F, Park Seung-Hwan

机构信息

Laboratory of Microbial Genomics, Systems Microbiology Research Center KRIBB, Daejeon 305-806, Korea.

出版信息

J Microbiol Biotechnol. 2007 Jan;17(1):96-103.

Abstract

Plant growth-promoting rhizobacteria (PGPR) have the potential to be used as microbial inoculants to reduce disease incidence and severity and to increase crop yield. Some of the PGPR have been reported to be able to enter plant tissues and establish endophytic populations. Here, we demonstrated an approach to screen bacterial endophytes that have the capacity to promote the growth of pepper seedlings and protect pepper plants against a bacterial pathogen. Initially, out of 150 bacterial isolates collected from healthy stems of peppers cultivated in the Chungcheong and Gyeongsang provinces of Korea, 23 putative endophytic isolates that were considered to be predominating and representative of each pepper sample were selected. By phenotypic characterization and partial 16S rDNA sequence analysis, the isolates were identified as species of Ochrobacterium, Pantoea, Pseudomonas, Sphingomonas, Janthinobacterium, Ralstonia, Arthrobacter, Clavibacter, Sporosarcina, Acidovorax, and Brevundimonas. Among them, two isolates, PS4 and PS27, were selected because they showed consistent colonizing capacity in pepper stems at the levels of 10(6)-10(7) CFU/g tissue, and were found to be most closely related to Pseudomonas rhodesiae and Pantoea ananatis, respectively, by additional analyses of their entire 16S rDNA sequences. Drenching application of the two strains on the pepper seedlings promoted significant growth of peppers, enhancing their root fresh weight by 73.9% and 41.5%, respectively. The two strains also elicited induced systemic resistance of plants against Xanthomonas axonopodis pv. vesicatoria.

摘要

植物促生根际细菌(PGPR)有潜力用作微生物接种剂,以降低疾病发生率和严重程度并提高作物产量。据报道,一些PGPR能够进入植物组织并建立内生菌群。在此,我们展示了一种筛选具有促进辣椒幼苗生长和保护辣椒植株免受细菌病原体侵害能力的细菌内生菌的方法。最初,从韩国忠清道和庆尚道种植的辣椒健康茎中收集的150株细菌分离物中,选择了23株被认为是每个辣椒样品中占主导地位且具有代表性的假定内生分离物。通过表型特征分析和部分16S rDNA序列分析,这些分离物被鉴定为慢生根瘤菌属、泛菌属、假单胞菌属、鞘氨醇单胞菌属、产紫色杆菌属、罗尔斯通氏菌属、节杆菌属、棒状杆菌属、芽孢八叠球菌属、嗜酸菌属和短波单胞菌属的物种。其中,PS4和PS27这两个分离物被选中,因为它们在辣椒茎中的定殖能力一致,达到10(6)-10(7) CFU/g组织水平,并且通过对其完整16S rDNA序列的进一步分析,分别发现它们与罗得西亚假单胞菌和菠萝泛菌关系最为密切。将这两种菌株浇灌在辣椒幼苗上显著促进了辣椒的生长,其根鲜重分别增加了73.9%和41.5%。这两种菌株还引发了植物对疮痂病黄单胞菌的诱导系统抗性。

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