Department of Life Sciences and Biotechnology, Kyungpook National University, Daegu 702-701, Republic of Korea.
J Microbiol Biotechnol. 2012 Nov;22(11):1549-56. doi: 10.4014/jmb.1205.05010.
Endophytic fungi were isolated from roots of six halophytes in Suncheon Bay. The endophytic fungi of 35 species isolated from halophytes were identified by internal transcribed spacer (ITS) containing the ITS1, 5.8s, and ITS2 regions. All fungal strains were analyzed to diversity at the genus level. Fungal culture filtrates (FCF) of endophytic fungi were treated to Waito-c rice (WR) seedling for plant growth-promoting verification. It was confirmed that fungal strain Sj-2-2 provided plant growth promotion (PGP) to WR seedling. Then, PGP of Suaeda japonica was confirmed by treating culture filtrate of Sj-2-2. As a result, it was verified that culture filtrate of Sj-2-2 had more advanced PGP than positive control when treated to S. japonica. The secondary metabolites involved in culture filtrate of Sj-2-2 were identified by HPLC and GC-MS SIM analysis. The presence of physiologically bioactive gibberellins (GAs) and other inactive GAs in culture filtrate of Sj-2-2 was detected. The molecular analysis of sequences of Sj-2-2 showed the similarity to Penicillium sp. of 99% homology. The PGP of Sj-2-2 as well as symbiosis between endophytic fungi and halophytes growing naturally in salt marsh was confirmed. Sj-2-2 was identified as a new fungal strain producing GAs by molecular analysis of sequences. Consequently, the Sj-2-2 fungal strain was named as Penicillium sp. Sj-2-2. In this study, the diversity of endophytic fungi isolated from roots of halophytes in salt marsh and the PGP of a new gibberellin-producing fungal strain were confirmed.
从顺天湾的 6 种盐生植物的根部分离出内生真菌。通过包含 ITS1、5.8s 和 ITS2 区域的内部转录间隔区 (ITS) 对从盐生植物中分离出的 35 种内生真菌进行鉴定。对所有真菌菌株进行了属水平的多样性分析。内生真菌的真菌培养液(FCF)被用于 Waito-c 水稻(WR)幼苗的促生长验证。证实真菌菌株 Sj-2-2 为 WR 幼苗提供了植物促生长(PGP)。然后,通过处理 Sj-2-2 的培养液来确认其对盐地碱蓬的 PGP。结果表明,当处理盐地碱蓬时,Sj-2-2 的培养液比阳性对照具有更先进的 PGP。通过 HPLC 和 GC-MS SIM 分析鉴定 Sj-2-2 培养液中涉及的次生代谢物。检测到 Sj-2-2 培养液中存在生理生物活性赤霉素(GAs)和其他非活性 GAs。通过序列分子分析,Sj-2-2 与青霉属的相似度为 99%。证实了 Sj-2-2 的 PGP 以及内生真菌与自然生长在盐沼中的盐生植物之间的共生关系。通过序列分子分析鉴定 Sj-2-2 是一种产生 GAs 的新真菌菌株。因此,将 Sj-2-2 真菌菌株命名为青霉属 Sj-2-2。在这项研究中,确认了从盐沼盐生植物根部分离出的内生真菌的多样性和一种新的产生赤霉素的真菌菌株的 PGP。