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Journal of Zhejiang University SCIENCE B
ISSN 1673-1581(Print), 1862-1783(Online), Monthly
2017 Vol.18 No.2 P.125-137
Endophytes from medicinal plants and their potential for producing indole acetic acid, improving seed germination and mitigating oxidative stress
Abstract: Medicinal plants have been used by marginal communities to treat various ailments. However, the potential of endophytes within these bio-prospective medicinal plants remains unknown. The present study elucidates the endophytic diversity of medicinal plants (Caralluma acutangula, Rhazya stricta, and Moringa peregrina) and the endophyte role in seed growth and oxidative stress. Various organs of medicinal plants yielded ten endophytes, which were identified as Phoma sp. (6 isolates), Alternaria sp. (2), Bipolaris sp. (1), and Cladosporium sp. (1) based on 18S rDNA sequencing and phylogenetic analysis. The culture filtrates (CFs; 25%, 50%, and 100% concentrations) from these endophytes were tested against the growth of normal and dwarf mutant rice lines. Endophytic CF exhibited dose-dependent growth stimulation and suppression effects. CF (100%) of Phoma sp. significantly increased rice seed germination and growth compared to controls and other endophytes. This growth-promoting effect was due to the presence of indole acetic acid in endophytic CF. The gas chromatography/mass spectrometry (GC/MS) analysis showed the highest indole acetic acid content ((54.31±0.21) µmol/L) in Bipolaris sp. In addition, the isolate of Bipolaris sp. exhibited significantly higher radical scavenging and anti-lipid peroxidation activity than the other isolates. Bipolaris sp. and Phoma sp. also exhibited significantly higher flavonoid and phenolic contents. The medicinal plants exhibited the presence of bio-prospective endophytic strains, which could be used for the improvement of crop growth and the mitigation of oxidative stresses.
Key words: Fungal endophytes; Diversity; Medicinal plants; Antioxidants; Indole acetic acid
方法:从三ç§è¯ç”¨æ¤ç‰©ï¼ˆCaralluma acutangulaã€Rhazya strictaå’ŒMoringa peregrina)ä¸æå–内生èŒï¼›åŸºäºŽ18S rDNA测åºå’Œç³»ç»Ÿå‘育分æžé‰´å®šåˆ†ç¦»å¾—到的内生èŒæ ªï¼›ä»¥æ£å¸¸å’ŒçŸ®åŒ–çªå˜ä½“水稻å“系为对照,比较ä¸åŒæµ“度的内生èŒåŸ¹å…»æ»¤æ¶²ï¼ˆCF)对水稻ç§åçš„å‘芽和生长的影å“;通过气相色谱-质谱分æžCFä¸çš„有效活性æˆåˆ†ã€‚
结论:从è¯ç”¨æ¤ç‰©ä¸å…±èŽ·å¾—10ç§å†…生èŒï¼ŒåŒ…括茎点霉属6æ ªã€é“¾æ ¼å¢å±ž2æ ªã€åŒæžéœ‰å±ž1æ ªå’Œæžå¢éœ‰å±ž1æ ªã€‚CF表现出剂é‡ä¾èµ–性的生长刺激和抑制作用。与对照和其他内生èŒç›¸æ¯”,100%的茎点霉èŒCF显著促进了水稻ç§åçš„å‘芽和生长;åŒæžéœ‰ä¸çš„å²å“šä¹™é…¸å«é‡æœ€é«˜ï¼Œå¹¶è¡¨çŽ°å‡ºæ¯”其更高的自由基清除和抗脂质过氧化活性;åŒæžéœ‰èŒå’ŒèŒŽç‚¹éœ‰èŒçš„类黄酮和酚类æˆåˆ†è¾ƒé«˜ã€‚综上所述,è¯ç”¨æ¤ç‰©ä¸å˜åœ¨å†…生èŒæ ªï¼Œå…¶å¯ä»¥ç”¨äºŽæ”¹å–„作物生长和å‡è½»æ°§åŒ–应激。
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DOI:
10.1631/jzus.B1500271
CLC number:
Q93; S567
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On-line Access:
2024-08-27
Received:
2023-10-17
Revision Accepted:
2024-05-08
Crosschecked:
2017-01-13