芒
植物毒性
拉图卡
铁载体
生物
内生菌
水稻
当归
植物
园艺
芒属
细菌
生物化学
可再生能源
替代医学
中医药
生态学
生物能源
病理
基因
医学
遗传学
作者
Toshikatsu Haruma,Kohei Doyama,Xiaoxing Lü,Takahiko Arima,Toshifumi Igarashi,Shingo Tomiyama,Keiko Yamaji
出处
期刊:Plants
[MDPI AG]
日期:2022-12-21
卷期号:12 (1): 36-36
被引量:1
标识
DOI:10.3390/plants12010036
摘要
Chaetomium cupreum, a root endophyte in Miscanthus sinensis, enhances Al tolerance in M. sinensis by changing aluminum (Al) localization and the production of a siderophore, oosporein, which chelates Al for detoxification. Oosporein has various functions, including insecticidal activity, phytotoxicity, antifungal activity, and a siderophore. In our study, we focused on the detoxification effect of oosporein as a siderophore and on the growth of M. sinensis under Al exposure. In addition, the phytotoxicity of oosporein to M. sinensis was confirmed to compare with those in Lactuca sativa and Oryza sativa as control plants. Under Al stress, oosporein promoted plant growth in M. sinensis seedlings at 10 ppm, which was the same concentration as that detected in M. sinensis roots infected with C. cupreum in our previous study. Oosporein also showed low phytotoxicity to M. sinensis compared with L. sativa at even high concentrations of oosporein. These results suggest that the concentration of oosporein in M. sinensis roots would be maintained at the appropriate concentration to detoxify Al and would promote M. sinensis growth under Al stress, although oosporein would show low phytotoxicity to the natural host plant, M. sinensis, compared with the non-host plant, L. sativa.
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