Gong Bin, Liu Guixiang, Liao Rquan, Song Jingjing, Zhang Hong
Qinzhou University, Guangxi Key Laboratory of Beibu Gulf Marine Biodiversity Conservation, Guangxi, China.
Qinzhou University, Guangxi Key Laboratory of Beibu Gulf Marine Biodiversity Conservation, Guangxi, China.
Braz J Microbiol. 2017 Jul-Sep;48(3):530-536. doi: 10.1016/j.bjm.2016.10.027. Epub 2017 Feb 9.
Mangrove is an important ecosystem in the world. Mangrove ecosystems have a large capacity in retaining heavy metals, and now they are usually considered as sinks for heavy metals. However, the mechanism of why the soil of mangrove ecosystems can retain heavy metal is not certain. In this research, endophytic fungus Purpureocillium sp. A5 was isolated and identified from the roots of Kandelia candel. When this fungus was added, it protected the growth of K. candel under Cu stress. This can be illustrated by analyzing chlorophyll A and B, RWC and WSD to leaves of K. candel. Purpureocillium sp. A5 reduces uptake of Cu in K. candel and changes the pH characterization of soil. Furthermore, A5 increase the concentration of Cu complexes in soil, and it enhanced the concentration of carbonate-bound Cu, Mn-Fe complexes Cu and organic-bound Cu in soil. Nevertheless, a significant reduction of the Cu ion was noted among A5-treated plants. This study is significant and illustrates a promising potential use for environmental remediation of endophytes, and also may partially explain the large capacity of mangrove ecosystems in retaining heavy metals.
红树林是世界上重要的生态系统。红树林生态系统具有很强的重金属滞留能力,现在它们通常被视为重金属的汇。然而,红树林生态系统土壤能够滞留重金属的机制尚不确定。在本研究中,从秋茄的根部分离并鉴定出内生真菌淡紫拟青霉A5。添加这种真菌后,它在铜胁迫下保护了秋茄的生长。这可以通过分析秋茄叶片的叶绿素A和B、相对含水量和水分饱和亏来证明。淡紫拟青霉A5减少了秋茄对铜的吸收,并改变了土壤的pH特性。此外,A5增加了土壤中铜络合物的浓度,并提高了土壤中碳酸盐结合态铜、锰铁络合物铜和有机结合态铜的浓度。然而,在经A5处理的植物中,铜离子显著减少。本研究具有重要意义,展示了内生菌在环境修复方面有前景的潜在用途,也可能部分解释了红树林生态系统滞留重金属的强大能力。