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Mn accumulation in a submerged plant Egeria densa (Hydrocharitaceae) is mediated by epiphytic bacteria
Author(s) -
Tsuji Kousuke,
Asayama Takuma,
Shiraki Nozomi,
Inoue Shota,
Okuda Erina,
Hayashi Chizuru,
Nishida Kazuma,
Hasegawa Hiroshi,
Harada Emiko
Publication year - 2017
Publication title -
plant, cell and environment
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.646
H-Index - 200
eISSN - 1365-3040
pISSN - 0140-7791
DOI - 10.1111/pce.12910
Subject(s) - hydrocharitaceae , aquatic plant , epiphyte , botany , biology , macrophyte , hydrilla , phytoremediation , environmental chemistry , horticulture , ecology , chemistry , contamination
Many aquatic plants act as biosorbents, removing and recovering metals from the environment. To assess the biosorbent activity of Egeria densa , a submerged freshwater macrophyte, plants were collected monthly from a circular drainage area in Lake Biwa basin and the Mn concentrations of the plants were analysed. Mn concentrations in these plants were generally above those of terrestrial hyperaccumulators, and were markedly higher in spring and summer than in autumn. Mn concentrations were much lower in plants incubated in hydroponic medium at various pH levels with and without Mn supplementation than in field‐collected plants. The precipitation of Mn oxides on the leaves was determined by variable pressure scanning electron microscopy‐energy dispersive X‐ray analysis and Leucoberbelin blue staining. Several strains of epiphytic bacteria were isolated from the field‐collected E .  densa plants, with many of these strains, including those of the genera Acidovorax , Comamonas , Pseudomonas and Rhizobium , found to have Mn‐oxidizing activity. High Mn concentrations in E .  densa were mediated by the production of biogenic Mn oxide in biofilms on leaf surfaces. These findings provide new insights into plant epidermal bacterial flora that affect metal accumulation in plants and suggest that these aquatic plants may have use in Mn phytomining.

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