首页> 外文期刊>Environmental toxicology and chemistry >SENSITIVITY OF WATER TUPELO (NYSSA AQUATICA) AND BALD CYPRESS (TAXODIUM DISTICHUM) SEEDLINGS TO MANGANESE ENRICHMENT UNDER WATER-SATURATED CONDITIONS
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SENSITIVITY OF WATER TUPELO (NYSSA AQUATICA) AND BALD CYPRESS (TAXODIUM DISTICHUM) SEEDLINGS TO MANGANESE ENRICHMENT UNDER WATER-SATURATED CONDITIONS

机译:水分饱和条件下水花粉(NYSSA AQUATICA)和柏树(TAXODIUM DISTICHUM)幼苗对锰富集的敏感性

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In anaerobis soils of wetlands, Mn is highly available to plants because of the decreasing redox potential and pH of flooded soil. When growing adjacent to each another in wetland forests, water tupelo (Nyssa aquatica L.) had 10 times greater leaf manganese concentration than bald cypress (Taxodium dislichum [L.] Richard). This interspecific difference was examined over a range of manganese-enriched soil conditions in a greenhouse experiment. Water tupelo and bald cypress seedlings were grown in fertilized potting soil enriched with 0, 40, 80, 160, 240, 320, and 400 mg Mn/L of soil and kept at saturated to slightly flooded conditions. Leaf Mn concentration was greater in water tupelo than bald cypress for all but the highest Mn addition treatment. Growth of water tupelo seedlings was adversely affected in treatments greater than 160 mg Mn/L. Total biomass of water tupelo in the highest Mn treatment was less than 50% of the control. At low levels of added Mn, bald cypress was able to restrict uptake of Mn at the roots with resulting low leaf Mn concentrations. Once that root restriction was exceeded, Mn concentration in bald cypress leaves increased greatly with treatment; that is, the highest treatment was 40 times greater than control (4,603 vs 100 μg/ g, respectively), but biomass of bald cypress was unaffected by manganese additions. Bald cypress, a tree that does not naturally accumulate manganese, does so under manganese-enriched conditions and without biomass reduction in contrast to water tupelo, which is severely affected by higher soil Mn concentrations. Thus, bald cypress would be less affected by increased manganese availability in swamps receiving acidic inputs such as acid mine drainage, acid rain, or oxidization of pyritic soils.
机译:在湿地的厌氧土壤中,由于氧化还原电势和淹没土壤的pH值降低,植物对锰的利用率很高。当在湿地森林中彼此相邻生长时,水t(Nyssa aquatica L.)的叶锰浓度是秃柏(Taxodium dislichum [L.] Richard)的10倍。在温室实验中,在一系列富锰土壤条件下检查了这种种间差异。在富含0、40、80、160、240、320和400 mg Mn / L土壤的肥沃盆栽土壤中种植水土柏和柏树苗,并保持在饱和至轻微淹水的条件下。除最高的锰添加处理外,水t草中的叶片锰浓度均高于秃柏。在大于160 mg Mn / L的处理中,水t蒲幼苗的生长受到不利影响。锰含量最高的水t的总生物量少于对照的50%。在添加的锰含量低的情况下,柏树能够限制根部对锰的吸收,从而降低叶片中的锰含量。一旦超过了根系限制,则柏树叶片中的Mn浓度会随着处理而大大增加。也就是说,最高处理量是对照的40倍(分别为4,603和100μg/ g),但是秃柏的生物量不受锰添加的影响。柏树是一种自然不会积聚锰的树,它在富含锰的条件下会这样做,并且与水t草相反,后者不会受到生物量减少的影响,水t草受到较高土壤锰浓度的严重影响。因此,在接受酸性投入(例如酸性矿山排水,酸性雨水或黄铁矿土壤的氧化)的沼泽中,锰的可用性会受到增加,而对柏树的影响较小。

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