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首页> 外文期刊>Journal of Environmental Quality >Evaluating Responses of Four Wetland Plant Species to Different Hydroperiods
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Evaluating Responses of Four Wetland Plant Species to Different Hydroperiods

机译:评估四种湿地植物物种对不同水周期的响应

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Previous work has estimated the hydroperiod requirements (saturation duration and frequency) of wetland plant communities by modeling their hydrologic regimes in natural (never drained) wetlands for a 40-yr period. This study tested the modeled predictions in a controlled greenhouse study using tree species representing three of the plant communities plus an additional species from another community. Bald cypress (Taxodium distichum L. Rich.), sweet bay (Magnolia virginiana L.), pond pine (Pinus serotina Michx.), and swamp chestnut oak (Quercus michauxii Nutt.) were grown under three hydroperiods (continuously ponded for 100 d, intermittently ponded for 14 d, and unsaturated) in loamy sand and sapric (organic) materials. Bald cypress (representing a Nonriverine Swamp Forest community) adapted well to 100 d of ponding by producing lateral roots near the soil surface and aerenchyma tissue in roots and stem. Sweet bay (Bay Forest community) also adapted well to 100 d of ponding by producing adventitious roots on the submerged portion of the stem. Pond pine (Pond Pine Woodland) and swamp chestnut oak (Nonriverine Wet Hardwood Forest) were intolerant of 100 d of ponded conditions. Seventy-five percent of the pond pine seedlings and 87% of the swamp chestnut oak seedlings died in the continuously ponded treatment level, whereas 100% of the bald cypress and 88% of the sweet bay seedlings survived. Results from this study suggest that modeled long-term hydroperiods of natural wetland plant communities can be used for restoration of these communities.
机译:先前的工作通过对自然(从未排水)湿地中40年的水文状况进行建模,从而估算了湿地植物群落的水期需求(饱和持续时间和频率)。这项研究在受控温室研究中测试了模型化的预测,该研究使用了代表三个植物群落的树种以及来自另一个群落的其他树种。秃头柏(Taxodium distichum L. Rich。),甜海湾(Magnolia virginiana L.),池塘松树(Pinus serotina Michx。)和沼泽栗子橡树(Quercus michauxii Nutt。)在三个水周期下生长(连续蓄水100 d) ,间歇性地沉没14 d,并在壤质沙子和sapric(有机)材料中不饱和。秃柏(代表一个非河流沼泽森林社区)通过在土壤表面附近产生侧根以及在根和茎中形成气孔组织,很好地适应了100天的蓄水池。甜海湾(海湾森林群落)还通过在茎的淹没部分产生不定根,很好地适应了100 d的池塘化。池塘松(Pond Pine Woodland)和沼泽板栗橡树(Nonriverine Wet Hardwood Forest)不能忍受100 d的池塘条件。在连续处理的水平下,有百分之七十五的池塘松树幼苗和百分之八十七的沼泽栗子橡树幼苗死亡,而100%的柏柏树和88%的甜海湾幼苗存活。这项研究的结果表明,模拟的自然湿地植物群落的长期水周期可用于这些群落的恢复。

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