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Effects of water regime on the growth of the submerged macrophyte Ceratophyllum demersum at different densities

机译:水分对不同密度下沉水植物金藻的生长的影响

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To successfully restore deteriorated lake ecosystems, it is vital to identify influencing environmental factors that impact submerged macrophytes. Planting density and water regime are important factors for submerged macrophytes’ growth. While many experimental studies have examined effects of water regime on the growth of some aquatic plant species, very few have tested both planting density and water regime on population, individual, and internode growth of a submerged population. We constructed Ceratophyllum demersum populations at two density levels (four and 16 shoot fragments per pot, responding to 96 and 384 plants m~(?2)), subjected to two static water depths (30 and 150 cm) and to low, medium, and high water level fluctuation frequencies (24, 12, and 6?days per fluctuation cycle of water depth change between 30 and 150 cm). Initial density had no significant effect on individuals of C. demersum ; however, it had a positive effect on population performance. Fluctuation frequency did not affect the growth of C. demersum , whereas increasing water depth significantly decreased both individual and internode biomass, and also increased shoot length regardless of comparison level. We therefore conclude that managing water depth and establishing populations with higher plant density may be helpful for the restoration of submerged macrophytes in degraded wetlands.
机译:为了成功恢复恶化的湖泊生态系统,至关重要的是要确定影响淹没大型植物的环境因素。种植密度和水分状况是沉水植物生长的重要因素。尽管许多实验研究都研究了水分制度对某些水生植物物种生长的影响,但很少有人测试过种植密度和水分制度对淹没种群的种群,个体和节间生长的影响。我们以两种密度水平(每盆四个和16个枝条碎片,响应96和384株m〜(?2)),两个静态水深(30和150 cm)和低密度构建了角藻(Ceratophyllum demersum)种群。 ,中,高水位波动频率(每个水深波动周期的24、12和6天在30至150 cm之间变化)。初始密度对iC个体没有显着影响。脱渣;但是,它对人口绩效产生了积极影响。波动频率不影响iC的生长。 ,而增加水深会显着降低个体和节间生物量,并且还会增加苗长,而与比较水平无关。因此,我们得出结论,管理水深并建立具有较高植物密度的种群可能有助于恢复退化湿地中被淹没的大型植物。

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