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首页> 外文期刊>Computers and Electronics in Agriculture >Effects of urea on growth and photosynthetic metabolism of two aquatic plants (Cabomba caroliniana A. Gray and Elodea nuttallii (Planch.) H. St. John)
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Effects of urea on growth and photosynthetic metabolism of two aquatic plants (Cabomba caroliniana A. Gray and Elodea nuttallii (Planch.) H. St. John)

机译:尿素对两种水生植物生长和光合作料的影响(Cabomba Caroliniana A. Gray和Elodea Nuttallii(Planch。)H. St. John)

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Increasing urea import into freshwaters is known to have a negative impact on aquatic ecosystems, however, few data exist about the effects of urea on the physiology and ecology of aquatic plants. In the present study, two submersed aquatic plants, Cabomba caroliniana A. Gray and Elodea nuttallii (Planch.) H. St. John were cultured with urea-enriched solution for 16 days and the effects of urea on the two species' physiology were determined on day 6 and day 16, respectively. The growth and photosynthetic metabolism of the two species were promoted after 16 days of treatment with 1 and 5 mg urea-N L-1, as indicated by the increase of relative growth rates (RGR), chlorophyll synthesis and elevated rates of net photosynthesis (PN). However, 10 mg urea-N L-1 markedly inhibited the growth of C. caroliniana and E. nuttallii by 14 and 28%, respectively. Moreover, obvious decline of photosystem II activity and photosynthetic rate in E. nuttallii were found after 6 days of 10 mg urea-N L-1 treatment, which appeared earlier than those in C caroliniana on day 16. All the urea treatments did not cause any damage to photosystem I in the two species. In addition, malondialdehyde (MDA) significantly increased while soluble carbohydrates (SC) markedly decreased in 10 mg urea-N L-1 treated two species. Moreover, the decrease of SC in C. caroliniana was not induced to the extent of that in E. nuttallii. In conclusion, high urea concentration in water column may hamper the growth of aquatic plants. Furthermore, E. nuttallii may be more sensitive and vulnerable to urea than C. caroliniana when they inhabit the eutrophic water with high urea availability. (C) 2016 Elsevier B.V. All rights reserved.
机译:众所周知,增加尿素进口到新水域对水生生态系统产生负面影响,但尿素对水生植物生理学和生态的影响很少有数据。在本研究中,两个潜水水生植物,Cabomba Caroliniana A. Grey和Elodea Nuttallii(Planch。)H. St. John培养了尿素溶液16天,并确定了尿素对两种物种生理的影响在第6天和第16天。在用1和5mg脲脲-N-1的处理16天后促进了两种物种的生长和光合作料,如相对生长率(RGR)的增加,叶绿素合成和净光合作用率升高( PN)。然而,10mg尿素-N1-1分别显着抑制C. caroliniana和E. nuttallii的生长分别为14%和28%。此外,在10mg尿素-N1-1治疗的6天后发现了光束II活性和光合速率的明显下降,其在第16天早些时候出现早期的C Caroliniana。所有尿素治疗都没有引起在两种物种中对照相我的损坏。此外,丙二醛(MDA)显着增加,而可溶性碳水化合物(SC)在10mg尿素-N1-1处理的两种物种中显着降低。此外,C. Caroliniana中的SC减少未诱导E. nuttallii的程度。总之,水柱中的高尿素浓度可能会阻碍水生植物的生长。此外,E. Nuttallii可能比C. Caroliniana居住在尿精水中具有高尿素的可用性的尿养水。 (c)2016年Elsevier B.v.保留所有权利。

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