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首页> 外文期刊>Environmental Science and Pollution Research >Screening optimal substrates from Erhai lakeside for Ottelia acuminata (Gagnep.) Dandy, an endangered submerged macrophyte in China
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Screening optimal substrates from Erhai lakeside for Ottelia acuminata (Gagnep.) Dandy, an endangered submerged macrophyte in China

机译:从洱海湖边筛选最佳基材<重点型=“斜体”> Ottelia Acuminata (Gagnep.)Dandy,在中国濒临灭绝的浸没式宏观物质

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摘要

Because of the unstable hydrodynamic conditions in the wild, the endangered aquatic plant should be cultivated first in constructed wetlands for the protection and expansion of germplasm resources. Ottelia acuminata (Gagnep.) Dandy has become extinct in Erhai Lake, Yunnan province, China. In order to optimize substrates for this species to artificial cultivation, the native substrate (sandy soils) and the other three representative ones (red paddy soils, alluvial paddy soils, and purple paddy soils) collected from Erhai lakeside were applied to cultivate O. acuminata for 50?days. Multi indicators, such as antioxidant enzymes activity, malondialdehyde and chlorophyll-α concentration, and relative growth rate of O. acuminata , were discussed and statistically analyzed to classify the substrates. The results suggested that even disregarding the physiology significance of these indicators, hierarchical clustering analysis had high efficiency on optimizing substrates. Although various single indexes suggested different optimal substrates for macrophyte growth, red paddy soil was never excluded out the optimal substrate classes. Further study is needed to assess the substrates optimization functionalities of these indicators. This study offers amounts of physiology data and an effective method to optimize substrates of O. acuminata . It is helpful for environmental scientists and ecological engineers to conduct the similar study on endangered species.
机译:由于野外不稳定的流体动力学条件,应首先在构造的湿地中培养濒危水生植物,以保护和扩大种质资源。 Ottelia Acuminata(Gagnep。)Dandy在中国云南省洱海灭绝了。为了优化对人工培养的物种的基材,从洱海湖边收集的天然底物(砂土)和其他三种代表性(红色稻草土壤,冲积水稻土和紫色水稻土)培养O. Acumina 50个?天。讨论和统计分析抗氧化酶活性,抗氧化酶活性,丙二醛和叶绿素-α浓度和O. acumina的相对生长速率以分析基材。结果表明,即甚至忽视了这些指标的生理学意义,分层聚类分析对优化基材具有高效率。虽然各种单一指标表明了用于宏观物质生长的不同最佳底物,但是从未排除过最佳衬底类的红色水稻土。需要进一步研究来评估这些指标的底物优化功能。本研究提供了生理数据的数量和优化O. Acuminata的基板的有效方法。有助于环境科学家和生态工程师对濒危物种进行类似的研究。

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