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Environmental relationships of aquatic vegetation in the fresh water ecosystem of the Nile Delta, Egypt
Author(s) -
ElGhani Monier Abd,
ElFiky Abdel M.,
Soliman Ashraf,
Khattab Adel
Publication year - 2011
Publication title -
african journal of ecology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.499
H-Index - 54
eISSN - 1365-2028
pISSN - 0141-6707
DOI - 10.1111/j.1365-2028.2010.01237.x
Subject(s) - phragmites , myriophyllum , eichhornia crassipes , aquatic plant , ordination , ecology , botany , biology , macrophyte , wetland
In generalized four sectors, 350 stands (water channels) in 50 selected and geo‐referenced sites with eighteen environmental factors were surveyed. The total number of recorded species varied from a sector to another: 21 in the northern, nineteen in the middle, seventeen in the western and sixteen in the eastern. New populations of Cyperus papyrus were explored. Vallisneria spiralis , Elodea canadensis and Najas armata were among seven extinct species that were not recorded few decades ago. The floristic composition alteration may be because of the addition of organic matter of plant and animal origin and the discharge of industrial and sewage effluents. Classification and ordination analyses (DCA) resulted in the segregation of seventeen vegetation groups (communities), three of them were repeatedly recorded; namely Phragmites australis‐Eichhornia crassipes, Phragmites australis‐Myriophyllum spicatum and Potamogeton pectinatus‐Myriophyllum spicatum. Phragmites australis‐Cyperus papyrus group was a new community spreading in the eastern sector of the Delta. Electric conductivity, Fe, Hg and chemical oxygen demand (COD) showed high significant variation ( P  <   0.001) among the vegetation groups. Other significant variables were Cl, Ca, NO 3 , pH and SO 4 ( P  <   0.047). Redundancy analysis (RDA) was chosen as the appropriate ordination method to perform direct gradient analysis. Trace elements Cu, Fe, Hg and Pb participated in the floristic and chemical composition of each sector.

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