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HERO ID
2040180
Reference Type
Journal Article
Title
Variable response of two tropical phytoplankton species at different salinity and nutrient condition
Author(s)
Ganguly, D; Robin, RS; Vardhan, KV; Muduli, PR; Abhilash, KR; Patra, S; Subramanian, BR
Year
2013
Is Peer Reviewed?
Yes
Journal
Journal of Experimental Marine Biology and Ecology
ISSN:
0022-0981
Volume
440
Page Numbers
244-249
DOI
10.1016/j.jembe.2013.01.008
Web of Science Id
WOS:000316092500034
Abstract
The responses of two tropical phytoplankton species (one diatom and one cyanobacterium) at various nutrient concentrations were studied to determine their optimum growth conditions. Optimum salinities for these two species were also determined prior to the nutrient limitation study. As a part of ecosystem monitoring at Asia's largest brackish water lagoon (Chilika), axenic cultures of Chaetoceros simplex and Anabaena sp. were maintained and nutrient concentrations were regulated according to the in situ conditions. At given pre-defined environmental conditions (light, nutrient, temperature, salinity etc.) the maximum growth rate of 0.043 h(-1) and 0.040 h(-1) was recorded for C simplex and Anabaena sp. at N/P ratios of 12 and 8, respectively. Addition of ammonia significantly stimulated the growth of Anabaena sp., whereas C simplex did not show such significant increase. Anabaena sp. showed larger positive response towards the enrichment of phosphate-phosphorous (PO4-P) in terms of specific growth rate compared to that of C simplex. For both the species, relative decrease in available dissolved inorganic nitrogen (DIN) was indicated by an apparent decrease in chlorophyll-b/a ratios. In in vitro conditions chlorophyll to carbon ratio increases with increasing N concentration, and was found to be higher for C simplex relative to Anabaena sp. The results suggested that Anabaena sp. is the better competitor at low nutrient availability and has higher adaptation ability than C simplex. (C) 2013 Elsevier B.V. All rights reserved.
Keywords
Carbon; Chlorophyll a; Growth rate; Nutrient limitation; Phytoplankton; Salinity
Tags
IRIS
•
Ammonia
Literature Search Update – Sept 2015 (private)
Literature Search Results
•
Nitrate/Nitrite
Supplemental LitSearch Update 1600-2015
WoS
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