Literature DB >> 26986668

Indirect and direct effects of salinity on the quantity and quality of total amino acids in Ulva ohnoi (Chlorophyta).

Alex R Angell1, Leonardo Mata1, Rocky de Nys1, Nicholas A Paul1.   

Abstract

Salinity can affect the quantity and quality of total amino acids (TAAs) in seaweeds indirectly by altering growth rates and thereby diluting or concentrating the amino acid content of the biomass, or directly by altering the synthesis of specific amino acids and osmolytes. This study attempted to partition the indirect and direct effects of salinity on the quantity and quality of TAAs in the green seaweed Ulva ohnoi by culturing it under a range of salinities without nutrient limitation. Both the quantity and quality of TAAs varied across the salinity treatments. Quantity was most strongly related to the growth rate of the seaweed and was highest in the slowest growing seaweed. In contrast, the quality of TAAs (individual amino acids as a proportion of total content) was most strongly related to salinity for all amino acids, although this varied substantially among individual amino acids. Increases in salinity were positively correlated with the proportion of proline (46% increase), tyrosine (36% increase), and histidine (26% increase), whereas there was a negative correlation with alanine (29% decrease). The proportion of methionine, with strong links to the synthesis of the osmolyte dimethylsulfoniopropionate, did not correlate linearly with salinity and instead was moderately higher at the optimal salinities for growth. These results show that salinity simultaneously affects the quantity and quality of TAAs in seaweed through both indirect and direct mechanisms, with growth rates playing the overarching role in determining the quantity of TAAs.
© 2015 Phycological Society of America.

Entities:  

Keywords:  algae; amino acid; aquaculture; growth; methionine; nitrogen dilution; proline; salinity; seaweed

Year:  2015        PMID: 26986668     DOI: 10.1111/jpy.12300

Source DB:  PubMed          Journal:  J Phycol        ISSN: 0022-3646            Impact factor:   2.923


  2 in total

1.  Physiological functional traits explain morphological variation of Ulva prolifera during the drifting of green tides.

Authors:  Chen Guan; Xinyu Zhao; Tongfei Qu; Yi Zhong; Chengzong Hou; Zhihao Lin; Jinhui Xu; Xuexi Tang; Ying Wang
Journal:  Ecol Evol       Date:  2022-01-17       Impact factor: 2.912

2.  A comparison of methods for the non-destructive fresh weight determination of filamentous algae for growth rate analysis and dry weight estimation.

Authors:  Michael E Ross; Michele S Stanley; John G Day; Andrea J C Semião
Journal:  J Appl Phycol       Date:  2017-06-10       Impact factor: 3.215

  2 in total

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