Trish J. Lavery; Ben Roudnew; Justin Seymour; James G. Mitchell; Thomas Jeffries

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Trish J. Lavery; Ben Roudnew; Justin Seymour; James G. Mitchell; Thomas Jeffries High Nutrient Transport and Cycling Potential Revealed in the Microbial Metagenome of Australian Sea Lion…

Australian Sea Lion Microbiome Metabolic Potential
As in other gut microbiomes core metabolic functions including carbohydrate and protein metabolism dominated the Australian sea lion gut microbiome [5] . Carbohydrates serve an important role in energy storage within the gut. Protein metabolism is also a core function of the gut microbiome. While most microorganisms and plants can biosynthesise amino acids, animals must consume proteins as part of their diet in order to gain the amino acids needed for cell functioning.
Source: Wikisource

Trish J. Lavery; Ben Roudnew; Justin Seymour; James G. Mitchell; Thomas Jeffries High Nutrient Transport and Cycling Potential Revealed in the Microbial Metagenome of Australian Sea Lion…

When sea lions defecate at sea, the relatively high nutrient metabolism potential of bacteria in their faeces may accelerate the dissolution of nutrients from faecal particles, enhancing their persistence in the euphotic zone where they are available to stimulate marine production.
Source: Wikisource

Trish J. Lavery; Ben Roudnew; Justin Seymour; James G. Mitchell; Thomas Jeffries High Nutrient Transport and Cycling Potential Revealed in the Microbial Metagenome of Australian Sea Lion…

We consider whether bacteria might enhance the persistence of Australian sea lion faecal nutrients in the photic zone by solubilising nutrients from the faecal particles before the faecal particles can sink to the deep ocean.
Source: Wikisource

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