Animal tissue requires low-oxygen conditions for its maintenance. The need for low-oxygen conditions contrasts with the idea of an evolutionary leap in animal diversity as a result of expanding oxic conditions. To accommodate tissue renewal at oxic conditions, however, vertebrate animals and vascular plants demonstrate abilities to access hypoxia. Here, I argue that multicellular organisms sustain oxic conditions first after internalizing hypoxic conditions. The 'harnessing' of hypoxia has allowed multicellular evolution to leave niches that were stable in terms of oxygen concentrations for those where oxygen fluctuates. Since oxygen fluctuates in most settings on Earth's surface, the ancestral niche would have been a deep marine setting. T...
Oxygen is an essential element for life and the ability to monitor and respond promptly to molecular...
Both the gradual rise in atmospheric oxygen over the Proterozoic Eon as well as episodic fluctuation...
Multiple eukaryotic clades make their first appearance in the fossil record between ~810 and 715 Ma....
Animal diversification on Earth has long been presumed to be associated with the increasing extent o...
The modern biosphere owes its idiosyncratic expression to the activities of oxygen metabolizing orga...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Since life took its earliest footholds, organisms have been in a perpetual arms race. Evolutionary t...
Since life took its earliest footholds, organisms have been in a perpetual arms race. Evolutionary t...
Influence of atmospheric gases in the eco systems on the habituating living organisms, an area of fo...
The biology of sponges provides clues about how early animals may have dealt with low levels of oxyg...
Life on Earth originated and evolved in anoxic environments. Around 2.4 billion-years-ago, ancestors...
Oxygen is an essential element for life and the ability to monitor and respond promptly to molecular...
Both the gradual rise in atmospheric oxygen over the Proterozoic Eon as well as episodic fluctuation...
Multiple eukaryotic clades make their first appearance in the fossil record between ~810 and 715 Ma....
Animal diversification on Earth has long been presumed to be associated with the increasing extent o...
The modern biosphere owes its idiosyncratic expression to the activities of oxygen metabolizing orga...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Oxygen-sensing mechanisms of eukaryotic multicellular organisms coordinate hypoxic cellular response...
Since life took its earliest footholds, organisms have been in a perpetual arms race. Evolutionary t...
Since life took its earliest footholds, organisms have been in a perpetual arms race. Evolutionary t...
Influence of atmospheric gases in the eco systems on the habituating living organisms, an area of fo...
The biology of sponges provides clues about how early animals may have dealt with low levels of oxyg...
Life on Earth originated and evolved in anoxic environments. Around 2.4 billion-years-ago, ancestors...
Oxygen is an essential element for life and the ability to monitor and respond promptly to molecular...
Both the gradual rise in atmospheric oxygen over the Proterozoic Eon as well as episodic fluctuation...
Multiple eukaryotic clades make their first appearance in the fossil record between ~810 and 715 Ma....