Article  Strange bacteria that can't live alone hint at early steps to complex life

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https://www.sciencealert.com/strange-mul...pected-way

EXCERPT: All bacteria exist as single cells at some point in their lives – except for one kind, known as multicellular magnetotactic bacteria (MMB), that is.

Scooped from the sulfide-laden sediments of a tidal salt marsh in Massachusetts, scientists think these MMBs could provide clues to our own evolutionary history, as a kind of missing link between simple, single-celled life forms and complex multicellular organisms like ourselves.

Other kinds of bacteria can team up with their fellow cells when needed, sure, but MMBs do everything together, to the point where each individual cell literally cannot survive being separated from its 'consortium', the nobbly super-organism it calls home.

The cells in an MMB consortium form a spherical shape with a hollow at the center, not unlike a blastocyst, the stage in embryonic development that comes immediately after the egg and sperm merge.

The fact that this bacteria so closely resembles that transition point, from two single cells with different genetics to one inseparable cluster, is fascinating: embryo comparisons have provided many clues about our evolutionary history.

Unlike a blastocyst, however, each cell in an MMB is its own individual organism. Scientists already knew this, but they had assumed these individuals might be clones of each other, since all the cells sync up to replicate when the entire MMB consortium divides in two.

A team led by environmental microbiologist George Schaible from Montana State University has made headway by mapping the metagenomes of 22 MMB consortia.

This revealed that the cells within a consortium are not clones, and that the variety of genes spread throughout the cluster enables individuals to serve different functions that benefit the whole – similar to organs in a body, or a society that benefits from its members' diverse skills and interests... (MORE - missing details)
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