Since then, scientists have been working to strip that organism down to its minimum genetic components. The super-simple cell they created five years ago, dubbed JCVI-syn3.0, was perhaps too minimalist. The researchers have now added 19 genes back to this cell, including the seven needed for normal cell division, to create the new variant, JCVI-syn3A. This variant has fewer than 500 genes. To put that number in perspective, the E. coli bacteria that live in your gut have about 4,000 genes. A human cell has around 30,000.
NIST's role was to measure the resulting changes under a microscope. [...] The result was stop-motion video that showed the synthetic cells growing and dividing. This video shows JCVI-syn3.0 cells -- the ones created five years ago -- dividing into different shapes and sizes. Some of the cells form filaments. Others appear to not fully separate and line up like beads on a string. Despite the variety, all these cells are genetically identical. These videos and others like them allowed the researchers to observe how their genetic manipulations affected the cell growth and division. If removing a gene disrupted the normal process, they'd put it back and try another. Of the seven genes added to this organism for normal cell division, scientists know what only two of them do. The findings have been published in the journal Cell.
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