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This is scientific American's 60-Second Science, I'm Karen Hopkin, this'll just take a minute.
If there’s anything better than a fresh, ripe, tomato, it’s a gigantic fresh, ripe tomato. And thanks to a couple of mutations, that’s exactly what we all enjoy every time we grab a tomato from the farmer’s market or the grocery store. In the wild, tomato plants actually produce some pretty small fruit. Today’s cultivated varieties serve up tomatoes that are a thousand times larger. This yummy enormity comes from mutations that affect the activity of two genes3: one that controls cell division, so the more cells there are in a tomato, the bigger that tomato will be; and another that controls how many seed-bearing compartments4 each fruit has. Again, the more compartments the bigger the fruit.
The compartment-number mutation1, discovered by scientists at Cornell University, is described online in the current issue of Nature Genetics. The researchers found that no strains of wild tomato carry this mutation, which affects a gene2 called fasciated. While all of the large-fruited modern varieties they surveyed have it, this suggests that the mutation occurred relatively5 recently in tomato history, and that breeders then shared it with all their tomato-loving friends. So you can thank those fasciated mutants for teeing up your next BLT.
Thanks for the minute, for Scientific American 60-Second Science, I'm Karen Hopkin.
1 mutation | |
n.变化,变异,转变 | |
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2 gene | |
n.遗传因子,基因 | |
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3 genes | |
n.基因( gene的名词复数 ) | |
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4 compartments | |
n.间隔( compartment的名词复数 );(列车车厢的)隔间;(家具或设备等的)分隔间;隔层 | |
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5 relatively | |
adv.比较...地,相对地 | |
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