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A meiotic mystery: How sister kinetochores avoid being pulled in opposite directions during the first division

机译:减数分裂的奥秘:在第一分裂过程中姊妹动植物如何避免朝相反的方向被拉

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We now take for granted that despite the disproportionate contribution of females to initial growth of their progeny, there is little or no asymmetry in the contribution of males and females to the eventual character of their shared offspring. In fact, this key insight was only established towards the end of the eighteenth century by Joseph Koelreuter's pioneering plant breeding experiments. If males and females supply equal amounts of hereditary material, then the latter must double each time an embryo is conceived. How then does the amount of this mysterious stuff not multiply exponentially from generation to generation? A compensatory mechanism for diluting the hereditary material must exist, one that ensures that if each parent contributes one half, each grandparent contributes a quarter, and each great grandparent merely an eighth. An important piece of the puzzle of how hereditary material is diluted at each generation has been elucidated over the past ten years.
机译:我们现在理所当然地认为,尽管雌性对其后代的初始生长的贡献不成比例,但雄性和雌性对其共同后代的最终特征的贡献很少或没有不对称性。实际上,这种关键的见解只是在约瑟夫·科雷特(Joseph Koelreuter)的开创性植物育种实验中才确立的。如果雄性和雌性提供相等数量的遗传物质,则每次怀孕时后者必须加倍。那么,这些神秘事物的数量又如何不代代相传呢?必须存在一种稀释遗传物质的补偿机制,该机制可确保如果每个父母出资一半,每个祖父母出资四分之一,而每个曾祖父母则只有八分之一。在过去的十年中,阐明了遗传物质如何在每一代中被稀释的一个重要难题。

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