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Heterochronic Meiotic Misexpression in an Interspecific Yeast Hybrid

机译:种间酵母杂交种中的异时减数分裂错误表达

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摘要

Regulatory changes rapidly accumulate between species, and interspecific hybrids often misexpress genes. Hybrid misexpression, expression levels outside the range of both parental species, can result from cis- and trans-acting regulatory changes that interact abnormally in hybrids. Thus, misexpressed genes may contribute to hybrid sterility. However, in the context of a whole organism, misexpression may not result directly from cis-trans interactions but rather indirectly from differences between hybrid and parental abundance of cell types. Here we eliminate the confounding effects of cell types by examining gene expression in a sterile interspecific yeast hybrid during meiosis. We investigated gene expression of the yeasts Saccharomyces cerevisiae, S. paradoxus, and their hybrid at multiple meiotic stages. Although the hybrid and parents exhibit similar changes in expression levels across meiosis, the hybrid meiotic program occurs earlier than either parent. The timing change produces a heterochronic pattern of misexpression during midmeiosis. Coincident with the timing of misexpression, we find a transition from predominantly trans-acting to cis-acting expression divergence and an increase in the number of opposing cis-trans changes. However, we find no direct relationship between opposing cis-trans changes and misexpression. Contrary to the notion that cis-trans interactions cause misexpression, a heterochronic shift in the normal meiotic gene expression program produces patterns of misexpression in an yeast hybrid. Our results imply that temporal dynamics of single cell types is important to understanding hybrid misexpression and its relationship to cis-trans interactions.
机译:调控变化在物种之间迅速积累,种间杂交种经常错误表达基因。杂交错误表达,即表达水平超出两个亲本物种的范围,可能是由在杂交种中异常相互作用的顺式和反式作用调节变化引起的。因此,错误表达的基因可能导致杂交不育。然而,在整个生物体的背景下,错误表达可能不是直接由顺反式相互作用引起的,而是间接由杂交细胞和亲本丰度细胞类型之间的差异引起的。在这里,我们通过检查减数分裂过程中无菌种间酵母杂交种中的基因表达来消除细胞类型的混杂效应。我们研究了酵母酿酒酵母、奇异酵母及其杂交种在多个减数分裂阶段的基因表达。尽管杂交种和亲本在减数分裂过程中表现出相似的表达水平变化,但杂交减数分裂程序早于亲本中的任何一个。时间变化在中减数分裂期间产生异时错误表达模式。与错误表达的时间相吻合,我们发现从主要反式反应到顺式反应的表达分歧的转变,以及相反的顺反式变化数量的增加。然而,我们发现对立的顺反式变化与错误表达之间没有直接关系。与顺反相互作用导致错误表达的观点相反,正常减数分裂基因表达程序的异时性转变在酵母杂交种中产生错误表达模式。我们的研究结果表明,单细胞类型的时间动力学对于理解杂交错误表达及其与顺反式相互作用的关系非常重要。

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