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在粗糙脉孢菌 spo11 缺失纯合子中,减数分裂过程中会发生残余重组。

Residual recombination in Neurospora crassa spo11 deletion homozygotes occurs during meiosis.

机构信息

School of Biological Sciences, Flinders University, 2100, Adelaide, 5001, SA, Australia.

出版信息

Mol Genet Genomics. 2013 Sep;288(9):437-44. doi: 10.1007/s00438-013-0761-9. Epub 2013 Jun 26.

Abstract

Spo11 is considered responsible for initiation of meiotic recombination in higher organisms, but previous analysis using spo11 (RIP) mutants suggests that the his-3 region of Neurospora crassa experiences spo11-independent recombination. However, despite possessing several stop codons, it is conceivable that the mutants are not completely null. Also, since lack of spo11 interferes with chromosomal pairing and proper segregation at Meiosis I, spores can be partially diploid for a period after meiosis. Thus, it is possible that the recombination observed could be an abnormal event, occurring during the period of aneuploidy rather than during meiosis. To test the former hypothesis, we generated spo11 deletion homozygotes. Using crosses heteroallelic for his-3 mutations, we showed that His(+) progeny are generated in spo11 deletion homozygotes at a frequency at least as high as in wild type and, as in the spo11 (RIP) mutants, local crossing over is not reduced. To test the latter hypothesis, we utilised mutations in either end of a histone H1-GFP fusion gene, inserted between the recombination hotspot cog and his-3, in which GFP(+) spores arise as a result of recombination in a cross between the two GFP alleles. In a control cross homozygous for spo11 (+), the frequency at which GFP(+) spores arise is comparable to the frequency of His(+) spores and glowing nuclei first appear during prophase, prior to metaphase I, as expected for a product of meiotic recombination. Similarly in spo11 deletion homozygotes, GFP(+) spores arise at high frequency and glowing nuclei are first seen before metaphase, indicating that allelic recombination occurs during meiosis in the absence of spo11. We have therefore shown that spo11 is not essential for either his-3 allelic recombination or crossing over in the vicinity of his-3, and that spo11-independent allelic recombination is meiotic, indicating that there is a spo11-independent mechanism for initiation of recombination in Neurospora.

摘要

Spo11 被认为负责高等生物减数分裂重组的起始,但之前使用 spo11(RIP)突变体的分析表明,粗糙脉孢菌的 his-3 区域经历了 spo11 独立的重组。然而,尽管存在几个终止密码子,可以想象突变体并不是完全缺失的。此外,由于 spo11 的缺乏会干扰染色体配对和减数分裂 I 中的正确分离,减数分裂后一段时间内孢子可能部分为二倍体。因此,观察到的重组可能是一种异常事件,发生在非整倍体期间而不是减数分裂期间。为了验证前一种假设,我们生成了 spo11 缺失纯合子。通过异等位基因杂交 his-3 突变体,我们表明 His(+)后代在 spo11 缺失纯合子中的产生频率至少与野生型相同,并且与 spo11(RIP)突变体一样,局部交叉并不减少。为了验证后一种假设,我们利用插入重组热点 cog 和 his-3 之间的组蛋白 H1-GFP 融合基因的两端的突变,在两个 GFP 等位基因之间的杂交中产生 GFP(+)孢子。在 spo11(+)纯合的对照杂交中, GFP(+)孢子产生的频率与 His(+)孢子产生的频率相当,并且在预期的减数分裂重组产物中,在前期出现发光核,早于中期 I。同样,在 spo11 缺失纯合子中, GFP(+)孢子以高频率产生,并且在中期之前首先出现发光核,表明在缺乏 spo11 的情况下,等位基因重组发生在减数分裂中。因此,我们已经表明 spo11 对于 his-3 等位基因重组或附近的交叉都不是必需的,并且 spo11 独立的等位基因重组是减数分裂的,这表明在粗糙脉孢菌中有 spo11 独立的重组起始机制。

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