Central Arkansas Veterans Healthcare System, VA Medical Center Little Rock, AR, USA ; Department of Geriatrics, University of Arkansas for Medical Sciences Little Rock, AR, USA.
Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences Little Rock, AR, USA.
Front Genet. 2014 Aug 4;5:211. doi: 10.3389/fgene.2014.00211. eCollection 2014.
A quantitative trait locus (QTL) in the nematode C. elegans, "lsq4," was recently implicated by mapping longevity genes. QTLs for lifespan and three stress-resistance traits coincided within a span of <300 kbp, later narrowed to <200 kbp. A single gene in this interval is now shown to modulate all lsq4-associated traits. Full-genome analysis of transcript levels indicates that lsq4 contains a dimorphic gene governing the expression of many sperm-specific genes, suggesting an effect on spermatogenesis. Quantitative analysis of allele-specific transcripts encoded within the lsq4 interval revealed significant, 2- to 15-fold expression differences for 10 of 33 genes. Fourteen "dual-candidate" genes, implicated by both position and expression, were tested for RNA-interference effects on QTL-linked traits. In a strain carrying the shorter-lived allele, knockdown of rec-8 (encoding a meiotic cohesin) reduced its transcripts 4-fold, to a level similar to the longer-lived strain, while extending lifespan 25-26%, whether begun before fertilization or at maturity. The short-lived lsq4 allele also conferred sensitivity to oxidative and thermal stresses, and lower male frequency (reflecting X-chromosome non-disjunction), traits reversed uniquely by rec-8 knockdown. A strain bearing the longer-lived lsq4 allele, differing from the short-lived strain at <0.3% of its genome, derived no lifespan or stress-survival benefit from rec-8 knockdown. We consider two possible explanations: high rec-8 expression may include increased "leaky" expression in mitotic cells, leading to deleterious destabilization of somatic genomes; or REC-8 may act entirely in germ-line meiotic cells to reduce aberrations such as non-disjunction, thereby blunting a stress-resistance response mediated by innate immunity. Replicative lifespan was extended 20% in haploid S. cerevisiae (BY4741) by deletion of REC8, orthologous to nematode rec-8, implying that REC8 disruption of mitotic-cell survival is widespread, exemplifying antagonistic pleiotropy (opposing effects on lifespan vs. reproduction), and/or balancing selection wherein genomic disruption increases genetic variation under harsh conditions.
线虫 C. elegans 中的一个数量性状位点 (QTL)“lsq4”,最近通过对长寿基因进行作图而被牵涉进来。寿命和三种抗应激性状的 QTL 正好重合在 300kbp 以内,后来缩小到 200kbp 以内。该区间内的一个单一基因现在被证明可以调节所有 lsq4 相关性状。对转录水平的全基因组分析表明,lsq4 包含一个二态基因,控制许多精子特异性基因的表达,这表明它对线粒体发育有影响。在 lsq4 区间内编码的等位基因特异性转录本的定量分析显示,33 个基因中有 10 个的表达差异显著,为 2 到 15 倍。通过位置和表达都被牵连的 14 个“双重候选”基因,被测试了对 QTL 连锁性状的 RNA 干扰效应。在携带较短寿命等位基因的菌株中,rec-8(编码减数分裂粘连蛋白)的敲低使其转录物减少了 4 倍,达到与寿命较长的菌株相似的水平,同时将寿命延长了 25-26%,无论是在受精前还是在成熟时开始。短寿命的 lsq4 等位基因也赋予了对氧化应激和热应激的敏感性,以及较低的雄性频率(反映 X 染色体不分离),这些性状仅通过 rec-8 敲低而逆转。携带寿命较长的 lsq4 等位基因的菌株,与寿命较短的菌株在基因组的<0.3%上不同,从 rec-8 敲低中没有获得寿命或应激生存优势。我们考虑了两种可能的解释:高 rec-8 表达可能包括有丝分裂细胞中增加的“渗漏”表达,从而导致体细胞基因组不稳定;或者 REC-8 可能完全在生殖细胞减数分裂细胞中起作用,以减少非分离等异常,从而削弱由先天免疫介导的应激抵抗反应。酿酒酵母(BY4741)的复制寿命通过 REC8 的缺失延长了 20%,这与线虫 rec-8 同源,这意味着 REC8 对有丝分裂细胞存活的破坏是广泛存在的,例证了拮抗多效性(对寿命和繁殖的相反影响)和/或平衡选择,其中基因组破坏增加了恶劣条件下的遗传变异。