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Nature:科学家驳斥雄性染色体危机说 称衰落趋势已遏制

2012-02-24 MedSci MedSci原创

2月23日,国际学术期刊Nature上刊登了一项研究成果称,近期对于恒河猴进行的一项研究显示,社会上盛传的所谓Y染色体将逐渐消失,并最终导致雄性灭亡的传闻并非事实。雄性DNA在早期确实经历过迅速的衰落,但是这一趋势已经被遏制。 研究人员表示他们希望这一发现将终结这一有关雄性染色体危机的谣言。这一谣言声称在过去3亿年内,Y染色体已经从1400组基因下降为今天的仅有45组。这种理论被称作“腐烂的

2月23日,国际学术期刊Nature上刊登了一项研究成果称,近期对于恒河猴进行的一项研究显示,社会上盛传的所谓Y染色体将逐渐消失,并最终导致雄性灭亡的传闻并非事实。雄性DNA在早期确实经历过迅速的衰落,但是这一趋势已经被遏制。

研究人员表示他们希望这一发现将终结这一有关雄性染色体危机的谣言。这一谣言声称在过去3亿年内,Y染色体已经从1400组基因下降为今天的仅有45组。这种理论被称作“腐烂的Y染色体”,这一理论认为Y染色体将不断缩减直至消亡。

研究人员表示他们希望这一发现将终结这一有关雄性染色体危机的谣言。这一谣言声称在过去3亿年内,Y染色体已经从1400组基因下降为今天的仅有45组

研究人员此次考察了恒河猴的基因演化情况,发现它们仅保留下了其祖先大约3%的常染色体。而在染色体更古老的位置上,在过去的2500万年内则未丢失任何一组基因。

美国怀特海德生物医药研究所生物学教授大卫·佩吉(David Page)说:“在过去10年间,流行的一种观点就是认为Y染色体正在消失。抛开这种说法是否有其坚实的科学基础不说,这种说法的传播速度之快令人惊讶,并且人们都深信不疑。”

他说:“几乎人人都来向我求证这个问题。这个想法实在太有说服力,它甚至阻碍了我们去探究有关Y染色体的实质性问题。在历史的早期,Y染色体确实经历过高速的基因丧失,速度极快。但随后这一速度就减缓了,这一趋势现在仍在持续。”

研究人员们表示Y染色体的演化总的来说就是从一开始的急剧衰落过渡到之后的严格保护。

实验室研究员詹妮弗·休斯(Jennifer Hughes)的早期工作证明了人类男性的Y染色体在过去600万年内一直保持了稳定。她说:“我们一直致力于开发一种明确的方式来揭开Y染色体头上笼罩着的神秘面纱。”

她说:“现在,我们的经验数据向这一传统的流行观念提出了挑战。恒河猴的雄性Y染色体和人类男性的Y染色体都没有出现丢失情况,很显然Y染色体并不会消失。”佩吉教授补充道:“这篇论文粉碎了有关Y染色体将消失的谣言。有了我们的这些数据,我认为任何人都无法否认这一事实。”

Strict evolutionary conservation followed rapid gene loss on human and rhesus Y chromosomes

Jennifer F. Hughes, Helen Skaletsky, Laura G. Brown, Tatyana Pyntikova, Tina Graves, Robert S. Fulton, Shannon Dugan, Yan Ding, Christian J. Buhay, Colin Kremitzki, Qiaoyan Wang, Hua Shen, Michael Holder, Donna Villasana, Lynne V. Nazareth, Andrew Cree, Laura Courtney, Joelle Veizer, Holland Kotkiewicz, Ting-Jan Cho, Natalia Koutseva, Steve Rozen, Donna M. Muzny, Wesley C. Warren, Richard A. Gibbs,

The human X and Y chromosomes evolved from an ordinary pair of autosomes during the past 200–300 million years. The human MSY (male-specific region of Y chromosome) retains only three percent of the ancestral autosomes’ genes owing to genetic decay. This evolutionary decay was driven by a series of five ‘stratification’ events. Each event suppressed X–Y crossing over within a chromosome segment or ‘stratum’, incorporated that segment into the MSY and subjected its genes to the erosive forces that attend the absence of crossing over. The last of these events occurred 30 million years ago, 5 million years before the human and Old World monkey lineages diverged. Although speculation abounds regarding ongoing decay and looming extinction of the human Y chromosome, remarkably little is known about how many MSY genes were lost in the human lineage in the 25 million years that have followed its separation from the Old World monkey lineage. To investigate this question, we sequenced the MSY of the rhesus macaque, an Old World monkey, and compared it to the human MSY. We discovered that during the last 25 million years MSY gene loss in the human lineage was limited to the youngest stratum (stratum 5), which comprises three percent of the human MSY. In the older strata, which collectively comprise the bulk of the human MSY, gene loss evidently ceased more than 25 million years ago. Likewise, the rhesus MSY has not lost any older genes (from strata 1–4) during the past 25 million years, despite its major structural differences to the human MSY. The rhesus MSY is simpler, with few amplified gene families or palindromes that might enable intrachromosomal recombination and repair. We present an empirical reconstruction of human MSY evolution in which each stratum transitioned from rapid, exponential loss of ancestral genes to strict conservation through purifying selection.

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    2012-06-18 liye789132251
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