国产丝袜在线精品丝袜|在线A毛片免费视频观|日韩精品久久久一区二区|亚洲成在人网站天堂直播|99在线精品66视频无码|亚洲欧美不卡视频在线播放|国产精品久久久久久免费一级|久久精品国产亚洲AV香蕉软件

"Jumping genes" help stabilize DNA folding patterns: study

Source: Xinhua| 2020-01-25 04:39:54|Editor: Mu Xuequan
Video PlayerClose

CHICAGO, Jan. 24 (Xinhua) -- A study at Washington University School of Medicine in St. Louis indicates that "jumping genes" -- bits of DNA that can move from one spot in the genome to another and are well-known for increasing genetic diversity over the long course of evolution -- play another and more surprising role of stabilizing the 3D folding patterns of the DNA molecule inside the cell's nucleus.

The study was published Friday in the journal Genome Biology.

Studying DNA folding in mouse and human blood cells, the researchers found that in many regions where the folding patterns of DNA are conserved through evolution, the genetic sequence of the DNA letters establishing these folds is not. It is ever so slightly displaced. But this changing sequence, a genetic turnover, does not cause problems. Because the structure largely stays the same, the function presumably does, too, so nothing of importance changes.

Jumping genes are also called transposable elements.

"We were surprised to find that some young transposable elements serve to maintain old structures," said the study's first author Mayank N.K. Choudhary, a doctoral student at the university. "The specific sequence may be different, but the function stays the same. And we see that this has happened multiple times over the past 80 million years, when the common ancestors of mice and humans first diverged from one another."

The fact that a new transposable element can insert itself and serve the same role as an existing anchor creates a redundancy in the regulatory portions of the genome, regions of the DNA molecule that determine how and when genes are turned on or off.

According to the researchers, this redundancy makes the genome more resilient. In providing both novelty and stability, jumping genes may help the mammalian genome strike a vital balance -- allowing animals the flexibility to adapt to a changing climate.

"Our study changes how we interpret genetic variation in the noncoding regions of the DNA," said senior author Ting Wang, a professor of medicine at the university. "For example, large surveys of genomes from many people have identified a lot of variations in noncoding regions that don't seem to have any effect on gene regulation, which has been puzzling. But it makes more sense in light of our new understanding of transposable elements - while the local sequence can change, but the function stays the same."

The researchers have uncovered another layer of complexity in the genome sequence that was not known before. "We may need to revisit these types of studies in light of the new understanding we now have of transposable elements," Wang said.

TOP STORIES
EDITOR’S CHOICE
MOST VIEWED
EXPLORE XINHUANET
010020070750000000000000011105091387320311
远安县| 西昌市| 兰溪市| 龙门县| 锦州市| 石家庄市| 石楼县| 镇平县| 通榆县| 江门市| 浪卡子县| 博野县| 漾濞| 陵水| 双江| 温宿县| 云南省| 新昌县| 玉溪市| 武穴市| 长武县| 广南县| 大同市| 兴安县| 鞍山市| 通州市| 民权县| 南京市| 余江县| 迁安市| 高陵县| 剑川县| 盐城市| 亚东县| 高密市| 新龙县| 阿瓦提县| 磐安县| 岫岩| 楚雄市| 当涂县|