国产热热热精品,亚洲视频久久】日韩,三级婷婷在线久久,99人妻精品视频,精品九热人人肉肉在线,AV东京热一区二区,91po在线视频观看,久久激情宗合,青青草黄色手机视频

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Science Talk

Tianjin University scientists make breakthrough in human genome synthesis and transfer

By Yan Dongjie | chinadaily.com.cn | Updated: 2025-08-14 16:42
Share
Share - WeChat

Researchers from Tianjin University have synthesized a human genome fragment exceeding 1 million base pairs in length — specifically 1.14 million base pairs — and successfully transferred it into mouse cells to verify its biological function.

This milestone overcomes critical technological bottlenecks in human genome synthesis and transfer, opening new pathways for biomedicine and genetic disease treatment.

The accomplishment addresses two long-standing challenges.

First, over 50 percent of the human genome consists of complex repetitive sequences, which academician Yuan Yingjin likened to "assembling a million-piece puzzle with near-identical fragments".

Second, transferring lengthy DNA segments is exceptionally delicate; core team member Liu Yue described it as moving "a fragile artwork of glass beads prone to shattering".

The team focused on the AZFa region of the Y chromosome, where deletions cause untreatable male infertility. This segment posed extreme difficulties with over 69 percent repetitive content.

Using their novel "SynNICE" system, scientists employed a stepwise strategy: dividing sequences into over 200 fragments, assembling them hierarchically using the homologous recombination capabilities of baker's yeast and integrating components with CRISPR-Cas9.

For transfer, they pioneered yeast nuclei as protective carriers. Yuan explained: "If DNA transfer is a moon mission, yeast nuclei are the spacecraft safeguarding genetic material."

Liu Yue added that this "natural transport capsule" prevents damage by shielding synthetic DNA within intact nuclei.

The breakthrough enables direct study of gene-function-disease relationships. Peking University professor Tang Fuchou noted SynNICE could extend viability of pig-to-human organ transplants from "years to decades".

Yuan emphasized interdisciplinary collaboration with Tsinghua University and hospitals, plus adherence to WHO-endorsed Tianjin Biosecurity Guidelines.

Supported by national resources, the team is now expanding SynNICE applications to tackle more health challenges.

Zang Yifan contributed to this stroy.

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
乌兰察布市| 宝鸡市| 朝阳县| 元谋县| 天镇县| 鄂托克旗| 竹溪县| 古蔺县| 保山市| 延长县| 蒲城县| 镇巴县| 仁布县| 丹巴县| 若尔盖县| 丰台区| 丰宁| 银川市| 和政县| 澄江县| 湖北省| 缙云县| 大庆市| 板桥市| 越西县| 横峰县| 平定县| 晋宁县| 德兴市| 保亭| 简阳市| 青田县| 贺兰县| 威远县| 寿光市| 介休市| 洱源县| 乐平市| 库车县| 阳谷县| 图木舒克市|