CRISPR/Cas技术在酵母合成基因组学研究中的应用

Huafeng Lin, Haizhen Wang, Aimin Deng, Minjing Rong, Lei Ye, Lei Shi, Tuanmei Wang, Xiangwen Peng
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引用次数: 0

摘要

全基因组计划通过产生大量的数据,揭开了生物基因组多样性和复杂性的序幕。为了探索基因组之谜,世界各地的科学家都致力于为这些海量数据进行注释。然而,寻找准确而有价值的信息就像大海捞针一样。基因编辑技术的进步,使研究人员能够利用最先进的基因编辑工具,精确地操纵基因组中的目标功能基因,从而更方便地促进涉及生物学、农业、食品工业、医学、环境和医疗保健等领域的研究。CRISPR/Cas系统作为一种具有多种多样同源体和变异体的先锋编辑装置,正迅速推动着合成基因组学和合成生物学的发展。首先,在本章中,我们将介绍CRISPR/Cas系统的分类、结构和功能多样性。然后重点介绍了CRISPR/Cas技术在酵母基因组合成中的应用。最后,对合成基因组学和基于CRISPR/Cas系统的合成生物技术及其在酵母中的进一步应用进行了综述和展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applications of CRISPR/Cas Technology to Research the Synthetic Genomics of Yeast
The whole genome projects open the prelude to the diversity and complexity of biological genome by generating immense data. For the sake of exploring the riddle of the genome, scientists around the world have dedicated themselves in annotating for these massive data. However, searching for the exact and valuable information is like looking for a needle in a haystack. Advances in gene editing technology have allowed researchers to precisely manipulate the targeted functional genes in the genome by the state-of-the-art gene-editing tools, so as to facilitate the studies involving the fields of biology, agriculture, food industry, medicine, environment and healthcare in a more convenient way. As a sort of pioneer editing devices, the CRISPR/Cas systems having various versatile homologs and variants, now are rapidly giving impetus to the development of synthetic genomics and synthetic biology. Firstly, in the chapter, we will present the classification, structural and functional diversity of CRISPR/Cas systems. Then we will emphasize the applications in synthetic genome of yeast (Saccharomyces cerevisiae) using CRISPR/Cas technology based on year order. Finally, the summary and prospection of synthetic genomics as well as synthetic biotechnology based on CRISPR/Cas systems and their further utilizations in yeast are narrated.
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