CRISPR/Cas9:改良块根和块茎作物的先进平台

IF 4.9 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
K. Divya, Makeshkumar Thangaraj, N. Krishna Radhika
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引用次数: 0

摘要

块根和块茎作物(RTCs)包括木薯、马铃薯、甘薯和山药,除了在营养、工业和生物能源领域有多种用途外,主要还是世界上相当一部分人口的主食作物。即便如此,考虑到其作为工业原料的潜力,RTC 仍然是一类未得到充分利用的作物。传统 RTC 改良计划的复杂性阻碍了广泛开发这类作物在粮食、能源生产、增值和可持续发展方面的潜力。现在,随着全基因组测序技术的出现,木薯、甘薯和马铃薯已经有了足够的序列数据。这些基因组资源为改良块茎作物提供了巨大的空间,使其更适合农艺学和工业应用。过去十年中,通过采用基因编辑等新策略,在改良块茎作物方面取得了显著进展。本综述介绍了 CRISPR/Cas 技术改良块茎作物的主要领域。此外,还讨论了用 CRISPR/Cas9 构建物对 RTC 进行遗传转化和编辑品系再生的策略,以及在建立这些品系过程中遇到的瓶颈。此外,还指出了未来研究需要重点关注的块茎作物的某些特性以及可能的编辑目标。总之,本综述全面介绍了在 RTCs 中建立基于 CRISPR/Cas9 的基因编辑所取得的进展、未来的研究方向、瓶颈以及主要的实验问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CRISPR/Cas9: an advanced platform for root and tuber crops improvement
Root and tuber crops (RTCs), which include cassava, potato, sweet potato, and yams, principally function as staple crops for a considerable fraction of the world population, in addition to their diverse applications in nutrition, industry, and bioenergy sectors. Even then, RTCs are an underutilized group considering their potential as industrial raw material. Complexities in conventional RTC improvement programs curb the extensive exploitation of the potentials of this group of crop species for food, energy production, value addition, and sustainable development. Now, with the advent of whole-genome sequencing, sufficient sequence data are available for cassava, sweet potato, and potato. These genomic resources provide enormous scope for the improvement of tuber crops, to make them better suited for agronomic and industrial applications. There has been remarkable progress in RTC improvement through the deployment of new strategies like gene editing over the last decade. This review brings out the major areas where CRISPR/Cas technology has improved tuber crops. Strategies for genetic transformation of RTCs with CRISPR/Cas9 constructs and regeneration of edited lines and the bottlenecks encountered in their establishment are also discussed. Certain attributes of tuber crops requiring focus in future research along with putative editing targets are also indicated. Altogether, this review provides a comprehensive account of developments achieved, future lines of research, bottlenecks, and major experimental concerns regarding the establishment of CRISPR/Cas9-based gene editing in RTCs.
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CiteScore
7.00
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