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CRISPR/Cas brings plant biology and breeding into the fast lane

机译:CRISPR / CAS将植物生物学和繁殖进入快车道

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摘要

CRISPR/Cas is in the process of inducing the biggest transformation of plant breeding since the green revolution. Whereas initial efforts focused mainly on changing single traits by error prone non-homologous end joining, the last two years saw a tremendous technical progress achieving more complex genetic, epigenetic and transcriptional changes. The efficiencies of inducing directed changes by homologous recombination have been improved significantly and strategies to break genetic linkages by inducing chromosomal rearrangements have been developed. Cas13 systems have been applied to degrade viral and mRNA in plants. Most importantly, a historical breakthrough was accomplished: By introducing multiple genomic changes simultaneously, domestication of wild species in a single generation has been demonstrated, speeding up breeding dramatically.
机译:CRISPR / CAS正在诱导自绿色革命以来诱导植物育种的最大转化。 虽然初步努力主要集中在易于不同源终端加入的错误变化的单一性状,但过去两年看到了巨大的技术进步,实现了更复杂的遗传,表观遗传和转录变化。 通过诱导染色体重排诱导染色体重排的显着提高了诱导同源重组的定向变化的效率。 CAS13系统已被应用于降解植物中的病毒和mRNA。 最重要的是,完成了历史突破:通过同时引入多种基因组变化,已经证明了在一代中野生物种的驯化,从而激增了繁殖。

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