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首页> 外文期刊>Plant Biotechnology Journal >Simplified adenine base editors improve adenine base editing efficiency in rice
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Simplified adenine base editors improve adenine base editing efficiency in rice

机译:简化的腺嘌呤基础编辑器改善了米饭中的腺嘌呤基础编辑效率

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摘要

Adenine base editors (ABEs) have been exploited to introduce targeted adenine (A) to guanine (G) base conversions in various plant genomes, including rice, wheat and Arabidopsis. However, the ABEs reported thus far are all quite inefficient at many target sites in rice, which hampers their applications in plant genome engineering and crop breeding. Here, we show that unlike in the mammalian system, a simplified base editor ABE‐P1S (Adenine Base Editor‐Plant version 1 Simplified) containing the ecTadA*7.10‐nSpCas9 (D10A) fusion has much higher editing efficiency in rice compared to the widely used ABE‐P1 consisting of the ecTadA‐ecTadA*7.10‐nSpCas9 (D10A) fusion. We found that the protein expression level of ABE‐P1S is higher than that of ABE‐P1 in rice calli and protoplasts, which may explain the higher editing efficiency of ABE‐P1S in different rice varieties. Moreover, we demonstrate that the ecTadA*7.10‐nCas9 fusion can be used to improve the editing efficiency of other ABEs containing SaCas9 or the engineered SaKKH‐Cas9 variant. These more efficient ABEs will help advance trait improvements in rice and other crops.
机译:已经利用腺嘌呤基础编辑(ABES)将针对性腺嘌呤(A)引入鸟嘌呤(G)各种植物基因组的基础转换,包括稻米,小麦和拟南芥。然而,迄今为止报道的eBES在大米的许多靶位点都是非常低效的,这妨碍了它们在植物基因组工程和作物育种中的应用。在这里,我们表明,与哺乳动物系统不同,含有EECTA * 7.10-NSPCAS9(D10A)融合的简化基本编辑器ABE-P1S(简化腺嘌呤基础编辑器 - 工厂版本1)在米中具有更高的编辑效率,而广泛相比二手ABE-P1由EECTADA-ECTADA * 7.10-NSPCAS9(D10A)融合组成。我们发现ABE-P1S的蛋白表达水平高于水稻愈伤组织和原生质体中的ABE-P1的蛋白表达水平,其可以解释不同水稻品种中的ABE-P1的更高编辑效率。此外,我们证明ECTADA * 7.10-NCAS9融合可用于改善含有SACAS9或工程化SAKKH-CAS9变体的其他斜坡的编辑效率。这些更高效的eBES将有助于推进水稻和其他作物的性质。

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