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首页> 外文期刊>Plant Biotechnology Journal >CRISPR/Cas9‐mediated knockout and overexpression studies reveal a role of maize phytochrome C in regulating flowering time and plant height
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CRISPR/Cas9‐mediated knockout and overexpression studies reveal a role of maize phytochrome C in regulating flowering time and plant height

机译:CRISPR / CAS9介导的敲除和过度表达研究揭示了玉米Phytochrome C在调节开花时间和植物高度方面的作用

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摘要

Maize is a major staple crop widely used for food, feedstocks and industrial products. Shade‐avoidance syndrome (SAS), which is triggered when plants sense competition of light from neighbouring vegetation, is detrimental for maize yield production under high‐density planting conditions. Previous studies have shown that the red and far‐red photoreceptor phytochromes are responsible for perceiving the shading signals and triggering SAS in Arabidopsis; however, their roles in maize are less clear. In this study, we examined the expression patterns of ZmPHYC1 and ZmPHYC2 and found that ZmPHYC1, but not ZmPHYC2, is highly expressed in leaves and is regulated by the circadian clock. Both ZmPHYC1 and ZmPHYC2 proteins are localized to both the nucleus and cytoplasm under light conditions and both of them can interact with themselves or with ZmPHYBs. Heterologous expression of ZmPHYCs can complement the Arabidopsis phyC‐2 mutant under constant red light conditions and confer an attenuated SAS in Arabidopsis in response to shading. Double knockout mutants of ZmPHYC1 and ZmPHYC2 created using the CRISPR/Cas9 technology display a moderate early‐flowering phenotype under long‐day conditions, whereas ZmPHYC2 overexpression plants exhibit a moderately reduced plant height and ear height. Together, these results provided new insight into the function of ZmPHYCs and guidance for breeding high‐density tolerant maize cultivars.
机译:玉米是一种主要用于食品,原料和工业产品的主要主食作物。避免抗冲综合征(SAS),当邻近植被的植物感觉射击竞争时,这是在高密度种植条件下对玉米产量产生的损害。以前的研究表明,红色和远红光感受器植物植物植物植物负责在拟南芥中感知着色信号和触发SAS;然而,他们在玉米中的角色不太清楚。在这项研究中,我们检查了ZmphyC1和ZmphyC2的表达式模式,发现ZmphyC1但不是ZmphyC2在叶子中高度表达,并且由昼夜节奏调节。 ZmphyC1和ZmphyC2蛋白均以在光条件下局部化为核和细胞质,它们两者都可以与自己或Zmphybs相互作用。 Zmphycs的异源表达可以在恒定的红光条件下补充拟南芥PHYC-2突变体,并响应着遮蔽征收拟南芥中的减毒SAS。使用CRISPR / CAS9技术创建的ZMPHYC1和ZMPHYC2的双敲除突变体在漫长的环境下显示适度的早期开花表型,而ZMPHYC2过表达植物表现出适度降低的植物高度和耳高。这些结果在一起,提供了新的洞察ZMPhycs和育种高密度耐受玉米品种的指导。

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