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首页> 外文期刊>Frontiers in Plant Science >Phylogenetic and CRISPR/Cas9 Studies in Deciphering the Evolutionary Trajectory and Phenotypic Impacts of Rice ERECTA Genes
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Phylogenetic and CRISPR/Cas9 Studies in Deciphering the Evolutionary Trajectory and Phenotypic Impacts of Rice ERECTA Genes

机译:系统发育和CRISPR / Cas9研究破译水稻 ERECTA 基因的进化轨迹和表型影响

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摘要

The ERECTA family genes ( ERfs ) have been found to play diverse functions in Arabidopsis , including controlling cell proliferation and cell growth, regulating stomata patterning, and responding to various stresses. This wide range of functions has rendered them as a potential candidate for crop improvement. However, information on their functional roles, particularly their morphological impact, in crop genomes, such as rice, is limited. Here, through evolutionary prediction, we first depict the evolutionary trajectory of the ER family, and show that the ER family is actually highly conserved across different species, suggesting that most of their functions may also be observed in other plant species. We then take advantage of the CRISPR/Cas9 (clustered regularly interspaced short palindromic repeats–associated nuclease 9) system to assess their morphological impact on one of the most important crops, rice. Loss-of-function mutants of OsER1 and OsER2 display shortened plant stature and reduced panicle size, suggesting they possibly also functioned in regulating cell proliferation and cell growth in rice. In addition to functions similar to that in Arabidopsis , we also find clues that rice ERfs may play unique functional roles. The OsER2 displayed more severe phenotypic changes than OsER1 , indicating putative differentiation in their functions. The OsERL might be of essential in its function, and the proper function of all three rice ER genes might be dependent of their genetic background. Future investigations relating to these functions are key to exploiting ERfs in crop development.
机译:已发现ERECTA家族基因(ERfs)在拟南芥中起着多种功能,包括控制细胞增殖和细胞生长,调节气孔模式以及应对各种压力。如此广泛的功能使其成为作物改良的潜在候选者。但是,有关它们在水稻等作物基因组中的功能作用,特别是其形态学影响的信息有限。在这里,通过进化预测,我们首先描述了ER家族的进化轨迹,并表明ER家族实际上在不同物种之间都是高度保守的,这表明在其他植物物种中也可能观察到它们的大部分功能。然后,我们利用CRISPR / Cas9(聚簇的规则间隔的短回文重复序列-相关核酸酶9)系统来评估它们对最重要的作物之一水稻的形态学影响。 OsER1和OsER2的功能丧失突变体显示出植物身高缩短和穗尺寸减小,表明它们还可能在调节水稻的细胞增殖和细胞生长中起作用。除了类似于拟南芥的功能外,我们还发现了水稻ERfs可能发挥独特功能的线索。 OsER2表现出比OsER1更严重的表型变化,表明其功能可能存在差异。 OsERL可能在其功能中至关重要,并且所有三个水稻ER基因的适当功能都可能取决于其遗传背景。与这些功能有关的未来研究是在作物发育中利用ERfs的关键。

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