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首页> 外文期刊>Journal of Experimental Botany >Chicken Toes-Like Leaf and Petalody Flower (CTP) is a novel regulator that controls leaf and flower development in soybean
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Chicken Toes-Like Leaf and Petalody Flower (CTP) is a novel regulator that controls leaf and flower development in soybean

机译:鸡脚趾状叶子和百叶水(CTP)是一种新型调节器,用于控制大豆的叶子和花卉发育

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摘要

A soybean mutant displaying chicken toes-like leaves and petalody flowers was identified as being caused by a single recessive gene, termed ctp. Using heterozygous-inbred recombinants, this gene was fine-mapped to a 37-kb region harbouring three predicted genes on chromosome 5. The gene Glyma05g022400.1 was detected to have a 33-bp deletion in its first exon that was responsible for ctp. Validation for this gene was provided by the fact that the 33-bp deletion-derived marker I2 completely co-segregated with the phenotypes of 96 F10-derived residual heterozygous lines and 2200 fine-mapping individuals, and by the fact that the orthologue NbCTP in Nicotiana benthamiana also influenced leaf and flower development under virus-induced gene silencing. In terms of characterization, the CTPs shared highly conserved domains specifically in higher plants, GmCTP was alternatively spliced, and it was expressed in multiple organs, especially in lateral meristems. GmCTP was localized to the nucleus and other regions and performed transcriptional activity. In ctp, the expression levels and splicing patterns were dramatically disrupted, and many key regulators in leaf and/or floral developmental pathways were interrupted. Thus, CTP is a novel and critical pleiotropic regulator of leaf and flower development that participates in multiple regulation pathways, and may play key roles in lateral organ differentiation as a putative novel transcription regulator.
机译:鉴定出鸡脚趾状叶子和叶柄花的大豆突变体被鉴定为由单个隐性基因导致CTP引起的。使用杂合重组剂,将该基因精细映射到含有三种预测基因的37kb区染色体5.在其第一个引起CTP的主要外显子中检测到基因Glyma05G022400.1。提供了33-BP缺失衍生的标志物I2与96f10衍生的残留杂合线和2200个细定位个体的表型完全共聚的事实提供了该基因的验证,并通过了正轨Nbctp中的事实在病毒诱导的基因沉默下,尼古利亚纳·宾亚也影响了叶和花卉开发。在表征方面,CTPS特别在高等植物中共享高度保守的结构域,可转移GMCTP拼接,并且在多个器官中表达,特别是在横向分析中。 GMCTP本地化为细胞核和其他地区并进行转录活动。在CTP中,表达水平和剪接模式显着破坏,并且叶片和/或花卉发育途径中的许多关键调节剂被中断。因此,CTP是一种新颖的和临界肺炎,叶子和花卉发育的肺炎和临界肺炎调节剂,其参与多种调节途径,并且可能在横向器官分化中发挥关键作用作为推定的新型转录调节剂。

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