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首页> 外文期刊>BMC Plant Biology >Genome-wide identification, expression, and sequence analysis of CONSTANS-like gene family in cannabis reveals a potential role in plant flowering time regulation
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Genome-wide identification, expression, and sequence analysis of CONSTANS-like gene family in cannabis reveals a potential role in plant flowering time regulation

机译:大麻铜类基因家族的基因组鉴定,表达和序列分析揭示了植物开花时间调节中的潜在作用

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摘要

Cannabis, an important industrial crop, has a high sensitivity to photoperiods. The flowering time of cannabis is one of its important agronomic traits, and has a significant effect on its yield and quality. The CONSTANS-like (COL) gene plays a key role in the regulation of flowering in this plant. However, the specific roles of the COL gene family in cannabis are still unknown. In this study, 13 CsCOL genes were identified in the cannabis genome. Phylogenetic analysis implied that the CsCOL proteins were divided into three subgroups, and each subgroup included conserved intron/exon structures and motifs. Chromosome distribution analysis showed that 13 CsCOL genes were unevenly distributed on 7 chromosomes, with chromosome 10 having the most CsCOL members. Collinearity analysis showed that two syntenic gene pairs of CsCOL4 and CsCOL11 were found in both rice and Gossypium raimondii. Of the 13 CsCOL genes, CsCOL6 and CsCOL12 were a pair of tandem duplicated genes, whereas CsCOL8 and CsCOL11 may have resulted from segmental duplication. Furthermore, tissue-specific expression showed that 10 CsCOL genes were preferentially expressed in the leaves, 1 CsCOL in the stem, and 2 CsCOL in the female flower. Most CsCOL exhibited a diurnal oscillation pattern under different light treatment. Additionally, sequence analysis showed that CsCOL3 and CsCOL7 exhibited amino acid differences among the early-flowering and late flowering cultivars. This study provided insight into the potential functions of CsCOL genes, and highlighted their roles in the regulation of flowering time in cannabis. Our results laid a foundation for the further elucidation of the functions of COL genes in cannabis.
机译:重要的工业作物大麻对光周期具有很高的敏感性。大麻的开花时间是其重要的农艺性状之一,对其产量和质量产生重大影响。铜常数(Col)基因在该植物的开花调节中起着关键作用。然而,Col基因家族在大麻中的特定作用仍然未知。在该研究中,在大麻基因组中鉴定了13个CSCOL基因。系统发育分析暗示CSCOL蛋白分为三个亚组,并且每个亚组包括保守的内含子/外显子结构和基序。染色体分布分析显示,在7染色体上不均匀地分布13个CSCSCOL基因,具有染色体10具有最多的CSCOL构件。 ConlineAleity分析表明,两种稻米和华美氏粒子的Cscol4和Cscol11中的两个同步基因对。在13个CSCOL基因中,CSCOL6和CSCOL12是一对串联重复基因,而CSCOL8和CSCOL11可能是由节段重复产生的。此外,组织特异性表达显示,在茎中的茎中,在茎中的1个CSCOL和2个CSCOL中,优先在茎中表达10个CSCOL基因。大多数CSCOL在不同轻微处理下表现出昼夜振荡模式。另外,序列分析表明,CSCol3和Cscol7在早期开花和晚期开花品种之间表现出氨基酸差异。本研究提供了对CSCOL基因的潜在功能的洞察力,并强调了在大麻开花时间的调节中的作用。我们的结果为进一步阐明了大麻中的Col基因的进一步阐明了基础。

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