首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Promoter variations in a homeobox gene, BnA10.LMI1, determine lobed leaves in rapeseed (Brassica napus L.)
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Promoter variations in a homeobox gene, BnA10.LMI1, determine lobed leaves in rapeseed (Brassica napus L.)

机译:Homeobox Gene,BNA10.LMI1的启动子变化确定油菜籽(Brassica Napus L.)中的叶片

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Key message BnA10.LMI1 positively regulates the development of leaf lobes in Brassica napus, and cis-regulatory divergences cause the different allele effects.AbstractLeaf shape is an important agronomic trait, and large variations in this trait exist within the Brassica germplasm. The lobed leaf is a unique morphological characteristic for Brassica improvement. Nevertheless, the molecular basis of leaf lobing in Brassica is poorly understood. Here, we show that an incompletely dominant locus, BnLLA10, is responsible for the lobed-leaf shape in rapeseed. A LATE MERISTEM IDENTITY1 (LMI1)-like gene (BnA10.LMI1) encoding an HD-Zip I transcription factor is the causal gene underlying the BnLLA10 locus. Sequence analysis of parental alleles revealed no sequence variations in the coding sequences, whereas abundant variations were identified in the regulatory region. Consistent with this finding, the expression levels of BnLMI1 were substantially elevated in the lobed-leaf parent compared with its near-isogenic line. The knockout mutations of BnA10.LMI1 gene were induced using the CRISPR/Cas9 system in both HY (the lobed-leaf parent) and J9707 (serrated leaf) genetic backgrounds. BnA10.LMI1 null mutations in the HY background were sufficient to produce unlobed leaves, whereas null mutations in the J9707 background showed no obvious changes in leaf shape compared with the control. Collectively, our results indicate that BnA10.LMI1 positively regulates the development of leaf lobes in B. napus, with cis-regulatory divergences causing the different allelic effects, providing new insights into the molecular mechanism of leaf lobe formation in Brassica crops.
机译:关键消息BNA10.LMI1积极调节甘蓝型插口中叶片的开发,顺式调控性分歧引起不同的等位基因效应.Abstractleaf形状是一种重要的农艺性状,并且在芸苔属种质中存在这种特征的大变化。裂片是甘蓝的改善的独特形态特征。然而,芸苔的叶片叶片的分子基础知识差不多。在这里,我们表明,一个不完全的主导地位,BNLLA10负责油菜籽中的裂片形状。编码HD-ZIP I转录因子的后期统一Identity1(LMI1) - 尺寸(BNA10.LMI1)是BNLLA10基因座的因果基因。父母等位基因的序列分析显示了编码序列中的序列变化,而在调节区中鉴定了丰富的变化。与该发现一致,与其近代线相比,裂片叶母细胞的BNLMI1的表达水平基本上升高。使用CRISPR / CAS9系统在HY(裂片叶父母)和J9707(锯齿状叶)遗传背景中使用CRISPR / CAS9系统诱导BNA10.LMI1基因的敲除突变。 BNA10.LMI1在HY背景中的突变足以产生未偏开的叶片,而J9707背景中的空突变显示与控制相比的叶子形状没有明显的变化。统称,我们的结果表明BNA10.LMI1积极调节B. Napus中叶片裂片的发育,具有CIS-Condocatory分歧,导致不同的等位基因效应,为甘蓝型作物中的叶片形成的分子机制提供了新的见解。

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