首页> 外文期刊>Functional & integrative genomics >SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 influences flowering time, lateral branching, oil quality, and seed yield in Brassica juncea cv. Varuna
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SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 influences flowering time, lateral branching, oil quality, and seed yield in Brassica juncea cv. Varuna

机译:Conscans1过表达的抑制剂影响Brassica Juncea CV中的开花时间,横向分支,油质和种子产量。 瓦鲁纳

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摘要

SOC1, a MADS-box type II transcription factor, integrates environmental and endogenous cues to promote flowering in angiosperms. Recent reports implicating SOC1 in roles beyond floral transition prompted functional characterization of SOC1 in polyploid rapeseed mustard genomes. Gene characterization in Brassicas necessitates analysis of composite homeolog function. While insertional mutagenesis is untenable in Brassicas owing to gene redundancy, gain-of-function approach entails serial characterization of individual homeologs. Herein, we demonstrate modulated floral promotive effects in natural variants of Brassica SOC1 and provide lateral branching as a probable outcome of polyploidy-induced gene diversification. Ectopic expression of two B genome specific SOC1 variants in Arabidopsis thaliana resulted in differential floral acceleration and manifestation of multiple vegetative rosettes. Characterization of composite homeolog function in B. juncea via introgression of Brassica SOC1 specific artificial miRNA, designed to target homeologs, also exhibited modifications in floral transition and lateral branching. Comprehensive analysis of field performance of B. juncea transgenics displayed altered fitness across 11 agronomic traits. Crucially, reduced SOC1 levels directly impacted two developmental traits, namely, flowering time and number of lateral branches which in turn influenced several dependent agronomic traits. While delayed flowering and crop maturity resulted in altered fatty acid composition with higher SFA and lower PUFA in transgenics relative to controls, reduction in overall count of lateral branches caused a concomitant decrease in silique count which ultimately impacted total seed yield in transgenics. Statistical analysis revealed number of secondary branches as the most critical trait influencing seed yield. Based on our findings, we propose enhancing levels Brassica SOC1, a key target, for achieving earliness in flowering, improved seed yield and o
机译:SOC1,一种疯狂盒II型转录因子,整合环境和内源性提示,以促进在Angiospers中开花。最近的报告称为SOC1在典型的作用中,促进了多倍菜油菜芥末基因组中SOC1的功能性表征。 Brassicas中的基因表征需要分析复合物质功能。虽然由于基因冗余,在Brassicas中,插入诱变在芸苔中,函数增益方法需要串行表征个体家庭。在此,我们证明了芸苔属SoC1的天然变体中的调节性促进作用,并提供横向分支作为多倍体诱导的基因多样化的可能结果。拟南芥中两种B基因组特异性SoC1变体的异位表达导致差异的花卉加速和多种植物玫瑰花的表现。 B juncea在B. juncea的表征通过铜豆SOC1特异性人工miRNA,设计为靶向物质,也表现出在花卉过渡和横向分支中的修饰。 B. juncea转基因的现场性能综合分析展示了11种农艺性状的适应性改变。至关重要的是,SOC1水平的减少直接影响了两个发育性状,即开花时间和横向分支的数量,又影响了几个受抚养的农艺性状。虽然延迟开花和作物成熟导致具有更高的SFA和转基因的脂肪酸组合物相对于对照组,但侧枝的总体计数降低导致伴随的硅基计数减少,最终影响转基因的总种子产量。统计分析显示,次要分支的数量是影响种子产量最关键的性状。根据我们的调查结果,我们提出了一种在开花,改善种子产量和o方面实现了一项关键目标的芸苔科索格1级芸苔科学

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