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Comparative Transcriptomic Analysis of Two Brassica napus Near-Isogenic Lines Reveals a Network of Genes That Influences Seed Oil Accumulation

机译:两个甘蓝型油菜近等基因系的比较转录组学分析揭示了影响种子油积累的基因网络

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摘要

Rapeseed (Brassica napus) is an important oil seed crop, providing more than 13% of the world’s supply of edible oils. An in-depth knowledge of the gene network involved in biosynthesis and accumulation of seed oil is critical for the improvement of B. napus. Using available genomic and transcriptomic resources, we identified 1,750 acyl-lipid metabolism (ALM) genes that are distributed over 19 chromosomes in the B. napus genome. B. rapa and B. oleracea, two diploid progenitors of B. napus, contributed almost equally to the ALM genes. Genome collinearity analysis demonstrated that the majority of the ALM genes have arisen due to genome duplication or segmental duplication events. In addition, we profiled the expression patterns of the ALM genes in four different developmental stages. Furthermore, we developed two B. napus near isogenic lines (NILs). The high oil NIL, YC13-559, accumulates significantly higher (∼10%) seed oil compared to the other, YC13-554. Comparative gene expression analysis revealed upregulation of lipid biosynthesis-related regulatory genes in YC13-559, including SHOOTMERISTEMLESS, LEAFY COTYLEDON 1 (LEC1), LEC2, FUSCA3, ABSCISIC ACID INSENSITIVE 3 (ABI3), ABI4, ABI5, and WRINKLED1, as well as structural genes, such as ACETYL-CoA CARBOXYLASE, ACYL-CoA DIACYLGLYCEROL ACYLTRANSFERASE, and LONG-CHAIN ACYL-CoA SYNTHETASES. We observed that several genes related to the phytohormones, gibberellins, jasmonate, and indole acetic acid, were differentially expressed in the NILs. Our findings provide a broad account of the numbers, distribution, and expression profiles of acyl-lipid metabolism genes, as well as gene networks that potentially control oil accumulation in B. napus seeds. The upregulation of key regulatory and structural genes related to lipid biosynthesis likely plays a major role for the increased seed oil in YC13-559.
机译:油菜籽(甘蓝型油菜)是重要的油料作物,提供了全球食用油供应的13%以上。对涉及种子油生物合成和积累的基因网络的深入了解对于改善油菜双歧杆菌至关重要。利用可用的基因组和转录组资源,我们鉴定了1,750个酰基脂质代谢(ALM)基因,这些基因分布在甘蓝型油菜基因组的19个染色体上。甘蓝型油菜的两个二倍体祖细胞B. rapa和B. oleracea对ALM基因的贡献几乎相等。基因组共线性分析表明,大多数ALM基因是由于基因组重复或节段重复事​​件产生的。此外,我们分析了ALM基因在四个不同发育阶段的表达模式。此外,我们在等基因系(NIL)附近开发了两个甘蓝型油菜。高油脂的NIL YC13-559与其他的YC13-554相比,积聚了高得多的种子油(约10%)。比较基因表达分析显示YC13-559中与脂质生物合成相关的调控基因上调,包括SHOOTMERISTEMLESS,LEAFY COTYLEDON 1(LEC1),LEC2,FUSCA3,ABSCISIC ACID INSENSITIVE 3(ABI3),ABI4,ABI5和WRINKLED1以及结构基因,例如乙酰辅酶A羧化酶,乙酰辅酶A双环甘油酰基转移酶和长链酰基辅酶A合成酶。我们观察到与植物激素,赤霉素,茉莉酸酯和吲哚乙酸有关的几个基因在NIL中差异表达。我们的发现为酰基脂代谢基因的数量,分布和表达概况以及潜在控制油菜种子中油积累的基因网络提供了广泛的解释。与脂质生物合成相关的关键调控和结构基因的上调可能对YC13-559中增加的种子油起主要作用。

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