首页> 外文期刊>Molecular Biology Reports >Microarray analysis of gene expression in seeds of Brassica napus planted in Nanjing (altitude: 8.9 m), Xining (altitude: 2261.2 m) and Lhasa (altitude: 3658 m) with different oil content
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Microarray analysis of gene expression in seeds of Brassica napus planted in Nanjing (altitude: 8.9 m), Xining (altitude: 2261.2 m) and Lhasa (altitude: 3658 m) with different oil content

机译:含油量不同的南京油菜(海拔8.9 m),西宁(海拔2261.2 m)和拉萨(海拔3658 m)油菜种子基因表达的微阵列分析

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The regulation of seed oil synthesis in rapeseed is largely unknown. In this study, Arabidopsis microarray was used to analyze the gene differential expression of the immature seeds 30 days after flowering of a high oil Brassica napus, H105, whose oil content was 46.04 ± 1.42, 53.94 ± 1.35 and 53.09 ± 1.35% when planted in Nanjing (altitude: 8.9 m), Xining (altitude: 2261.2 m) and Lhasa (altitude: 3658 m), respectively. Transcript levels of 363 genes and 421 genes were altered twofold or more for H105 planted in Xining and Lhasa compared to that in Nanjing, respectively. Together, there were 53 common up-regulated and 42 common down-regulated expression transcripts shared by H105 planted in Xining and Lhasa compared to that in Nanjing. Some important genes, such as sucrose synthase, pyruvate kinase and 6-phosphogluconate dehydrogenase which related to sugar metabolism were identified common up-regulated in higher oil content H105. These results revealed the expressional disciplinarian of correlative genes, and provided important information of the molecular genetic mechanism of oil content difference of rapeseed. In addition, these differential expression genes could be suitable as targets for genetic improvement of seed oil content.
机译:菜籽油中种子油合成的调控在很大程度上是未知的。在这项研究中,拟南芥芯片用于分析高油甘蓝型油菜H105开花后30天未成熟种子的基因差异表达,该油菜种植在油中时油含量为46.04±1.42、53.94±1.35和53.09±1.35%。南京(海拔:8.9 m),西宁(海拔:2261.2 m)和拉萨(海拔:3658 m)。与南京相比,西宁和拉萨种植的H105的363个基因和421个基因的转录水平分别变化了两倍以上。与南京相比,在西宁和拉萨种植的H105共有53个共同的上调表达和42个共同的下调表达转录本。确定了与糖代谢相关的一些重要基因,如蔗糖合酶,丙酮酸激酶和6-磷酸葡萄糖酸脱氢酶,在较高油含量的H105中普遍上调。这些结果揭示了相关基因的表达规律,为油菜籽油含量差异的分子遗传机制提供了重要信息。另外,这些差异表达基因可能适合作为种子油含量遗传改良的靶标。

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