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鉴定大白菜(白菜亚种)中不受生物质影响的淡绿色突变基因。

Identification of a biomass unaffected pale green mutant gene in Chinese cabbage (Brassica rapa L. ssp. pekinensis).

机构信息

College of Horticulture, Shenyang Agricultural University, Shenyang, 110866, China.

出版信息

Sci Rep. 2022 May 11;12(1):7731. doi: 10.1038/s41598-022-11825-1.

Abstract

Chlorophyll (Chl) is an essential component of the photosynthetic apparatus and pigments in plant greening. Leaf color is an important agronomic and commercial trait of Chinese cabbage. In this study, we identified a pale green mutant pgm created by ethyl methane sulfonate (EMS) mutagenesis in Chinese cabbage. Compared with wild-type (FT), pgm had a lower Chl content with a higher Chl a/b ratio, imperfect chloroplast structure, and lower non-photochemical quenching. However, its net photosynthetic rate and biomass showed no significant differences. Genetic analysis revealed that the pale green phenotype of pgm was controlled by a recessive nuclear gene, designated as Brpgm. We applied BSR-Seq, linkage analysis, and whole-genome resequencing to map Brpgm and predicted that the target gene was BraA10g007770.3C (BrCAO), which encodes chlorophyllide a oxygenase (CAO). Brcao sequencing results showed that the last nucleotide of its first intron changed from G to A, causing the deletion of the first nucleotide in its second CDS and termination of the protein translation. The expression of BrCAO in pgm was upregulated, and the enzyme activity of CAO in pgm was significantly decreased. These results provide an approach to explore the function of BrCAO and create a pale green variation in Chinese cabbage.

摘要

叶绿素(Chl)是光合作用器官和植物变绿过程中色素的重要组成部分。叶片颜色是大白菜重要的农艺和商业性状。本研究通过甲基磺酸乙酯(EMS)诱变,在大白菜中鉴定出一个叶绿素含量较低、叶绿素 a/b 比值较高、叶绿体结构不完整、非光化学猝灭较低的淡绿叶突变体 pgm。然而,其净光合速率和生物量没有显著差异。遗传分析表明,pgm 的淡绿叶表型受一个隐性核基因控制,命名为 Brpgm。我们应用 BSR-Seq、连锁分析和全基因组重测序对 Brpgm 进行定位,并预测目标基因为 BraA10g007770.3C(BrCAO),该基因为叶绿素脱镁加氧酶(CAO)编码基因。Brcao 测序结果表明,其第一个内含子的最后一个核苷酸从 G 变为 A,导致其第二个 CDS 的第一个核苷酸缺失,并终止蛋白翻译。pgm 中 BrCAO 的表达上调,pgm 中 CAO 的酶活性显著降低。这些结果为探索 BrCAO 的功能和创造大白菜淡绿叶变异提供了一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41c7/9095832/1c9deb9083da/41598_2022_11825_Fig1_HTML.jpg

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