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转录组谱分析两种不同观赏甘蓝(芸薹属甘蓝变种无头甘蓝)品系,深入了解紫色和白色内叶色素形成的原因。

Transcriptome profiling of two contrasting ornamental cabbage (Brassica oleracea var. acephala) lines provides insights into purple and white inner leaf pigmentation.

机构信息

Department of Horticulture, Sunchon National University, Suncheon, 57922, Republic of Korea.

Department of Genetics and Plant Breeding, Sher-e-Bangla Agricultural University, Dhaka-1207, Bangladesh.

出版信息

BMC Genomics. 2018 Nov 6;19(1):797. doi: 10.1186/s12864-018-5199-3.

Abstract

BACKGROUND

Ornamental cabbage (Brassica oleracea var. acephala) is an attractive landscape plant that remains colorful at low temperatures during winter. Its key feature is its inner leaf coloration, which can include red, pink, lavender, blue, violet and white. Some ornamental cabbages exhibit variation in leaf color pattern linked to leaf developmental stage. However, little is known about the molecular mechanism underlying changes in leaf pigmentation pattern between developmental stages.

RESULTS

The transcriptomes of six ornamental cabbage leaf samples were obtained using Illumina sequencing technology. A total of 339.75 million high-quality clean reads were assembled into 46,744 transcripts and 46,744 unigenes. Furthermore, 12,771 genes differentially expressed across the different lines and stages were identified by pairwise comparison. We identified 74 and 13 unigenes as differentially expressed genes related to the anthocyanin biosynthetic pathway and chlorophyll metabolism, respectively. Among them, three unigenes (BoC4H2, BoUGT9, and BoGST21) and six unigenes (BoHEMA1, BoCRD1, BoPORC1, BoPORC2, BoCAO, and BoCLH1) were found as candidates for the genes encoding enzymes in the anthocyanin biosynthetic pathway and chlorophyll metabolism, respectively. In addition, two unigenes (BoRAX3 and BoTRB1) as MYB candidates, two unigenes (BoMUTE1, and BHLH168-like) as bHLH candidates were identified for purple pigmentation in ornamental cabbage.

CONCLUSION

Our results indicate that the purple inner leaves of purple ornamental cabbage result from a high level of anthocyanin biosynthesis, a high level of chlorophyll degradation and an extremely low level of chlorophyll biosynthesis, whereas the bicolor (purple/green) outer leaves are due to a moderate level of anthocyanin biosynthesis, a high level of chlorophyll degradation and a very low level of chlorophyll biosynthesis. In white ornamental cabbage, the white inner leaves are due to an extremely low level or absence of anthocyanin biosynthesis, a high level of chlorophyll degradation and a very low level of chlorophyll biosynthesis, whereas the bicolor (white/green) leaves are due to a high level of chlorophyll degradation and a low level of chlorophyll biosynthesis and absence of anthocyanin biosynthesis. These results provide insight into the molecular mechanisms underlying inner and bicolor leaf pigmentation in ornamental cabbage and offer a platform for assessing related ornamental species.

摘要

背景

羽衣甘蓝(Brassica oleracea var. acephala)是一种具有吸引力的景观植物,在冬季低温下仍保持色彩鲜艳。其主要特征是内部叶片颜色,包括红色、粉色、淡紫色、蓝色、紫色和白色。一些羽衣甘蓝品种的叶片颜色图案存在与叶片发育阶段相关的变化。然而,对于不同发育阶段叶片色素图案变化的分子机制知之甚少。

结果

使用 Illumina 测序技术获得了六个羽衣甘蓝叶片样本的转录组。总共组装出 46744 个转录本和 46744 个基因,得到了 339750000 条高质量的清洁读数。此外,通过两两比较鉴定了 12771 个在不同品系和阶段差异表达的基因。我们鉴定了 74 个和 13 个与花色素苷生物合成途径和叶绿素代谢相关的差异表达基因的基因。其中,三个基因(BoC4H2、BoUGT9 和 BoGST21)和六个基因(BoHEMA1、BoCRD1、BoPORC1、BoPORC2、BoCAO 和 BoCLH1)被发现为花色素苷生物合成途径和叶绿素代谢相关的酶编码基因的候选基因。此外,还鉴定了两个基因(BoRAX3 和 BoTRB1)作为 MYB 候选基因,两个基因(BoMUTE1 和 BHLH168-like)作为 bHLH 候选基因,用于解释羽衣甘蓝紫色色素的形成。

结论

我们的研究结果表明,紫色羽衣甘蓝的紫色内部叶片是由于高水平的花色素苷生物合成、高水平的叶绿素降解和极低水平的叶绿素生物合成所致,而双色(紫色/绿色)外部叶片则是由于中水平的花色素苷生物合成、高水平的叶绿素降解和极低水平的叶绿素生物合成所致。在白色羽衣甘蓝中,白色内部叶片是由于极低水平或缺乏花色素苷生物合成、高水平的叶绿素降解和极低水平的叶绿素生物合成所致,而双色(白色/绿色)叶片是由于高水平的叶绿素降解和低水平的叶绿素生物合成以及缺乏花色素苷生物合成所致。这些结果为羽衣甘蓝内外叶片色素形成的分子机制提供了新的见解,并为评估相关观赏物种提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8c5/6219265/707bed0f934d/12864_2018_5199_Fig1_HTML.jpg

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