Tian Youwen, Liu Xinlei, Chen Xuyang, Wang Bowei, Dong Mei, Chen Li, Yang Zhengsong, Li Yadong, Sun Haiyue
College of Horticulture, Jilin Agricultural University, Changchun 130118, China.
College of Life Sciences, Jilin Agricultural University, Changchun 130118, China.
Int J Mol Sci. 2024 Apr 9;25(8):4137. doi: 10.3390/ijms25084137.
As a highly economic berry fruit crop, blueberry is enjoyed by most people and has various potential health benefits, many of which are attributed to the relatively high concentrations of flavonoids. To obtain more accurate and comprehensive transcripts, the full-length transcriptome of half-highbush blueberry ( cultivar Northland) obtained using single molecule real-time and next-generation sequencing technologies was reported for the first time. Overall, 147,569 consensus transcripts (average length, 2738 bp; N50, 3176 bp) were obtained. After quality control steps, 63,425 high-quality isoforms were obtained and 5030 novel genes, 3002 long non-coding RNAs, 3946 transcription factor genes (TFs), 30,540 alternative splicing events, and 2285 fusion gene pairs were identified. To better explore the molecular mechanism of flavonoid biosynthesis in mature blueberry fruit, an integrative analysis of the metabolome and transcriptome was performed on the exocarp, sarcocarp, and seed. A relatively complete biosynthesis pathway map of phenylpropanoids, flavonoids, and proanthocyanins in blueberry was constructed. The results of the joint analysis showed that the 228 functional genes and 42 TFs regulated 78 differentially expressed metabolites within the biosynthesis pathway of phenylpropanoids/flavonoids. O2PLS analysis results showed that the key metabolites differentially accumulated in blueberry fruit tissues were albireodelphin, delphinidin 3,5-diglucoside, delphinidin 3-O-rutinoside, and delphinidin 3-O-sophoroside, and 10 structural genes (4 , 3 , 1 , 1 , and 1 ), 4 transporter genes (1 and 3 ), and 10 TFs (1 , 2 , 4 and 3 ) exhibited strong correlations with 4 delphinidin glycosides. These findings provide insights into the molecular mechanisms of flavonoid biosynthesis and accumulation in blueberry fruit.
蓝莓作为一种经济价值很高的浆果类水果作物,深受大多数人喜爱,并且具有多种潜在的健康益处,其中许多益处归因于其相对较高的类黄酮含量。为了获得更准确、更全面的转录本,首次报道了利用单分子实时测序和新一代测序技术获得的半高丛蓝莓(品种为北国)的全长转录组。总体而言,共获得147,569个一致性转录本(平均长度为2738 bp;N50为3176 bp)。经过质量控制步骤后,获得了63,425个高质量的异构体,并鉴定出5030个新基因、3002个长链非编码RNA、3946个转录因子基因(TFs)、30,540个可变剪接事件以及2285个融合基因对。为了更好地探究成熟蓝莓果实中类黄酮生物合成的分子机制,对其外果皮、中果皮和种子进行了代谢组和转录组的综合分析。构建了蓝莓中较为完整的苯丙烷类、类黄酮和原花青素生物合成途径图。联合分析结果表明,228个功能基因和42个TFs调控了苯丙烷类/类黄酮生物合成途径中的78种差异表达代谢物。正交偏最小二乘法(O2PLS)分析结果表明,蓝莓果实组织中差异积累的关键代谢物为白花翠雀素、飞燕草素3,5 - 二葡萄糖苷、飞燕草素3 - O - 芸香糖苷和飞燕草素3 - O - 槐糖苷,并且10个结构基因(4个、3个、1个、1个和1个)、4个转运蛋白基因(1个和3个)以及10个TFs(1个、2个、4个和3个)与4种飞燕草素糖苷表现出强相关性。这些发现为蓝莓果实中类黄酮生物合成和积累的分子机制提供了见解。