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不同LED光照下体外培养的远志芽细胞形态及转录组比较分析

Cellular Morphology and Transcriptome Comparative Analysis of Bunge Sprouts Cultured In Vitro under Different LED Light.

作者信息

Seo Ji Won, Lee Jae Geun, Yoo Ji Hye, Lim Jung Dae, Choi Ik Young, Kim Myong Jo, Yu Chang Yeon, Seong Eun Soo

机构信息

Interdisciplinary Program in Smart Science, Kangwon National University, Chuncheon 24341, Republic of Korea.

Research Institute of Biotechnology, Hwajin Cosmetics, Hongcheon 25142, Republic of Korea.

出版信息

Plants (Basel). 2023 May 8;12(9):1914. doi: 10.3390/plants12091914.

Abstract

, the major components of which are saponins, flavonoids, and polysaccharides, has been established to have excellent pharmacological activity. After ginseng, it is the second most used medicinal plant. To examine the utility of as a sprout crop for plant factory cultivation, we sought to establish a functional substance control model by comparing the transcriptomes of sprouts grown in sterile, in vitro culture using LED light sources. Having sown the seeds of , these were exposed to white LED light (continuous spectrum), red LED light (632 nm, 1.58 μmol/m/s), or blue LED light (465 nm, 1.44 μmol/m/s) and grown for 6 weeks; after which, the samples were collected for transcriptome analysis. Scanning electron microscopy analysis of cell morphology in plants exposed to the three light sources revealed that leaf cell size was largest in those plants exposed to red light, where the thickest stem was observed in plants exposed to white light. The total number of genes in spouts determined via de novo assembly was 45,667. Analysis of differentially expressed genes revealed that for the comparisons of blue LED vs. red LED, blue LED vs. white LED, and red LED vs. white LED, the numbers of upregulated genes were 132, 148, and 144, respectively. Binding, DNA integration, transport, phosphorylation, DNA biosynthetic process, membrane, and plant-type secondary cell wall biogenesis were the most enriched in the comparative analysis of blue LED vs. red LED, whereas Binding, RNA-templated DNA biosynthetic process, DNA metabolic process, and DNA integration were the most enriched in the comparative analysis of blue vs. white LED, and DNA integration and resolution of meiotic recombination intermediates were the most enrichment in the comparison between red LED vs. white LED. The GO term associated with flavonoid biosynthesis, implying the functionality of , was the flavonoid biosynthetic process, which was enriched in the white LED vs. red LED comparison. The findings of this study thus indicate that different LED light sources can differentially influence the transcriptome expression pattern of sprouts, which can provide a basis for establishing a flavonoid biosynthesis regulation model and thus, the cultivation of high-functional sprouts.

摘要

其主要成分是皂苷、黄酮类化合物和多糖,已被证实具有优异的药理活性。它是仅次于人参的第二大常用药用植物。为了研究其作为植物工厂栽培的芽苗作物的效用,我们试图通过比较使用LED光源在无菌体外培养条件下生长的芽苗的转录组来建立功能物质控制模型。播种种子后,将其置于白色LED光(连续光谱)、红色LED光(632纳米,1.58微摩尔/米/秒)或蓝色LED光(465纳米,1.44微摩尔/米/秒)下生长6周;之后,收集样本进行转录组分析。对暴露于三种光源下的植物细胞形态进行扫描电子显微镜分析发现,暴露于红光下的植物叶片细胞尺寸最大,暴露于白光下的植物茎最粗。通过从头组装确定的该植物芽苗中的基因总数为45667个。差异表达基因分析表明,在蓝色LED与红色LED、蓝色LED与白色LED、红色LED与白色LED的比较中,上调基因的数量分别为132、148和144个。在蓝色LED与红色LED的比较分析中,结合、DNA整合、转运、磷酸化、DNA生物合成过程、膜和植物型次生细胞壁生物合成最为富集,而在蓝色与白色LED的比较分析中,结合、RNA模板DNA生物合成过程、DNA代谢过程和DNA整合最为富集,在红色LED与白色LED的比较中,DNA整合和减数分裂重组中间体的分辨率最为富集。与黄酮类生物合成相关的GO术语,暗示了该植物的功能,是黄酮类生物合成过程,它在白色LED与红色LED的比较中富集。因此,本研究结果表明,不同的LED光源可以不同地影响该植物芽苗的转录组表达模式,这可为建立黄酮类生物合成调控模型以及因此培育高功能性的该植物芽苗提供依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f373/10180632/a903505d4126/plants-12-01914-g001.jpg

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