沙棘刺和芽的组织解剖与转录组分析
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陕西省重点研发计划(2019TSLNY0303);


Anatomy and Transcriptome Analysis of Buds and Thorns of Sea Buckthorn (Hippophae rhamnoides L.)
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    摘要:

    该研究通过组织切片分析比较了沙棘刺与芽的组织染色差异,通过转录组测序分析比较了刺和芽的基因表达谱差异,通过qRTPCR验证候选基因的表达水平,为进一步通过基因工程手段调控沙棘刺的发育提供候选基因。结果表明:(1)沙棘芽横切面的组织边界层次分明,而沙棘刺横切面的组织边界模糊,且刺尖中心的红色区域较大,木质素自发荧光结果表明刺中木质化程度显著增强。(2)转录组分析组装得到81 560个单基因(unigenes),其中包含9 385个差异表达基因(DEGs)。(3)GO和KEGG富集分析表明,富集程度最高的基因主要与细胞壁、表皮、气孔发育有关,尤其是与木质素合成途径相关;芽刺相关DEGs分析结果表明,木质素合成相关DEGs共20个,角质、木栓质和蜡质生物合成相关DEGs共29个,植物表皮发育和气孔复合体发育的相关DEGs相同共14个;结合文献分析推测,部分热头蛋白基因参与控制沙棘刺顶端分生组织消失,木质素合成相关基因则与刺硬化过程密切相关。(4)qRTPCR分析验证显示,与芽相比,挑选的6个木质素合成相关DEGs中有3个分别上调了9.5倍、41.1倍和13.7倍,3个下调至5%、14%和24%;挑选的4个角质、木栓质和蜡质生物合成相关DEGs中有2个分别上调3.6倍和22.1倍,另外2个下调至3%和6%;挑选的4个表皮和气孔发育相关DEGs均下调至6%、13%、3%和4%;关键基因的相对表达水平与转录组测定的TPM值可相互印证,表明验证结果与转录组分析结果一致。研究发现,沙棘刺和芽具有明显的形态和组织差异,二者间的DEGs主要与木质素合成以及细胞壁、表皮和气孔发育有关。

    Abstract:

    In this study, the tissue staining differences between thorn and bud of sea buckthorn were compared by tissue section analysis, the gene expression profile differences between thorn and bud were compared by transcriptome sequence analysis, and the expression level of candidate genes was verified through qRTPCR, for providing candidate genes for further regulating the development of sea buckthorn by genetic engineering. The results showed that: (1) the tissue boundary of the transverse section of the sea buckthorn bud was obvious and hierarchical, while the tissue boundary of the transverse section of the sea buckthorn was blurred, the type of staining area was monotonous, the red area in the center of the thorn tip was larger and the spontaneous fluorescence of lignin indicated a significant increase in the lignification degree of the thorn. (2) 81 560 unigenes were assembled by transcriptome analysis, including 9 385 differentially expressed genes (DEGs). (3) GO and KEGG enrichment analysis showed that the most enriched genes were mainly related to the development of cell wall, epidermis and stomata, especially the lignin synthesis pathway. The analysis of bud and thorn related DEGs showed that there were 20 DEGs related to lignin synthesis, a total of 29 DEGs related to cutin, suberine and wax biosynthesis, a total of 14 DEGs related to plant epidermal development and stomatal complex development. It was speculated that some HOTHEAD protein genes were involved in controlling the disappearance of apical meristem of sea buckthorn, and lignin synthesis related genes were closely related to the process of thorn hardening based on literature analysis. (4) qRTPCR analysis showed that three of the six selected lignin synthesis related DEGs were upregulated by 9.5, 41.1 and 13.7 times, while the other three were down regulated by 5%, 14% and 24%, respectively; Among the four selected cutin, suberine and wax biosynthesis related DEGs, two were upregulated by 3.6 and 22.1 times, and the other two were down regulated by 3% and 6%, respectively; The four selected epidermal and stomatal development related DEGs were down regulated to 6%, 13%, 3% and 4%; The relative expression level of key genes can be mutually confirmed with the TPM value measured by transcriptome, indicating that the verification results were consistent with the transcriptome analysis results. Overall, this study provided insight that there were significant morphological and histological differences between thorn and bud of sea buckthorn, and the DEGs between them were mainly related to lignin synthesis and the development of cell wall, epidermis and stomata.

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王建武,杨 涛,严加坤,等.沙棘刺和芽的组织解剖与转录组分析[J].西北植物学报,2022,42(7):1133-1143

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  • 在线发布日期: 2022-08-22
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