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花芽的转录组分析揭示了激素和转录因子在分化过程中的作用。

Transcriptome Analysis of Floral Buds Reveals the Role of Hormones and Transcription Factors in the Differentiation Process.

作者信息

He Wenguang, Chen Yicun, Gao Ming, Zhao Yunxiao, Xu Zilong, Cao Pei, Zhang Qiyan, Jiao Yulian, Li Hongsheng, Wu Liwen, Wang Yangdong

机构信息

State Key Laboratory of Tree Genetics and Breeding, Chinese Academy of Forestry, Beijing, China.

Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, China.

出版信息

G3 (Bethesda). 2018 Mar 28;8(4):1103-1114. doi: 10.1534/g3.117.300481.

Abstract

BACKGROUND

(Lour.) Pers. is an important economic plant that is rich in valuable essential oil. The essential oil is often used as a raw material for perfumes, food additives, insecticides and bacteriostats. Most of the essential oil is contained in the fruit, and the quantity and quality of fruit are dependent on the flowers. To explore the molecular mechanism of floral bud differentiation, high-throughput RNA sequencing was used to detect differences in the gene expression of female and male floral buds at three differentiation stages.

RESULTS

This study obtained 160.88 Gbp of clean data that were assembled into 100,072 unigenes, and a total of 38,658 unigenes were annotated. A total of 27,521 simple sequence repeats (SSRs) were identified after scanning the assembled transcriptome, and the mono-nucleotide repeats were predominant, followed by di-nucleotide and tri-nucleotide repeats. A total of 12,559 differentially expressed genes (DEGs) were detected from the female (F) and male (M) floral bud comparisons. The gene ontology (GO) databases revealed that these DEGs were primarily contained in "metabolic processes", "cellular processes", and "single-organism processes". The Kyoto Encyclopedia of Genes and Genomes (KEGG) databases suggested that the DEGs belonged to "plant hormone signal transduction" and accounted for a relatively large portion in all of these comparisons. We analyzed the expression level of plant hormone-related genes and detected the contents of several relevant plant hormones in different stages. The results revealed that the dynamic changes in each hormone content were almost consistent with the expression levels of relevant genes. The transcription factors selected from the DEGs were analyzed. Most DEGs of MADS-box were upregulated and most DEGs of bZIP were downregulated. The expression trends of the DEGs were nearly identical in female and male floral buds, and qRT-PCR analysis revealed consistency with the transcriptome data.

CONCLUSIONS

We sequenced and assembled a high-quality floral bud transcriptome, and the data appeared to be well replicated (n = 3) over three developmental time points during flower development. Our study explored the changes in the contents of several plant hormones during floral bud differentiation using biochemical and molecular biology techniques, and the changes in expression levels of several flower development related transcription factors. These results revealed the role of these factors (, hormones and transcription factors) and may advance our understanding of their functions in flower development in .

摘要

背景

(卢尔.)波斯是一种重要的经济植物,富含珍贵的精油。该精油常被用作香水、食品添加剂、杀虫剂和抑菌剂的原料。大部分精油存在于果实中,而果实的数量和质量取决于花朵。为了探究花芽分化的分子机制,采用高通量RNA测序技术检测了雌花芽和雄花芽在三个分化阶段的基因表达差异。

结果

本研究获得了160.88 Gbp的 clean 数据,组装成100,072个单基因,共注释了38,658个单基因。扫描组装后的转录组后,共鉴定出27,521个简单序列重复序列(SSR),其中单核苷酸重复占主导,其次是二核苷酸和三核苷酸重复。从雌(F)花芽和雄(M)花芽比较中检测到总共12,559个差异表达基因(DEG)。基因本体(GO)数据库显示,这些DEG主要包含在“代谢过程”、“细胞过程”和“单生物体过程”中。京都基因与基因组百科全书(KEGG)数据库表明,DEG属于“植物激素信号转导”,在所有这些比较中占比较大。我们分析了植物激素相关基因的表达水平,并检测了不同阶段几种相关植物激素的含量。结果表明,每种激素含量的动态变化与相关基因的表达水平几乎一致。对从DEG中筛选出的转录因子进行了分析。MADS-box的大多数DEG上调,bZIP的大多数DEG下调。雌花芽和雄花芽中DEG的表达趋势几乎相同,qRT-PCR分析结果与转录组数据一致。

结论

我们对高质量的花芽转录组进行了测序和组装,数据在花发育的三个发育时间点上似乎得到了很好的重复(n = 3)。我们的研究利用生化和分子生物学技术探究了花芽分化过程中几种植物激素含量的变化,以及几种花发育相关转录因子表达水平的变化。这些结果揭示了这些因素(激素和转录因子)的作用,并可能增进我们对它们在花发育中的功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f93f/5873901/18e1e18bf630/1103f1.jpg

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