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1.
PeerJ ; 10: e14172, 2022.
Article in English | MEDLINE | ID: mdl-36345485

ABSTRACT

Background: Platycladus orientalis, as an important plant for ecological protection, is a pioneer tree species for afforestation in arid and barren mountainous areas. Lignin has the functions of water and soil conservation, strengthening plant mechanical strength and resisting adverse environmental effects and plays an important role in the ecological protection benefits of P. orientalis. Methods: In this study, annual dynamic observations of the lignin content in roots, stems and leaves of one-year-old seedlings of a P. orientalis half-sib family were carried out, and combined transcriptome and metabolome analyses were carried out during three key stages of P. orientalis stem development. Results: The lignin contents in roots, stems and leaves of P. orientalis showed extremely significant spatiotemporal differences. In the stems, lignin was mainly distributed in the cell walls of the pith, xylem, phloem, pericyte, and epidermis, with differences in different periods. A total of 226 metabolites were detected in the stem of P. orientalis, which were divided into seven categories, including 10 synthetic precursor compounds containing lignin. Among them, the content of coniferyl alcohol was the highest, accounting for 12.27% of the total content, and caffeyl alcohol was the lowest, accounting for 7.05% only. By annotating the KEGG functions, a large number of differentially expressed genes and differential metabolites were obtained for the comparison combinations, and seven key enzymes and 24 related genes involved in the process of lignin synthesis in P. orientalis were selected. Conclusions: Based on the results of the metabolic mechanism of lignin in P. orientalis by biochemical, anatomical and molecular biological analyzes, the key regulatory pathways of lignin in P. orientalis were identified, which will be of great significance for regulating the lignin content of P. orientalis and improving the adaptability and resistance of this plant.


Subject(s)
Lignin , Transcriptome , Transcriptome/genetics , Plant Leaves/genetics , Secondary Metabolism , Metabolome/genetics
2.
Genomics ; 113(4): 2317-2326, 2021 07.
Article in English | MEDLINE | ID: mdl-34048909

ABSTRACT

Chichi is a unique biological phenomenon observed in Ginkgo biloba L.. In this study, multi-omics analysis was used to compare basal chichi (C) with roots (R) and stems (S) to explore the regulatory mechanisms of basal chichi ontogenesis. The results showed that compared with roots and stems, the tZ, SA and ABA contents in basal chichi were the highest, and the ratio of IAA/tZ was the lowest. Nucleotides and their derivatives in basal chichi were upregulated, and phenylpropane metabolites were downregulated. Some differentially expressed genes (DEGs) strongly correlated to plant hormones were screened. We speculate that auxin and cytokinin are involved in the morphogenesis of basal chichi and that cytokinin plays a major role. The ontogenesis of basal chichi is closely related to environmental stress, and it may be a coping strategy of G. biloba in the face of environmental stress.


Subject(s)
Ginkgo biloba , Transcriptome , Ginkgo biloba/genetics , Ginkgo biloba/metabolism , Indoleacetic Acids/metabolism , Plant Growth Regulators/metabolism , Plant Roots/genetics
3.
Gene ; 669: 8-14, 2018 Aug 30.
Article in English | MEDLINE | ID: mdl-29792950

ABSTRACT

The Ginkgo biloba L. chichi is a unique organ. To explore the molecular mechanisms underlying the ontogenesis of G. biloba chichi, we used RNA-seq to analyse the transcriptome profile of rooted chichi at two developmental stages (ch1 and ch2) and nearby tissues (ck), and each sample had three biological replicates. A total of 57.74 Gb of clean bases were generated in nine cDNA libraries. These bases were de novo assembled into 68,277 unigenes with average length of 844 bp, and 51.47% of the unigenes had a match in at least one public database. The differentially expressed genes (DEGs) in ch1 vs. ck and ch2 vs. ck were 2748 and 8594, respectively. The DEGs involved in the auxin signal pathway, auxin polar transport, storage-related proteins, and the cell cycle pathway might play roles in the ontogenesis of chichi. The quantitative real-time PCR results were closely correlated with transcriptome data. The transcriptome resources generated in the current study provide gene expression profiles and differential expression profiles of G. biloba chichi and offer an essential resource to probe the molecular mechanisms underlying the ontogenesis of G. biloba chichi.


Subject(s)
Ginkgo biloba/growth & development , Ginkgo biloba/genetics , Transcriptome , Genes, Plant , Ginkgo biloba/anatomy & histology , Ginkgo biloba/metabolism , Indoleacetic Acids/metabolism , Molecular Sequence Annotation , Real-Time Polymerase Chain Reaction , Sequence Analysis, RNA
4.
J Cancer Res Ther ; 10 Suppl 1: 14-9, 2014 Aug.
Article in English | MEDLINE | ID: mdl-25207885

ABSTRACT

Recent studies have found that triterpene acid type compounds has many effects including antiinflammatory, regulating blood sugar level, antiviral and antitumor activity. More importantly, triterpene acid type compounds has become one of the most popular topics recently because its selective toxic effects on cancer cells and harmless to normal cells at the same time. This review summarized the antitumor activity and the mechanism of triterpene acid type compounds, providing guideline for further research and development of new antitumor natural products.


Subject(s)
Anti-Inflammatory Agents/administration & dosage , Neoplasms/drug therapy , Oleanolic Acid/administration & dosage , Triterpenes/administration & dosage , Anti-Inflammatory Agents/adverse effects , Apoptosis/drug effects , Cell Proliferation/drug effects , Humans , Neoplasms/genetics , Neoplasms/pathology , Oleanolic Acid/adverse effects , Triterpenes/adverse effects , Ursolic Acid
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