4.7 Article

Transcriptome and metabolite analyses provide insights into zigzag-shaped stem formation in tea plants (Camellia sinensis)

期刊

BMC PLANT BIOLOGY
卷 20, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12870-020-2311-z

关键词

Auxin transport; Gravitropism response; Stem development; Tea plant; Zigzag-shaped stem

资金

  1. National Natural Science Foundation of China [31800587, 31600555]
  2. Natural Science Foundation of Fujian Province [2017 J01616]
  3. Earmarked Fund for China Agriculture Research System [CARS-19]
  4. Construction of Plateau Discipline of Fujian Province [102/71201801101]
  5. Fujian Province 2011 Collaborative Innovation Center, Chinese Oolong Tea Industry Innovation Center (Cultivation) special project [J2015-75]

向作者/读者索取更多资源

Background Shoot orientation is important for plant architecture formation, and zigzag-shaped shoots are a special trait found in many plants. Zigzag-shaped shoots have been selected and thoroughly studied in Arabidopsis; however, the regulatory mechanism underlying zigzag-shaped shoot development in other plants, especially woody plants, is largely unknown. Results In this study, tea plants with zigzag-shaped shoots, namely, Qiqu (QQ) and Lianyuanqiqu (LYQQ), were investigated and compared with the erect-shoot tea plant Meizhan (MZ) in an attempt to reveal the regulation of zigzag-shaped shoot formation. Tissue section observation showed that the cell arrangement and shape of zigzag-shaped stems were aberrant compared with those of normal shoots. Moreover, a total of 2175 differentially expressed genes (DEGs) were identified from the zigzag-shaped shoots of the tea plants QQ and LYQQ compared to the shoots of MZ using transcriptome sequencing, and the DEGs involved in the Plant-pathogen interaction, Phenylpropanoid biosynthesis, Flavonoid biosynthesis and Linoleic acid metabolism pathways were significantly enriched. Additionally, the DEGs associated with cell expansion, vesicular trafficking, phytohormones, and transcription factors were identified and analysed. Metabolomic analysis showed that 13 metabolites overlapped and were significantly changed in the shoots of QQ and LYQQ compared to MZ. Conclusions Our results suggest that zigzag-shaped shoot formation might be associated with the gravitropism response and polar auxin transport in tea plants. This study provides a valuable foundation for further understanding the regulation of plant architecture formation and for the cultivation and application of horticultural plants in the future.

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