Inhibition of DNA and RNA methylation disturbs root development of moso bamboo

Author:

Liufu Yuxiang1,Xi Feihu2,Wu Lin1,Zhang Zeyu1,Wang Huihui1,Wang Huiyuan1,Zhang Jun1,Wang Baijie1,Kou Wenjing1,Gao Jian3ORCID,Zhao Liangzhen2,Zhang Hangxiao3,Gu Lianfeng4ORCID

Affiliation:

1. College of Forestry, Basic Forestry and Proteomics Research Center, Fujian Agriculture and Forestry University , No. 15 Shangxiadian Road, Cangshan District, Fuzhou City, Fujian Province 350002 , China

2. College of Life Science, Fujian Agriculture and Forestry University , Fuzhou 350002 , China

3. Key Laboratory of Bamboo and Rattan Science and Technology, State Forestry Administration, International Center for Bamboo and Rattan , Beijing 100102 , China

4. Basic Forestry and Proteomics Research Center, College of Forestry, School of Future Technology, Fujian Agriculture and Forestry University , No. 15 Shangxiadian Road, Cangshan District, Fuzhou City, Fujian Province 350002 , China

Abstract

Abstract DNA methylation (5mC) and N6-methyladenosine (m6A) are two important epigenetics regulators, which have a profound impact on plant growth development. Phyllostachys edulis (P. edulis) is one of the fastest spreading plants due to its well-developed root system. However, the association between 5mC and m6A has seldom been reported in P. edulis. In particular, the connection between m6A and several post-transcriptional regulators remains uncharacterized in P. edulis. Here, our morphological and electron microscope observations showed the phenotype of increased lateral root under RNA methylation inhibitor (DZnepA) and DNA methylation inhibitor (5-azaC) treatment. RNA epitranscriptome based on Nanopore direct RNA sequencing revealed that DZnepA treatment exhibits significantly decreased m6A level in the 3′-untranslated region (3′-UTR), which was accompanied by increased gene expression, full-length ratio, higher proximal poly(A) site usage and shorter poly(A) tail length. DNA methylation levels of CG and CHG were reduced in both coding sequencing and transposable element upon 5-azaC treatment. Cell wall synthesis was impaired under methylation inhibition. In particular, differentially expressed genes showed a high percentage of overlap between DZnepA and 5-azaC treatment, which suggested a potential correlation between two methylations. This study provides preliminary information for a better understanding of the link between m6A and 5mC in root development of moso bamboo.

Funder

National Key Research and Development Program of China

Natural Science Foundation of Fujian Province

National Natural Science Foundation of China

Forestry Peak Discipline Construction Project of Fujian Agriculture and Forestry University

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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