Transcriptomes and DNA methylomes in apomictic cells delineate nucellar embryogenesis initiation in citrus

Author:

Jia Hui-Hui1,Xu Yuan-Tao1,Yin Zhao-Ping1,Wu Xiao-Meng1ORCID,Qing Mei1,Fan Yan-Jie1,Song Xin1,Xie Kai-Dong1,Xie Zong-Zhou1,Xu Qiang1ORCID,Deng Xiu-Xin1,Guo Wen-Wu1ORCID

Affiliation:

1. Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China

Abstract

Abstract Citrus nucellar poly-embryony (NPE) is a mode of sporophytic apomixis that asexual embryos formed in the seed through adventitious embryogenesis from the somatic nucellar cells. NPE allows clonal propagation of rootstocks, but it impedes citrus cross breeding. To understand the cellular processes involved in NPE initiation, we profiled the transcriptomes and DNA methylomes in laser microdissection captured citrus apomictic cells. In apomictic cells, ribosome biogenesis and protein degradation were activated, whereas auxin polar transport was repressed. Reactive oxygen species (ROS) accumulated in the poly-embryonic ovules, and response to oxidative stress was provoked. The global DNA methylation level, especially that of CHH context, was decreased, whereas the methylation level of the NPE-controlling key gene CitRWP was increased. A C2H2 domain-containing transcription factor gene and CitRWP co-expressed specifically in apomictic cells may coordinate to initiate NPE. The activated embryogenic development and callose deposition processes indicated embryogenic fate of nucellar embryo initial (NEI) cells. In our working model for citrus NPE initiation, DNA hyper-methylation may activate transcription of CitRWP, which increases C2H2 expression and ROS accumulation, triggers epigenetic regulation and regulates cell fate transition and NEI cell identity in the apomictic cells.

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,General Medicine

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