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Genome-wide characterization of Histone gene family and expression profiling during microspore development in radish (Raphanus sativus L.).

Authors :
Wang, Qijiao
Fan, Lianxue
Su, Xiaojun
Ying, Jiali
Xu, Liang
Li, Cui
Wang, Yan
Liu, Liwang
Source :
Gene. Mar2022, Vol. 815, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

• Totally 42 members of the Histone gene family were firstly identified in radish. • Seven RsCENH3 genes exhibited specifically high expression level in the radish bud. • RsCENH3 gene might be involved in promoting microspore development in radish. Histone, a predominant protein component of chromatin, participates in DNA packaging and transcriptional regulation. However, the available information of Histone gene family is limited in radish. In this study, a total of 42 Histone gene family members were identified from the radish genome. Sequence alignment and phylogenetic analyses classified the Histone family into three groups (H2A, H2B and H3). Motif analysis showed that the functions of some motifs shared by H3 subfamily genes were related to chromosome regulation and cell development activities, such as motif 5 containing Cks1 and PPR region. Analysis of intron/exon structure indicated that RsCENH3 (RsHistone 18) has the characteristics of variant Histone. Furthermore, several motifs, including the LTR, G-box and TC-elements, were found in the promoters of RsHistone genes, which involved in cell development or various abiotic stresses responses. Transcriptome analysis indicated that the RsHistone genes exhibited higher expression level in floral buds than in roots and leaves. Subcellular localization showed that the RsCENH3 was localized on the nucleus, and it was highly expressed in the floral bud of 3.0–4.0 mm in radish. These findings would provide valuable information for characterization and potential utilization of Histone genes, and facilitate the efficient induction of double haploid plants in radish. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03781119
Volume :
815
Database :
Academic Search Index
Journal :
Gene
Publication Type :
Academic Journal
Accession number :
155055374
Full Text :
https://doi.org/10.1016/j.gene.2021.146180