Identification of the specific long-noncoding RNAs involved in night-break mediated flowering retardation in Chenopodium quinoa

BMC GENOMICS(2021)

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摘要
Background Night-break (NB) has been proven to repress flowering of short-day plants (SDPs). Long-noncoding RNAs (lncRNAs) play key roles in plant flowering. However, investigation of the relationship between lncRNAs and NB responses is still limited, especially in Chenopodium quinoa , an important short-day coarse cereal. Results In this study, we performed strand-specific RNA-seq of leaf samples collected from quinoa seedlings treated by SD and NB. A total of 4914 high-confidence lncRNAs were identified, out of which 91 lncRNAs showed specific responses to SD and NB. Based on the expression profiles, we identified 17 positive- and 7 negative-flowering lncRNAs. Co-expression network analysis indicated that 1653 mRNAs were the common targets of both types of flowering lncRNAs. By mapping these targets to the known flowering pathways in model plants, we found some pivotal flowering homologs, including 2 florigen encoding genes ( FT ( FLOWERING LOCUS T ) and TSF ( TWIN SISTER of FT ) homologs), 3 circadian clock related genes ( EARLY FLOWERING 3 ( ELF3 ), LATE ELONGATED HYPOCOTYL ( LHY ) and ELONGATED HYPOCOTYL 5 ( HY5 ) homologs), 2 photoreceptor genes ( PHYTOCHROME A ( PHYA ) and CRYPTOCHROME1 ( CRY1 ) homologs), 1 B-BOX type CONSTANS ( CO ) homolog and 1 RELATED TO ABI3/VP1 ( RAV1 ) homolog, were specifically affected by NB and competed by the positive and negative-flowering lncRNAs. We speculated that these potential flowering lncRNAs may mediate quinoa NB responses by modifying the expression of the floral homologous genes. Conclusions Together, the findings in this study will deepen our understanding of the roles of lncRNAs in NB responses, and provide valuable information for functional characterization in future.
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关键词
LncRNA, Night break, Flowering, Chenopodium quinoa, Co-expression network
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