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Dynamic transcriptome analysis provides molecular insights into underground floral differentiation in Adonis Amurensis Regel & Radde.
Xin, Hui; Zhang, Lifan; Wang, Hongtao; Zhu, Xingzun.
Affiliation
  • Xin H; School of Landscape Architecture, Changchun University, 6543 Weixing Road, Changchun, China.
  • Zhang L; College of Life Sciences, Tonghua Normal University, 950, Yucai Road, Tonghua, China.
  • Wang H; College of Life Sciences, Tonghua Normal University, 950, Yucai Road, Tonghua, China.
  • Zhu X; School of Landscape Architecture, Changchun University, 6543 Weixing Road, Changchun, China. zhuxz281@nenu.edu.cn.
BMC Genom Data ; 25(1): 33, 2024 Mar 21.
Article in En | MEDLINE | ID: mdl-38515034
ABSTRACT
Understanding flower developmental processes is a prerequisite for improving flowering 'plants' production. Adonis amurensis is a fascinating spring ephemeral plant that develops its flower organs underground. Nevertheless, knowledge of the molecular mechanisms driving this particular process is scarce. Herein, we examined transcriptional changes during underground flower differentiation in A. amurensis and unveiled key differently regulated genes and pathways. High-throughput RNA sequencing of meristems at different flower developmental stages, including flower primordium (FP), sepal stage (SE), perianth primordium (PE), stamen stage (ST), and pistil stage (PI), identified 303,234 unigenes that showed 44.79% similarity with sequences in Aquilegia coerulea. Correlations, principal component, and differentially expressed genes (DEGs) analyses revealed that few molecular changes occurred during the transition from PE to ST. Many DEGs exhibited stage-specific regulations. Transcription factor (TF) and phytohormone family genes are critical regulators of the floral differentiation process in A. amurensis. The most differentially regulated TFs were MADS, FAR1, MYBs, AP2/ERF, B3, C2H2, and LOBs. We filtered out 186 candidate genes for future functional studies, including 18 flowering/circadian-related, 32 phytohormone-related, and TF family genes. Our findings deepen our understanding of the underground flower differentiation process and offer critical resources to dissect its regulatory network in A. amurensis. These findings establish a foundational platform for researchers dedicated to exploring the unique phenotypic characteristics of this specific flowering modality and delving into the intricate molecular mechanisms underpinning its regulation and expression.
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Full text: 1 Database: MEDLINE Main subject: Plant Growth Regulators / Adonis Language: En Journal: BMC Genom Data Year: 2024 Type: Article Affiliation country: China

Full text: 1 Database: MEDLINE Main subject: Plant Growth Regulators / Adonis Language: En Journal: BMC Genom Data Year: 2024 Type: Article Affiliation country: China