Small Auxin Up RNA (SAUR) gene family identification and functional genes exploration during the floral organ and fruit developmental stages in pineapple (Ananas comosus L.) and its response to salinity and drought stresses

Int J Biol Macromol. 2023 May 15:237:124061. doi: 10.1016/j.ijbiomac.2023.124061. Epub 2023 Mar 16.

Abstract

In plants, sexual reproduction relies on the proper development of floral organs that facilitate the successful development of fruits and seeds. Auxin responsive small auxin-up RNA (SAUR) genes play essential roles in floral organ formation and fruit development. However, little is known about the role of SAUR genes in pineapple floral organ formation and fruit development as well as stress responses. In this study, based on genome information and transcriptome datasets, 52 AcoSAUR genes were identified and grouped into 12 groups. The gene structure analysis revealed that most AcoSAUR genes did not have introns, although auxin-acting elements were abundant in the promoter region of AcoSAUR members. The expression analysis across the multiple flower and fruit development stages revealed differential expression of AcoSAUR genes, indicating a tissue and stage-specific function of AcoSAURs. Correlation analysis and pairwise comparisons between gene expression and tissue specificity identified stamen-, petal-, ovule-, and fruit-specific AcoSAURs involved in pineapple floral organs (AcoSAUR4/5/15/17/19) and fruit development (AcoSAUR6/11/36/50). RT-qPCR analysis revealed that AcoSAUR12/24/50 played positive roles in response to the salinity and drought treatment. This work provides an abundant genomic resource for functional analysis of AcoSAUR genes during the pineapple floral organs and fruit development stages. It also highlights the role of auxin signaling involved in pineapple reproductive organ growth.

Keywords: Ananas comosus L.; Auxin; Expression profiles; Phylogenetic analysis; SAUR.

MeSH terms

  • Ananas* / metabolism
  • Droughts
  • Fruit
  • Gene Expression Regulation, Plant
  • Indoleacetic Acids* / metabolism
  • Phylogeny
  • Plant Proteins / chemistry
  • RNA / metabolism
  • Salinity

Substances

  • Indoleacetic Acids
  • RNA
  • Plant Proteins