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Multiple and integrated functions of floral C-class MADS-box genes in flower and fruit development of Physalis floridana. | LitMetric

Multiple and integrated functions of floral C-class MADS-box genes in flower and fruit development of Physalis floridana.

Plant Mol Biol

State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

Published: September 2021

AI Article Synopsis

  • The study investigates the roles of C-class MADS-box genes, PFAG1 and PFAG2, in the development of flowers and fruits in the Physalis plant, particularly focusing on its unique Chinese lantern structure.
  • PFAG1 and PFAG2 share a significant sequence identity and similar expression patterns but differ in their roles during floral and berry development, with PFAG1 impacting pollen maturation and PFAG2 affecting female fertility.
  • The findings show that while PFAG1 can repress PFAG2, both genes together are crucial for determining the identity and functionality of reproductive organs, hinting at their integrated roles in fruit size regulation and development of the Chinese lantern feature.

Article Abstract

This work reveals potentially multiple and integrated roles in flower and fruit development of floral C-class MADS-box genes in Physalis. The Physalis fruit features a morphological novelty, the Chinese lantern. Floral C-class MADS-domain AGAMOUS-like (AG-like) proteins can interact with the identified regulators of this novel structure. However, the developmental role of the floral C-class genes is unknown in Physalis. Here, we characterized two AG-like genes from Physalis floridana, designated PFAG1 and PFAG2. The two paralogous genes shared around 61.0% of sequence identity and had similar expression domains, with different expression levels in the floral and berry development. However, the genes had distinct expression patterns in leaf and calyx development. Protein-protein interaction analyses revealed that PFAG1 and PFAG2 could commonly or specifically dimerize with certain floral MADS-domain proteins as well as non-MADS-domain proteins involved in various floral developmental processes. Gene downregulation analyses demonstrated that PFAG1 may repress PFAG2, but PFAG2 did not affect PFAG1. Downregulating PFAG1 led to incomplete floral homeotic variation in the stamens and carpels, and alteration of petal coloration pattern, while downregulating PFAG2 did not result in any floral homeotic variation. PFAG1 affected pollen maturation, while PFAG2 affected female fertility. However, simultaneously downregulating PFAG1 and PFAG2 caused loss of the complete C-function, indicating that the two PFAG genes interact to determine the identity and functionality of androecia and gynoecia organs. Their potential roles in regulating fruit size and the Chinese lantern are also discussed. Our results reveal functional divergence of floral C-class MADS-box genes in Physalis, demonstrating that they may play multiple and integrated roles in flower and fruit development.

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Source
http://dx.doi.org/10.1007/s11103-021-01182-4DOI Listing

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