4.7 Article

MdKNOX19, a class II knotted-like transcription factor of apple, plays roles in ABA signalling/sensitivity by targeting ABI5 during organ development

Journal

PLANT SCIENCE
Volume 302, Issue -, Pages -

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2020.110701

Keywords

Arabidopsis; ABA-Insensitive 5 (ABI5); Calli; Knotted1-like homeobox; Malus domestica; Micro-Tom; Seed germination

Funding

  1. Chinese Postdoctoral Science Foundation [2018M631207]
  2. Ecological Adaptability Selection of Apple Superior Stock and Scion Combinations in the Loess Plateau [A2990215082]
  3. Screening and Interaction Molecular Mechanism of Apple Stock and Scion Combinations [K3380217027]
  4. National Apple Industry Technology System of the Agriculture Ministry of China [CARS-27]

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In this study, an ABA-responsive KNOX gene, MdKNOX19, was identified in apple. Overexpression of MdKNOX19 increased ABA sensitivity in apple calli and upregulated the transcription of the Arabidopsis ABI5-like gene MdABI5. MdKNOX19 was found to directly bind to the promoter of MdABI5, indicating a positive regulatory role in ABI5 expression and potentially contributing to organ development.
The ABI5 transcription factor, which is a core component of the ABA signaling pathway, affects various plant processes, including seed development and germination and responses to environmental cues. The knotted1-like homeobox (KNOX) transcription factor has crucial functions related to plant development, including the regulation of various hormones. In this study, an ABA-responsive KNOX gene, MdKNOX19, was identified in apple (Malus domestica). The overexpression of MdKNOX19 increased the ABA sensitivity of apple calli, resulting in a dramatic up-regulation in the transcription of the Arabidopsis ABI5-like MdABI5 gene. Additionally, MdKNOX19 overexpression in Micro-Tom adversely affected fruit size and seed yield as well as enhanced ABA sensitivity and up-regulated SlABI5 transcription during seed germination and early seedling development. An examination of MdKNOX19-overexpressing Arabidopsis plants also revealed severe defects in seed development and upregulated expression of ABA-responsive genes. Furthermore, we further confirmed that MdKNOX19 binds directly to the MdABI5 promoter to activate expression. Our findings suggest MdKNOX19 is a positive regulator of ABI5 expression, and the conserved module MdKNOX19-MdABI5-ABA may contribute to organ development.

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