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Understanding The Carotenoid Biosynthesis Pathway in Orange Actinidia Species

Abstract

dc:description.abstract

Carotenoids belong to the tetraterpene family and are involved in diverse biological processes in plants. Along with a primary role in photosynthesis, they also provide distinct colours (red, yellow, and orange) to fruit, vegetables, and flowers to attract pollinators and facilitate pollination and seed dispersal. Carotenoids provide novelty to fruits and vegetables and are beneficial to human health primarily as provitamin A, therefore, they are essential for dietary intake. The aim of this thesis is to understand and characterize carotenogenesis in kiwifruit (Actinidia species) and its regulation in the orange Actinidia species. Metabolic analysis of orange Actinidia valvata (OF), yellow A. polygama (YF), and green A. arguta (GF) revealed high accumulation of β-carotene (provitamin A) in orange and yellow fruits, whereas green fruit accumulated xanthophylls (primarily lutein). Transcriptomic analysis between OF and GF revealed upregulation of carotenoid pathway genes (DXS, PSY2, GGPPS, PDS, Z-ISO, and ZDS) in OF fruit during ripening (a contrast from GF). Increased expression of chlorophyll degradation genes (SGR, RCCR, and NYC1) in OF species explains increased chlorophyll turnover in the early ripening stages. Transient overexpression of Actinidia PSY2 (a rate-limiting step in most plant species) and SGRs in Nicotiana tabacum leaves resulted in a significant increase in carotenoids and de-greening, respectively. The rapid de-greening accompanied by β-carotene accumulation can also depend on the transcriptional regulation of the pathway and plastid diversity (for carotenoid sequestration). Key genes that encode pathway enzymes were differentially regulated, therefore, candidate transcription factors based on differential expression analysis were selected and functionally characterized in heterologous plant systems. New candidates that regulate carotenogenesis (MYB1R, DIVARICATA, bHLH154, and bHLH137) and de-greening (bZIP53, bZIP44, and WRKY53) were identified. Sequestration of carotenoids in plastids determines their concentration in diverse tissues. Microscopic analysis revealed distinct differences in plastid type, number, and ultrastructure in the flesh of the three Actinidia species with chloroplast-to-chromoplast development in orange and yellow fruits. Furthermore, over-expression of FIBRILLIN1B, a plastid-lipid associated protein, increased total carotenoid accumulation suggesting the highly expressed FIBRILLIN1B in orange kiwifruit facilitates high carotenoid sequestration. This study provides knowledge on the complex molecular mechanisms regulating carotenogenesis and de-greening in diverse kiwifruit species.

Degree

thesis:*
Name thesis:degree_name
PhD
Level thesis:degree_level
Doctoral
Discipline thesis:degree_discipline
Biological Sciences
Grantor dc:publisher
ResearchSpace@Auckland
Year dc:date.issued
2025

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Bhargava, Nitisha
Advisors dc:contributor.advisor
  • Allan, Andrew
  • Ampomah-Dwamena, Charles

Rights

dc:rights
Statement dc:rights
  • Items in ResearchSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Identifiers

dc:identifier.*
Handle dc:identifier.uri
https://hdl.handle.net/2292/73593
OAI identifier oai:identifier
oai:researchspace.auckland.ac.nz:2292/73593

Chain of custody

source
Harvested from
University of Auckland
Base URL
researchspace.auckland.ac.nz/server/oai/request
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Bhargava, Nitisha. Understanding The Carotenoid Biosynthesis Pathway in Orange Actinidia Species. Doctoral thesis, ResearchSpace@Auckland, 2025. https://hdl.handle.net/2292/73593