1
Return

Metabolic adaptation following genome doubling in citrus doubled diploids revealed by non-targeted metabolomics

delete2017-10-14
delete37
PRE
AI
F
Feng‐Quan Tan
屠红 (Hong Tu)
王荣 (Rong Wang)
X
Xiao‐Meng Wu
K
Kai‐Dong Xie
J
Jiajing Chen
H
Hongyan Zhang
J
Juan Xu
郭文武 (Wen‐Wu Guo) *
DOI:10.1007/s11306-017-1276-xdelete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Introduction Polyploidy is a widespread phenomenon in nature and is thought to play a major role in the evolution of flowering plants. Additionally, polyploidization produces novel phenotypes that through plant breeding have enhanced the production of biomass and improved the stress tolerance of major economic crops. However, the effect of polyploidization on plant metabolism is still unclear. Objectives In order to test whether there are common metabolic responses following genome doubling, we performed a comparative metabolomic analysis of mature leaves from doubled diploids and the corresponding diploids of red tangerine (Citrus reticulata Blanco), trifoliate orange (Poncirus trifoliata L. Raf.) and precocious trifoliate orange (P. trifoliata). Methods Non-targeted and targeted metabolic profiling of mature leaves from three doubled diploids and their diploid controls were performed by using liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS) and gas chromatography-mass spectrometry (GC-MS). Results About 11-34% of the detected metabolic features differentially accumulated in the doubled diploids, mostly by less than fivefold. The levels of primary metabolites tended to increase in the doubled diploids. Concentrations of tricarboxylic acid cycle intermediates-citric acid, malic acid, fumaric acid and succinic acid, enhanced in all of the doubled diploids. The levels of secondary metabolites, including phenylpropanoids and terpenoids, tended to decrease in the doubled diploids. This is consistent with the lower C/N ratios in the doubled diploids. Conclusions Polyploidization had a significant but relatively limited influence on the accumulation of metabolites in these citrus species. We conclude that primary metabolism takes priority over secondary metabolism in doubled diploid plants to relieve the genomic stress encountered during the early stages of genome doubling, probably to promote vitality and growth.
Keywords:
Polyploid
Metabolomics
Metabolic adaptation
Genomic stress
Citrus
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Metabolomics cover
Metabolomics
IF:
3.3
Papers:
2.4K
Citations:
6.3K

Organization

H
Huazhong Agricultural University
Scholars:
3.2W
Papers: 1.8W
Citations: 3.5W
Cited Papers

Cited Papers

Citing Papers

Citing Papers