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Effects of simulated drought stress on carotenoid contents and expression of related genes in carrot taproots. | LitMetric

Effects of simulated drought stress on carotenoid contents and expression of related genes in carrot taproots.

Protoplasma

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Ministry of Agriculture and Rural Affairs Key Laboratory of Biology and Germplasm Enhancement of Horticultural Crops in East China, College of Horticulture, Nanjing Agricultural University, Nanjing, 210095, China.

Published: March 2021

AI Article Synopsis

  • Carotenoids are pigments in carrots that give them their yellow, orange, and red colors, and help the plants resist drought.
  • The study measured carotenoid levels in three carrot cultivars under drought conditions using UPLC and analyzed gene expression related to carotenoid synthesis using RT-qPCR.
  • Results showed that the orange cultivar 'Kurodagosun' better adapts to drought stress, and specific genes and carotenoids like β-carotene and lutein play key roles in this stress response.

Article Abstract

Carotenoids are liposoluble pigments found in plant chromoplasts that are responsible for the yellow, orange, and red colors of carrot taproots. Drought is one of the main stress factors affecting carrot growth. Carotenoids play important roles in drought resistance in higher plants. In the present work, the carotenoid contents in three different-colored carrot cultivars, 'Kurodagosun' (orange), 'Benhongjinshi' (red), and 'Qitouhuang' (yellow), were determined by ultra-high-performance liquid chromatography (UPLC) after 15% polyethylene glycol (PEG) 6000 treatment. Real-time fluorescence quantitative PCR (RT-qPCR) was then used to determine the expression levels of carotenoid synthesis- and degradation-related genes. Increases in β-carotene content in 'Qitouhuang' taproots under drought stress were found to be related to the expression levels of DcPSY2 and DcLCYB. Increases in lutein and decreases in α-carotene content in 'Qitouhuang' and 'Kurodagosun' under PEG treatment may be related to the expression levels of DcCYP97A3, DcCHXE, and DcCHXB1. The expression levels of DcNCED1 and DcNCED2 in the three cultivars significantly increased, thus suggesting that NCED genes could respond to drought stress. Analysis of the growth status and carotenoid contents of carrots under PEG treatment indicated that the orange cultivar 'Kurodagosun' has better adaptability to drought stress than the other cultivars and that β-carotene and lutein may be involved in the stress resistance process of carrot.

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Source
http://dx.doi.org/10.1007/s00709-020-01570-5DOI Listing

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