The uppermost monoterpenes improving Cinnamomum camphora thermotolerance by serving signaling functions
An Erratum on
The uppermost monoterpenes improving Cinnamomum camphora thermotolerance by serving signaling functions
By Xu C, Wang B, Luo Q, Ma Y, Zheng T, Wang Y, Cai Y and Zuo Z (2022). Front. Plant Sci. 13:1072931. doi: 10.3389/fpls.2022.1072931
Due to a production error, the same image for Figure 5 and Figure 6 was used. The correct Figure 5 can be seen below.
Figure 5 Effects of eucalyptol on gene expression in antioxidation (A), photosynthetic pigment biosynthesis (B), and photosynthetic abilities (C) in eucalyptol chemotype of C. camphora (EuL). 28°C, 38°C, and Fos+38°C: EuL was treated with normal temperature, high temperature, and high temperature with fosmidomycin (Fos) pretreatment, respectively. Fos+38°C+E5: EuL blocked monoterpene synthesis with Fos was fumigated with 5 μM eucalyptol at 38°C. KEGG: Kyoto encyclopedia of genes and genomes pathways. The heatmap was drawn using the FPKM (fragments per kilobase per million mapped reads) by using the software R packages pheatmap 1.0.12. Means (n = 3) are shown.
The publisher apologizes for this mistake.
The original version of this article has been updated.
Keywords: Cinnamomum camphora, gene expression, photosynthesis, reactive oxygen species, thermotolerance mechanism, uppermost monoterpene
Citation: Frontiers Production Office (2024) Erratum: The uppermost monoterpenes improving Cinnamomum camphora thermotolerance by serving signaling functions. Front. Plant Sci. 15:1469613. doi: 10.3389/fpls.2024.1469613
Received: 24 July 2024; Accepted: 24 July 2024;
Published: 07 August 2024.
Approved by:
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