Physiological and transcriptional regulation in Taxodium hybrid ‘Zhongshanshan’ leaves in acclimation to prolonged partial submergence
Main conclusion Taxodium 703 leaves activate fermentation, amino acids metabolism and ROS detoxification, and reduce TCA cycle and ABA biosynthesis in acclimation to prolonged partial submergence stress. Taxodium hybrid ‘Zhongshanshan 703’ ( T. mucronatum × T. distichum ; Taxodium 703) is a highly...
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Veröffentlicht in: | Planta 2023-09, Vol.258 (3), p.66-66, Article 66 |
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Sprache: | eng |
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Zusammenfassung: | Main conclusion
Taxodium
703 leaves activate fermentation, amino acids metabolism and ROS detoxification, and reduce TCA cycle and ABA biosynthesis in acclimation to prolonged partial submergence stress.
Taxodium
hybrid ‘Zhongshanshan 703’ (
T. mucronatum
×
T. distichum
;
Taxodium
703) is a highly flooding-tolerant woody plant. To investigate the physiological and transcriptional regulatory mechanisms underlying its leaves in acclimation to long-term flooding, we exposed cuttings of
Taxodium
703 to either non-flooding (control) or partial submergence for 2 months. The leaf tissues above (AL) and below (BL) flooding-water were separately harvested. Partial submergence decreased concentrations of chlorophyll (a + b) and dehydroascorbate (DHA) and lactate dehydrogenase (LDH) activity in AL, and reduced biomass, concentrations of succinic acid, fumaric acid and malic acid, and transcript levels of genes involved in tricarboxylic acid (TCA) cycle in BL. Under partial submergence, concentrations of starch, malondialdehyde and abscisic acid (ABA) decreased, and also mRNA levels of
nine-cis-epoxycarotenoid dioxygenases
that are involved in ABA biosynthesis in AL and BL of
Taxodium
703. Partial submergence increased O
2
−
content in AL, and improved concentrations of pyruvate and soluble sugars and activities of LDH and peroxidase in BL. In addition, partial submergence increased concentrations of ethanol, lactate, alanine, γ-aminobutyric acid, total amino acids and ascorbic acid (ASA), and ASA/DHA, activities of alcohol dehydrogenases (ADH) and ascorbate peroxidase, as well as transcript levels of
ADH1A
,
ADH1B
and genes involved in alanine biosynthesis and starch degradation in AL and BL of
Taxodium
703. Overall, these results suggest that
Taxodium
703 leaves activate fermentation, amino acids metabolism and reactive oxygen species detoxification, and maintain a steady supply of sugars, and reduce TCA cycle and ABA biosynthesis in acclimation to prolonged partial submergence stress. |
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ISSN: | 0032-0935 1432-2048 |
DOI: | 10.1007/s00425-023-04225-w |