4.7 Article

Identification and Expression Profiling of Nonphosphorus Glycerolipid Synthase Genes in Response to Abiotic Stresses in Dendrobium catenatum

Journal

PLANTS-BASEL
Volume 10, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/plants10061204

Keywords

nonphosphorus glycerolipid synthase; abiotic stress; circadian regulation; Dendrobium

Categories

Funding

  1. Natural Science Foundation of Zhejiang Province [LQ20C010002]
  2. Key Research and Development Projects of Zhejiang Province [2018C02034]

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In this study, eight DcaNGLS genes were identified from the genome of Dendrobium catenatum, consisting of three types of synthases. These genes showed high conservation during evolution. Gene expression analysis revealed that DcaNGLSs were highly expressed in specific tissues and growth stages, and were induced by freezing, salt stress, and drought.
Dendrobium catenatum, a valuable Chinese herb, frequently experiences abiotic stresses, such as cold and drought, under natural conditions. Nonphosphorus glycerolipid synthase (NGLS) genes are closely linked to the homeostasis of membrane lipids under abiotic stress in plants. However, there is limited information on NGLS genes in D. catenatum. In this study, a total of eight DcaNGLS genes were identified from the D. catenatum genome; these included three monogalactosyldiacylglycerol synthase (DcaMGD1, 2, 3) genes, two digalactosyldiacylglycerol synthase (DcaDGD1, 2) genes, and three sulfoquinovosyldiacylglycerol synthase (DcaSQD1, 2.1, 2.2) genes. The gene structures and conserved motifs in the DcaNGLSs showed a high conservation during their evolution. Gene expression profiling showed that the DcaNGLSs were highly expressed in specific tissues and during rapid growth stages. Furthermore, most DcaNGLSs were strongly induced by freezing and post-freezing recovery. DcaMGD1 and DcaSQDs were greatly induced by salt stress in leaves, while DcaDGDs were primarily induced by salt stress in roots. Under drought stress, most DcaNGLSs were regulated by circadian rhythms, and DcaSQD2 was closely associated with drought recovery. Transcriptome analysis also revealed that MYB might be regulated by circadian rhythm and co-expressed with DcaNGLSs under drought stress. These results provide insight for the further functional investigation of NGLS and the regulation of nonphosphorus glycerolipid biosynthesis in Dendrobium.

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