AI Article Synopsis

  • Glutamate decarboxylase (GAD) is crucial for GABA metabolism and influences plant growth, stress responses, and hormone interactions; this study focused on GAD expression during early somatic embryogenesis in longan.
  • Researchers identified 6 GAD genes in longan and found that they are closely related to those in dicot plants, with their promoters linked to hormone and stress responses.
  • RNA-Seq and qRT-PCR showed high expression of GAD genes in early embryogenic cultures, particularly after treatment with growth regulators; overexpressing DlGAD5 enhanced GAD activity, indicating its role in hormone signaling and longan development.

Article Abstract

Glutamate decarboxylase (GAD) is involved in GABA metabolism and plays an essential regulatory role in plant growth, abiotic stresses, and hormone response. This study investigated the expression mechanism of the GAD family during longan early somatic embryogenesis (SE) and identified 6 GAD genes based on the longan genome. Homology analysis indicated that DlGAD genes had a closer relationship with dicotyledonous plants. The analysis of cis-acting elements in the promoter region suggests that the GAD genes were associated with various stress responses and hormones. RNA sequencing (RNA-Seq) and the qRT-PCR data indicated that most DlGAD genes were highly expressed in the incomplete compact pro-embryogenic cultures (ICpEC) and upregulated in longan embryogenic callus (EC) after treatments with 2,4-D, high temperature (35 °C), IAA, and ABA. Moreover, the RNA-Seq analysis also revealed that DlGADs exhibit different expression patterns in various tissues and organs. The subcellular localization results showed that DlGAD5 was localized in the cytoplasm, suggesting that it played a role in the cytoplasm. Transient overexpression of DlGAD5 enhanced the expression levels of DlGADs and increased the activity of glutamate decarboxylase in longan embryogenic callus (EC), while the content of glutamic acid decreased. Thus, the DlGAD gene can play an important role in the early somatic embryogenesis of longan by responding to hormones such as IAA and ABA. DlGAD5 can affect the growth and development of longan by stimulating the expression of the DlGAD gene family, thereby increasing the GAD activity in the early SE of longan, participating in hormone synthesis and signaling pathways.

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Source
http://dx.doi.org/10.1016/j.gene.2024.148698DOI Listing

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