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Transcriptomic analysis for the gamma-ray-induced sweetpotato mutants with altered stem growth pattern.
Lee, Hyeong-Un; Shim, Sangrea; Chung, Mi Nam; Lee, Taeyoung; Park, Won; Kim, Tae Hwa; Lee, Kyo Hwui; Woo, Koan Sik; Nam, Sang-Sik; Kim, Moon Young; Lee, Suk-Ha.
Afiliación
  • Lee HU; Department of Agriculture, Forestry and Bioresources and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.
  • Shim S; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Chung MN; Department of Forest Resources, College of Forest and Environmental Sciences, Kangwon National University, Chuncheon, Republic of Korea.
  • Lee T; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Park W; Bioinformatics Institute, Macrogen Inc., Seoul, Republic of Korea.
  • Kim TH; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Lee KH; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Woo KS; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Nam SS; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Kim MY; Bioenergy Crop Research Institute, National Institute of Crop Science, Rural Development Administration, Muan, Republic of Korea.
  • Lee SH; Department of Agriculture, Forestry and Bioresources and Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.
Front Genet ; 15: 1419399, 2024.
Article en En | MEDLINE | ID: mdl-39144719
ABSTRACT

Introduction:

Sweetpotato faces breeding challenges due to physiological and genomic issues. Gamma radiation is a novel approach for inducing genetic variation in crops. We analyzed the transcriptomic changes in gamma ray-induced sweetpotato mutants with altered stem development compared with those in the wild-type 'Tongchaeru' cultivar.

Methods:

RNA sequencing analyses were performed to identify changes in the expression of genes related to stem development.

Results:

Transcriptomic analysis identified 8,931 upregulated and 6,901 downregulated genes, including the upregulation of the auxin-responsive SMALL AUXIN UP RNA (SAUR) and three PHYTOCHROME INTERACTING FACTOR 4 (PIF4) genes. PIF4 is crucial for regulating the expression of early auxin-responsive SAUR genes and stem growth in Arabidopsis thaliana. In the mutant, several genes related to stem elongation, including PIF4 and those involved in various signaling pathways such as auxin and gibberellin, were upregulated.

Discussion:

Our results suggest that gamma ray-induced mutations influence auxin-dependent stem development by modulating a complex regulatory network involving the expression of PIF4 and SAUR genes, and other signaling pathways such as gibberellin and ethylene signaling genes. This study enhances our understanding of the regulatory mechanisms underlying stem growth in sweetpotato, providing valuable insights for genomics-assisted breeding efforts.
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Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Front Genet Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Idioma: En Revista: Front Genet Año: 2024 Tipo del documento: Article