Genome-Wide Identification of Sorghum Paclobutrazol-Resistance Gene Family and Functional Characterization of SbPRE4 in Response to Aphid Stress

Author:

Guo Yongchao1,Wang Zhifang1ORCID,Jiao Zhiyin1,Yuan Guang1,Cui Li2,Duan Pengwei3,Niu Jingtian1,Lv Peng1,Wang Jinping1,Shi Yannan1

Affiliation:

1. Institute of Millet Crops, Hebei Academy of Agriculture & Forestry Sciences/Hebei Branch of China National Sorghum Improvement Center, Shijiazhuang 050035, China

2. Hebei Plant Protection and Plant Inspection Station, Shijiazhuang 050035, China

3. Hebei Academy of Agriculture & Forestry Sciences, Shijiazhuang 050035, China

Abstract

Sorghum (Sorghum bicolor), the fifth most important cereal crop globally, serves as a staple food, animal feed, and a bioenergy source. Paclobutrazol-Resistance (PRE) genes play a pivotal role in the response to environmental stress, yet the understanding of their involvement in pest resistance remains limited. In the present study, a total of seven SbPRE genes were found within the sorghum BTx623 genome. Subsequently, their genomic location was studied, and they were distributed on four chromosomes. An analysis of cis-acting elements in SbPRE promoters revealed that various elements were associated with hormones and stress responses. Expression pattern analysis showed differentially tissue-specific expression profiles among SbPRE genes. The expression of some SbPRE genes can be induced by abiotic stress and aphid treatments. Furthermore, through phytohormones and transgenic analyses, we demonstrated that SbPRE4 improves sorghum resistance to aphids by accumulating jasmonic acids (JAs) in transgenic Arabidopsis, giving insights into the molecular and biological function of atypical basic helix-loop-helix (bHLH) transcription factors in sorghum pest resistance.

Funder

Hebei Natural Science Foundation for youths

China Agriculture Research System

HAAFS Basic Science and Technology Contract Project

Publisher

MDPI AG

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