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1.
Sci Rep ; 11(1): 10164, 2021 05 13.
Article in English | MEDLINE | ID: mdl-33986344

ABSTRACT

Trichomes, specialized epidermal cells located in aerial parts of plants, play indispensable roles in resisting abiotic and biotic stresses. However, the regulatory genes essential for multicellular trichrome development in Capsicum annuum L. (pepper) remain unclear. In this study, the transcript profiles of peppers GZZY-23 (hairy) and PI246331 (hairless) were investigated to gain insights into the genes responsible for the formation of multicellular trichomes. A total of 40,079 genes, including 4743 novel genes and 13,568 differentially expressed genes (DEGs), were obtained. Functional enrichment analysis revealed that the most noticeable pathways were transcription factor activity, sequence-specific DNA binding, and plant hormone signal transduction, which might be critical for multicellular trichome formation in hairy plants. We screened 11 DEGs related to trichome development; 151 DEGs involved in plant hormone signal transduction; 312 DEGs belonging to the MYB, bHLH, HD-Zip, and zinc finger transcription factor families; and 1629 DEGs predicted as plant resistance genes (PRGs). Most of these DEGs were highly expressed in GZZY-23 or trichomes. Several homologs of trichome regulators, such as SlCycB2, SlCycB3, and H, were considerably upregulated in GZZY-23, especially in the trichomes. The transcriptomic data generated in this study provide a basis for future characterization of trichome formation in pepper.


Subject(s)
Capsicum/genetics , Gene Expression Profiling/methods , High-Throughput Nucleotide Sequencing/methods , Trichomes/genetics , Capsicum/cytology , Capsicum/growth & development , Disease Resistance/genetics , Gene Expression Regulation, Plant , Genetic Loci , Phenotype , Plant Growth Regulators/genetics , Plant Growth Regulators/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Plant Stems/cytology , Plant Stems/genetics , Plant Stems/growth & development , Signal Transduction/genetics , Transcription Factors/genetics , Transcription Factors/metabolism , Transcriptome , Trichomes/cytology , Trichomes/growth & development
2.
PLoS One ; 16(3): e0240279, 2021.
Article in English | MEDLINE | ID: mdl-33705404

ABSTRACT

Bacterial spot (BS), incited by Xanthomonas campestris pv. vesicatoria (Xcv), is one of the most serious diseases of pepper. For a comparative analysis of defense responses to Xcv infection, we performed a transcriptomic analysis of a susceptible cultivar, ECW, and a resistant cultivar, VI037601, using the HiSeqTM 2500 sequencing platform. Approximately 120.23 G clean bases were generated from 18 libraries. From the libraries generated, a total of 38,269 expressed genes containing 11,714 novel genes and 11,232 differentially expressed genes (DEGs) were identified. Functional enrichment analysis revealed that the most noticeable pathways were plant-pathogen interaction, MAPK signaling pathway-plant, plant hormone signal transduction and secondary metabolisms. 1,599 potentially defense-related genes linked to pattern recognition receptors (PRRs), mitogen-activated protein kinase (MAPK), calcium signaling, and transcription factors may regulate pepper resistance to Xcv. Moreover, after Xcv inoculation, 364 DEGs differentially expressed only in VI037601 and 852 genes in both ECW and VI037601. Many of those genes were classified as NBS-LRR genes, oxidoreductase gene, WRKY and NAC transcription factors, and they were mainly involved in metabolic process, response to stimulus and biological regulation pathways. Quantitative RT-PCR of sixteen selected DEGs further validated the RNA-seq differential gene expression analysis. Our results will provide a valuable resource for understanding the molecular mechanisms of pepper resistance to Xcv infection and improving pepper resistance cultivars against Xcv.


Subject(s)
Capsicum/genetics , Gene Expression Profiling , Plant Diseases/genetics , Xanthomonas campestris/pathogenicity , Xanthomonas vesicatoria/pathogenicity , Capsicum/metabolism , Capsicum/microbiology , Down-Regulation , Mitogen-Activated Protein Kinases/genetics , Mitogen-Activated Protein Kinases/metabolism , Plant Diseases/microbiology , Plant Leaves/genetics , Plant Leaves/metabolism , Plant Leaves/microbiology , Plant Proteins/genetics , RNA, Plant/chemistry , RNA, Plant/metabolism , Sequence Analysis, RNA , Signal Transduction/genetics , Transcription Factors/genetics , Transcription Factors/metabolism , Up-Regulation
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