Genome-Wide Investigation of Class III Peroxidase Genes in Brassica napus Reveals Their Responsiveness to Abiotic Stresses

被引:4
作者
Shah, Obaid Ullah [1 ]
Khan, Latif Ullah [1 ]
Basharat, Sana [2 ]
Zhou, Lingling [1 ]
Ikram, Muhammad [1 ]
Peng, Jiantao [1 ]
Khan, Wasi Ullah [1 ]
Liu, Pingwu [1 ]
Waseem, Muhammad [1 ]
机构
[1] Hainan Univ, Sanya Inst Breeding & Multiplicat, Coll Trop Agr & Forestry, Sch Breeding & Multiplicat, Sanya 572025, Peoples R China
[2] Univ Agr Faisalabad, Dept Bot, Faisalabad 38000, Pakistan
来源
PLANTS-BASEL | 2024年 / 13卷 / 07期
关键词
peroxidases; expression pattern; abiotic stress; rapeseed; REGULATORY ELEMENTS; ARABIDOPSIS; FAMILY; EXPRESSION; DATABASE; TOLERANCE; EVOLUTION; TOOLS; RNA; DNA;
D O I
10.3390/plants13070942
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Brassica napus (B. napus) is susceptible to multiple abiotic stresses that can affect plant growth and development, ultimately reducing crop yields. In the past, many genes that provide tolerance to abiotic stresses have been identified and characterized. Peroxidase (POD) proteins, members of the oxidoreductase enzyme family, play a critical role in protecting plants against abiotic stresses. This study demonstrated a comprehensive investigation of the POD gene family in B. napus. As a result, a total of 109 POD genes were identified across the 19 chromosomes and classified into five distinct subgroups. Further, 44 duplicate events were identified; of these, two gene pairs were tandem and 42 were segmental. Synteny analysis revealed that segmental duplication was more prominent than tandem duplication among POD genes. Expression pattern analysis based on the RNA-seq data of B. napus indicated that BnPOD genes were expressed differently in various tissues; most of them were expressed in roots rather than in other tissues. To validate these findings, we performed RT-qPCR analysis on ten genes; these genes showed various expression levels under abiotic stresses. Our findings not only furnish valuable insights into the evolutionary dynamics of the BnPOD gene family but also serve as a foundation for subsequent investigations into the functional roles of POD genes in B. napus.
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页数:16
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