Genome-wide identification of gene expression in contrasting maize inbred lines under field drought conditions reveals the significance of transcription factors in drought tolerance. 2017

Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
Institute of Crop Science, Chinese Academy of Agricultural Sciences, Beijing, China.

Drought is a major threat to maize growth and production. Understanding the molecular regulation network of drought tolerance in maize is of great importance. In this study, two maize inbred lines with contrasting drought tolerance were tested in the field under natural soil drought and well-watered conditions. In addition, the transcriptomes of their leaves was analyzed by RNA-Seq. In total, 555 and 2,558 genes were detected to specifically respond to drought in the tolerant and the sensitive line, respectively, with a more positive regulation tendency in the tolerant genotype. Furthermore, 4,700, 4,748, 4,403 and 4,288 genes showed differential expression between the two lines under moderate drought, severe drought and their well-watered controls, respectively. Transcription factors were enriched in both genotypic differentially expressed genes and specifically responsive genes of the tolerant line. It was speculated that the genotype-specific response of 20 transcription factors in the tolerance line and the sustained genotypically differential expression of 22 transcription factors might enhance tolerance to drought in maize. Our results provide new insight into maize drought tolerance-related regulation systems and provide gene resources for subsequent studies and drought tolerance improvement.

UI MeSH Term Description Entries
D007178 Inbreeding The mating of plants or non-human animals which are closely related genetically. Backcrossing,Half-Sib Mating,Sib Mating,Genetic Inbreeding,Backcrossings,Genetic Inbreedings,Half Sib Mating,Half-Sib Matings,Inbreeding, Genetic,Mating, Half-Sib,Mating, Sib,Matings, Half-Sib,Matings, Sib,Sib Matings
D010940 Plant Proteins Proteins found in plants (flowers, herbs, shrubs, trees, etc.). The concept does not include proteins found in vegetables for which PLANT PROTEINS, DIETARY is available. Plant Protein,Protein, Plant,Proteins, Plant
D003313 Zea mays A plant species of the family POACEAE. It is a tall grass grown for its EDIBLE GRAIN, corn, used as food and animal FODDER. Corn,Indian Corn,Maize,Teosinte,Zea,Corn, Indian
D000222 Adaptation, Physiological The non-genetic biological changes of an organism in response to challenges in its ENVIRONMENT. Adaptation, Physiologic,Adaptations, Physiologic,Adaptations, Physiological,Adaptive Plasticity,Phenotypic Plasticity,Physiological Adaptation,Physiologic Adaptation,Physiologic Adaptations,Physiological Adaptations,Plasticity, Adaptive,Plasticity, Phenotypic
D013312 Stress, Physiological The unfavorable effect of environmental factors (stressors) on the physiological functions of an organism. Prolonged unresolved physiological stress can affect HOMEOSTASIS of the organism, and may lead to damaging or pathological conditions. Biotic Stress,Metabolic Stress,Physiological Stress,Abiotic Stress,Abiotic Stress Reaction,Abiotic Stress Response,Biological Stress,Metabolic Stress Response,Physiological Stress Reaction,Physiological Stress Reactivity,Physiological Stress Response,Abiotic Stress Reactions,Abiotic Stress Responses,Abiotic Stresses,Biological Stresses,Biotic Stresses,Metabolic Stress Responses,Metabolic Stresses,Physiological Stress Reactions,Physiological Stress Responses,Physiological Stresses,Reaction, Abiotic Stress,Reactions, Abiotic Stress,Response, Abiotic Stress,Response, Metabolic Stress,Stress Reaction, Physiological,Stress Response, Metabolic,Stress Response, Physiological,Stress, Abiotic,Stress, Biological,Stress, Biotic,Stress, Metabolic
D014157 Transcription Factors Endogenous substances, usually proteins, which are effective in the initiation, stimulation, or termination of the genetic transcription process. Transcription Factor,Factor, Transcription,Factors, Transcription
D055864 Droughts Prolonged dry periods in natural climate cycle. They are slow-onset phenomena caused by rainfall deficit combined with other predisposing factors. Drought
D059467 Transcriptome The pattern of GENE EXPRESSION at the level of genetic transcription in a specific organism or under specific circumstances in specific cells. Transcriptomes,Gene Expression Profiles,Gene Expression Signatures,Transcriptome Profiles,Expression Profile, Gene,Expression Profiles, Gene,Expression Signature, Gene,Expression Signatures, Gene,Gene Expression Profile,Gene Expression Signature,Profile, Gene Expression,Profile, Transcriptome,Profiles, Gene Expression,Profiles, Transcriptome,Signature, Gene Expression,Signatures, Gene Expression,Transcriptome Profile
D018506 Gene Expression Regulation, Plant Any of the processes by which nuclear, cytoplasmic, or intercellular factors influence the differential control of gene action in plants. Plant Gene Expression Regulation,Regulation of Gene Expression, Plant,Regulation, Gene Expression, Plant
D018745 Genome, Plant The genetic complement of a plant (PLANTS) as represented in its DNA. Plant Genome,Genomes, Plant,Plant Genomes

Related Publications

Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
March 2010, Plant molecular biology,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
January 2021, PloS one,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
December 2007, Zhi wu sheng li yu fen zi sheng wu xue xue bao = Journal of plant physiology and molecular biology,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
December 2023, International journal of molecular sciences,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
January 2022, PloS one,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
March 2024, Physiology and molecular biology of plants : an international journal of functional plant biology,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
June 2022, Scientific reports,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
March 2001, Journal of experimental botany,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
October 2021, Plant biotechnology journal,
Xiaojing Zhang, and Xuyang Liu, and Dengfeng Zhang, and Huaijun Tang, and Baocheng Sun, and Chunhui Li, and Luyang Hao, and Cheng Liu, and Yongxiang Li, and Yunsu Shi, and Xiaoqing Xie, and Yanchun Song, and Tianyu Wang, and Yu Li
November 2010, Nature genetics,
Copied contents to your clipboard!