Genome-wide identification and comparative analysis of drought related genes in roots of two maize inbred lines with contrasting drought tolerance by RNA sequencing

被引:0
作者
HAO Luyang [1 ]
LIU Xuyang [1 ]
ZHANG Xiaojing [1 ]
SUN Baocheng [2 ]
LIU Cheng [2 ]
ZHANG Dengfeng [1 ]
TANG Huaijun [2 ]
LI Chunhui [1 ]
LI Yongxiang [1 ]
SHI Yunsu [1 ]
XIE Xiaoqing [2 ]
SONG Yanchun [1 ]
WANG Tianyu [1 ]
LI Yu [1 ]
机构
[1] Institute of Crop Sciences,Chinese Academy of Agricultural Sciences
[2] Institute of Grain Crops,Xinjiang Academy of Agricultural Sciences
关键词
maize(Zea mays L.); root; transcriptome; RNA sequencing; drought-responsive genes;
D O I
暂无
中图分类号
S513 [玉米(玉蜀黍)];
学科分类号
0901 ;
摘要
Drought is one of the most important abiotic stresses affecting maize growth and development and therefore resulting in yield loss. Thus it is essential to understand molecular mechanisms of drought stress responses in maize for drought tolerance improvement. The root plays a critical role in plants sensing water deficit. In the present study, two maize inbred lines, H082183, a drought-tolerant line, and Lv28, a drought-sensitive line, were grown in the field and treated with different water conditions(moderate drought, severe drought, and well-watered conditions) during vegetative stage. The transcriptomes of their roots were investigated by RNA sequencing. There were 1 428 and 512 drought-responsive genes(DRGs) in Lv28, 688 and 3 363 DRGs in H082183 under moderate drought and severe drought, respectively. A total of 31 Gene Ontology(GO) terms were significantly over-represented in the two lines, 13 of which were enriched only in the DRGs of H082183. Based on results of Kyoto encyclopedia of genes and genomes(KEGG) enrichment analysis, "plant hormone signal transduction" and "starch and sucrose metabolism" were enriched in both of the two lines, while "phenylpropanoid biosynthesis" was only enriched in H082183. Further analysis revealed the different expression patterns of genes related to abscisic acid(ABA) signal pathway, trehalose biosynthesis, reactive oxygen scavenging, and transcription factors might contribute to drought tolerance in maize. Our results contribute to illustrating drought-responsive molecular mechanisms and providing gene resources for maize drought improvement.
引用
收藏
页码:449 / 464
页数:16
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共 35 条
[31]   Dissection of quantitative trait nucleotides and candidate genes associated with agronomic and yield-related traits under drought stress in rapeseed varieties: integration of genome-wide association study and transcriptomic analysis [J].
Salami, Maryam ;
Heidari, Bahram ;
Alizadeh, Bahram ;
Batley, Jacqueline ;
Wang, Jin ;
Tan, Xiao-Li ;
Dadkhodaie, Ali ;
Richards, Christopher .
FRONTIERS IN PLANT SCIENCE, 2024, 15
[32]   Genome-Wide Identification of Jatropha curcas Aquaporin Genes and the Comparative Analysis Provides Insights into the Gene Family Expansion and Evolution in Hevea brasiliensis [J].
Zou, Zhi ;
Yang, Lifu ;
Gong, Jun ;
Mo, Yeyong ;
Wang, Jikun ;
Cao, Jianhua ;
An, Feng ;
Xie, Guishui .
FRONTIERS IN PLANT SCIENCE, 2016, 7
[33]   Genome-Wide and Transcriptome Analysis of Jacalin-Related Lectin Genes in Barley and the Functional Characterization of HvHorcH in Low-Nitrogen Tolerance in Arabidopsis [J].
Quan, Xiaoyan ;
Meng, Chen ;
Xie, Chunjuan ;
Sun, Huifang ;
Xu, Boyang ;
Bermudez, Ramon Santos ;
He, Wenxing .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (23)
[34]   Genome-wide identification and analysis of anthocyanin synthesis-related R2R3-MYB genes in Fragaria pentaphylla [J].
Xie, Liangmu ;
Wang, Yinuo ;
Tao, Yutian ;
Chen, Luxi ;
Lin, Hanyang ;
Qi, Zhechen ;
Li, Junmin .
BMC GENOMICS, 2024, 25 (01)
[35]   Comparative transcriptome analysis of salt tolerance of roots in diploid and autotetraploid citrus rootstock (C. junos cv. Ziyang xiangcheng) and identification of salt tolerance-related genes [J].
Song, Xin ;
Duan, Yao-Yuan ;
Tan, Feng-Quan ;
Ren, Jie ;
Cao, Hui -Xiang ;
Xie, Kai-Dong ;
Wu, Xiao-Meng ;
Guo, Wen-Wu .
SCIENTIA HORTICULTURAE, 2023, 317