Transcriptomic Analysis of Cadmium Stressed Tamarix hispida Revealed Novel Transcripts and the Importance of Abscisic Acid Network

被引:8
作者
Wang, Pei-Long
Lei, Xiao-Jin
Wang, Yuan-Yuan
Liu, Bai-chao
Wang, Dan-ni
Liu, Zhong-Yuan
Gao, Cai-Qiu
机构
[1] State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin
[2] Zhejiang Institute of Subtropical Crops, Zhejiang Academy of Agricultural Sciences, Wenzhou
基金
中国国家自然科学基金;
关键词
Tamarix hispida Willd; cadmium stress; transcriptomic analysis; differentially expressed genes; H2O2; ABA; ARABIDOPSIS-THALIANA; GLUCOSYLTRANSFERASE GENE; OXIDATIVE STRESS; NITRIC-OXIDE; HEAVY-METAL; TOLERANCE; ACCUMULATION; HOMEOSTASIS; TOXICITY; ROOT;
D O I
10.3389/fpls.2022.843725
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Cadmium (Cd) pollution is widely detected in soil and has been recognized as a major environmental problem. Tamarix hispida is a woody halophyte, which can form natural forest on the desert and soil with 0.5 to 1% salt content, making it an ideal plant for the research on response to abiotic stresses. However, no systematic study has investigated the molecular mechanism of Cd tolerance in T. hispida. In the study, RNA-seq technique was applied to analyze the transcriptomic changes in T. hispida treated with 150 mu mol L-1 CdCl2 for 24, 48, and 72 h compared with control. In total, 72,764 unigenes exhibited similar sequences in the Non-redundant nucleic acid database (NR database), while 36.3% of all these unigenes may be new transcripts. In addition, 6,778, 8,282, and 8,601 DEGs were detected at 24, 48, and 72 h, respectively. Functional annotation analysis indicated that many genes may be involved in Cd stress response, including ion bonding, signal transduction, stress sensing, hormone responses and ROS metabolism. A ThUGT gene from the abscisic acid (ABA) signaling pathway can enhance Cd resistance ability of T. hispida by regulating the production of ROS under Cd stress and inhibit absorption of Cd. The new transcriptome resources and data that we present in this study for T. hispida may facilitate investigation of molecular mechanisms governing Cd resistance.
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页数:14
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