Comparison of Salt Tolerance in Soja Based on Metabolomics of Seedling Roots

文献类型: 外文期刊

第一作者: Li, Mingxia

作者: Li, Mingxia;Jiao, Yang;Zhang, Haiyan;Shi, Lianxuan;Guo, Rui;Jin, Xiaofei

作者机构:

关键词: soja;roots;metabolomics;salt stress;salt tolerance

期刊名称:FRONTIERS IN PLANT SCIENCE ( 影响因子:5.753; 五年影响因子:6.612 )

ISSN: 1664-462X

年卷期: 2017 年 8 卷

页码:

收录情况: SCI

摘要: Soybean is an important economic crop that is continually threatened by abiotic stresses, especially salt stress. Wild soybean is an important germplasm resource for the breeding of cultivated soybean. The root system plays a very important role in plant salt tolerance. To explore the salt tolerance-related mechanisms among Soja, we have demonstrated the seedling roots' growth and metabolomics in wild soybean, semi-wild soybean, and cultivated soybean under two types of salt stress by using gas chromatography-mass spectrometry. We characterized 47 kinds of differential metabolites under neutral salt stress, and isoleucine, serine, 1-allothreonine, glutamic acid, phenylalanine, asparagines, aspartic acid, pentadecanoic acid, lignoceric acid, oleic acid, galactose, tagatose, d-arabitol, dihydroxyacetone, 3-hydroxybutyric acid, and glucuronic acid increased significantly in the roots of wild soybean seedlings. However, these metabolites were suppressed in semi-wild and cultivated soybeans. Amino acid, fatty acid, sugars, and organic acid synthesis and the secondary metabolism of antioxidants increased significantly in the roots of wild soybean seedling. Under alkaline salt stress, wild soybean contained significantly higher amounts of proline, glutamic acid, aspartic acid, l-allothreonine, isoleucine, serine, alanine, arachidic acid, oleic acid, cis-gondoic acid, fumaric acid, l-malic acid, citric acid, malonic acid, gluconic acid, 5-methoxytryptamine, salicylic acid, and fluorene than semi-wild and cultivated soybeans. Our study demonstrated that carbon and nitrogen metabolism, and the tricarboxylic acid (TCA) cycle and receiver operating characteristics (especially the metabolism of phenolic substances) of the seedling roots were important to resisting salt stress and showed a regular decreasing trend from wild soybean to cultivated soybean. The metabolomics's changes were critical factors in the evolution of salt tolerance among Soja. This study provides new insights into salt tolerance in soybean, and presents quantitative parameters for a salt tolerant soybean breeding system, which is conducive to the rational use and protection of wild soybean resources.

分类号:

  • 相关文献

[1]Complex molecular mechanisms underlying seedling salt tolerance in rice revealed by comparative transcriptome and metabolomic profiling. Wang, Wen-Sheng,Zhao, Xiu-Qin,Li, Min,Huang, Li-Yu,Xu, Jian-Long,Zhang, Fan,Cui, Yan-Ru,Fu, Bin-Ying,Li, Zhi-Kang,Li, Min,Xu, Jian-Long,Fu, Bin-Ying,Li, Zhi-Kang.

[2]Identification of Metabolites and Transcripts Involved in Salt Stress and Recovery in Peanut. Cui, Feng,Liu, Yiyang,Han, Yan,Wan, Shubo,Li, Guowei,Cui, Feng,Liu, Yiyang,Han, Yan,Wan, Shubo,Li, Guowei,Sui, Na,Liu, Shanshan,Duan, Guangyou. 2018

[3]SnRK2 Homologs in Gossypium and GhSnRK2.6 Improved Salt Tolerance in Transgenic Upland Cotton and Arabidopsis. Su, Ying,Zhen, Junbo,Zhang, Xi,Chen, Zhiwen,Li, Le,Hua, Jinping,Wang, Yumei,Zhen, Junbo,Huang, Yi.

[4]Effect of arbuscular mycorrhizal fungi on growth, mineral nutrition, antioxidant enzymes activity and fruit yield of tomato grown under salinity stress. Latef, Arafat Abdel Hamed Abdel,He Chaoxing.

[5]Influence of arbuscular mycorrhizae on biomass and root morphology of selected strawberry cultivars under salt stress. Fan, Li,Dube, Claudine,Khanizadeh, Shahrokh,Fan, Li,Fang, Chengquan,Dalpe, Yolande.

[6]Nicotiana sylvestris calcineurin B-like protein NsylCBL10 enhances salt tolerance in transgenic Arabidopsis. Dong, Lianhong,Wang, Qian,Manik, S. M. Nuruzzaman,Song, Yufeng,Su, Yulong,Liu, Guanshan,Liu, Haobao,Dong, Lianhong,Wang, Qian,Manik, S. M. Nuruzzaman,Song, Yufeng,Su, Yulong,Liu, Guanshan,Liu, Haobao,Shi, Sujuan.

[7]Identification of a gene controlling variation in the salt tolerance of rapeseed (Brassica napus L.). Yong, Hui-Yee,Wang, Chunlei,Kitashiba, Hiroyasu,Nishio, Takeshi,Li, Feng,Wu, Xiaoming,Bancroft, Ian.

[8]Fine-scale phylogenetic structure and major events in the history of the current wild soybean (glycine soja) and taxonomic assignment of semi-wild type (glycine gracilis skvortz.) within the chinese subgenus soja. Wang, Ke-Jing,Li, Xiang-Hua,Liu, Yang.

[9]Changes of antioxidative enzymes and cell membrane osmosis in tomato colonized by arbuscular mycorrhizae under NaCl stress. ZhongQun, He,ChaoXing, He,ZhiBin, Zhang,ZhiRong, Zou,HuaiSong, Wang.

[10]Isolation and Characterization of an ERF Transcription Factor Gene from Cotton (Gossypium barbadense L.). Xianpeng Meng,Fuguang Li,Chuanliang Liu,Chaojun Zhang,Zhixia Wu,Yajuan Chen.

[11]Effect of Bromus Inermis Shoot and Root on Soil and Water Conservation on the Slope. Sun, Tiejun,Baderihu,Pang, Zhuo,Hu, Wei,Wu, Juying. 2015

[12]Higher yields and lower methane emissions with new rice cultivars. Hu, Shuijin,Yan, Xiaojun,Wang, Lili,Zhang, Yi,Zhang, Weijian,Jiang, Yu,Zhang, Jun,Song, Zhenwei,Zheng, Chengyan,Deng, Aixing,Zhang, Weijian,van Groenigen, Kees Jan,van Groenigen, Kees Jan,van Kessel, Chris,Linquist, Bruce A.,Huang, Shan,Hungate, Bruce A.,Hu, Shuijin,Wu, Lianhai,Chen, Jin,Hang, Xiaoning,Horwath, William R.,Ye, Rongzhong.

[13]Allelopathic effects of Hemistepta lyrata on the germination and growth of wheat, sorghum, cucumber, rape, and radish seeds. Gao, Xingxiang,Li, Mei,Gao, Zongjun,Li, Changsong,Sun, Zuowen.

[14]Relationships of endogenous plant hormones to accumulation of grain protein and starch in winter wheat under different post-anthesis soil water statusses. Xie, ZJ,Jiang, D,Cao, WX,Dai, TB,Jing, Q.

[15]Identification of differentially expressed proteins in soybean nodules under phosphorus deficiency through proteomic analysis. Chen, Zhijian,Cui, Qiangqiang,Liang, Cuiyue,Sun, Lili,Tian, Jiang,Liao, Hong,Liang, Cuiyue,Sun, Lili. 2011

[16]Impact of sulfate nutrition on the utilization of atmospheric SO2 as sulfur source for Chinese cabbage. Yang, Liping,Stulen, Ineke,De Kok, Luit J..

[17]Genetic dissection of silicon uptake ability in rice (Oryza sativa L.). Wu, Q. -S.,Wan, X. -Y.,Su, N.,Cheng, Z. -J.,Wang, J. -K.,Lei, C. -L.,Zhang, X.,Jiang, L.,Ma, J. -F.,Wan, J. -M..

[18]Long-Term Rice and Green Manure Rotation Alters the Endophytic Bacterial Communities of the Rice Root. Zhang, Xiao-Xia,Gao, Ju-Sheng,Cao, Yan-Hua,Ma, Xiao-Tong,He, Ji-Zheng,Gao, Ju-Sheng.

[19]Impact of phosphorus supply on root exudation, aerenchyma formation and methane emission of rice plants. Lu, Y,Wassmann, R,Neue, HU,Huang, C.

[20]Germanium-68 as an Adequate Tracer for Silicon Transport in Plants. Characterization of Silicon Uptake in Different Crop Species. Nikolic, Miroslav,Nikolic, Nina,Liang, Yongchao,Kirkby, Ernest A.,Romheld, Volker.

作者其他论文 更多>>