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    PANGAEA
    In:  Supplement to: Yang, Jin-Yu Terence; Kao, Shuh-Ji; Dai, Minhan; Yan, Xiuli; Lin, Hui-Ling (2017): Examining N cycling in the northern South China Sea from N isotopic signals in nitrate and particulate phases. Journal of Geophysical Research: Biogeosciences, 122(8), 2118-2136, https://doi.org/10.1002/2016JG003618
    Publication Date: 2023-02-18
    Description: The data sets contain the data of nitrogen isotopes in nitrate and particulate phases from the South China Sea. They are used for the figures of the paper related to the N cycling in the South China Sea.
    Keywords: MULT; Multiple investigations; SouthChinaSea; South China Sea
    Type: Dataset
    Format: application/zip, 72.4 kBytes
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  • 2
    Publication Date: 2015-07-08
    Description: Background: It is well known that salinization (high-pH) has been considered as a major environmental threat to agricultural systems. The aim of this study was to investigate the differences between salt stress and alkali stress in metabolic profiles and nutrient accumulation of wheat; these parameters were also evaluated to determine the physiological adaptive mechanisms by which wheat tolerates alkali stress. Results: The harmful effect of alkali stress on the growth and photosynthesis of wheat were stronger than those of salt stress. High-pH of alkali stress induced the most of phosphate and metal ions to precipitate; as a result, the availability of nutrients significantly declined. Under alkali stress, Ca sharply increased in roots, however, it decreased under salt stress. In addition, we detected the 75 metabolites that were different among the treatments according to GC-MS analysis, including organic acids, amino acids, sugars/polyols and others. The metabolic data showed salt stress and alkali stress caused different metabolic shifts; alkali stress has a stronger injurious effect on the distribution and accumulation of metabolites than salt stress. These outcomes correspond to specific detrimental effects of a highly pH environment. Conclusions: Ca had a significant positive correlation with alkali tolerates, and increasing Ca concentration can immediately trigger SOS Na exclusion system and reduce the Na injury. Salt stress caused metabolic shifts toward gluconeogenesis with increased sugars to avoid osmotic stress; energy in roots and active synthesis in leaves were needed by wheat to develop salt tolerance. Alkali stress (at high pH) significantly inhibited photosynthetic rate; thus, sugar production was reduced, N metabolism was limited, amino acid production was reduced, and glycolysis was inhibited.
    Electronic ISSN: 1471-2229
    Topics: Biology
    Published by BioMed Central
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  • 3
    Publication Date: 2017-02-12
    Description: Soil salinity and alkalinity present a serious threat to global agriculture. However, most of the studies have focused on neutral salt stress, and the information on the metabolic responses of plants to alkali...
    Electronic ISSN: 1471-2229
    Topics: Biology
    Published by BioMed Central
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