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Report for Suaeda physophora Pall.

updated: Jun 23rd 2022, 11:13 am see all updates
Changed fields since previous approved record are highlighted


Family Amaranthaceae
Genus Suaeda
Species physophora
Author Pall.
Infraspecific
Infraspecfic Author
Pictures
Plant type
  • xerohalophyteMen, RZ; Li, N; Xing, YC; Tang, YZ; Tan, CY; Meng, FT; Zhang, J; Ni, H; Jia, XG (2013) Chemical constituents and ACE inhibitory activity of desert plant Suaeda physophora Pall.
Life form
  • ShrubSong, J., G. Feng, C. Y. Tian and F. S. Zhang (2005) Strategies for adaptation of Suaeda physophora, Haloxylon ammodendron and Haloxylon persicum to a saline environment during seed-germination stage
Ecotypes unknown
Max. salinity
400 mMSong, J., X. D. Ding, G. Feng and F. S. Zhang (2006) Nutritional and osmotic roles of nitrate in a euhalophyte and a xerophyte in saline conditionsZhao, W. W., T. T. Fu, F. X. Wang, Y. G. Xu and J. Song (2015) The Adaptation of Suaeda physophora Seedlings to Salinity and Drought EnvironmentsZhou, J. C., W. W. Zhao, C. H. Yin, J. Song, B. S. Wang, J. L. Fan and G. Feng (2014) The role of cotyledons in the establishment of Suaeda physophora seedlings
Germination YesLi, L. and X. M. Zhang (2007) Germination strategies of two halophytes in Salt Desert of northwestern ChinaLi, Y., S. R. Zhang, J. Song, C. X. Wu, C. Y. Tian and G. Feng (2008) Chlorophyll in desiccated seeds of a euhalophyte, Suaeda physophora, and its significancy in plant adaptation to salinity during germinationLi, Y., S. R. Zhang, J. Song, C. X. Wu, C. Y. Tian and G. Feng (2008) Chlorophyll in desiccated seeds of a euhalophyte, Suaeda physophora, and its significancy in plant adaptation to salinity during germinationSong, J., G. Feng, C. Y. Tian and F. S. Zhang (2005) Strategies for adaptation of Suaeda physophora, Haloxylon ammodendron and Haloxylon persicum to a saline environment during seed-germination stageSong, J., G. Feng, Z. K. Li, A. D. Chen, X. M. Chen and F. S. Zhang (2007) Effects of salinity and scarifying seed coat on ion content of embryos and seed germination for Suaeda physophora and Haloxylon ammodendronZhang, S., Song, J., Wang, H., Feng, G.  (2010) Effect of salinity on seed germination, ion content and photosynthesis of cotyledons in halophytes or xerophyte growing in Central AsiaZhang, T., J. Song, J. L. Fan and G. Feng (2015) Effects of saline-waterlogging and dryness/moist alternations on seed germination of halophyte and xerophyte
Salt glands and bladders unknown
Photosynthesis Pathway C3Akhani, H. and M. Ghasemkhani (2007) Diversity of photosynthetic organs in Chenopodiaceae from Golestan National Park (NE Iran) based on carbon isotope composition and anatomy of leaves and cotyledons
Molecular data
  • Photosynthetic pigmentsLi, Y., S. R. Zhang, J. Song, C. X. Wu, C. Y. Tian and G. Feng (2008) Chlorophyll in desiccated seeds of a euhalophyte, Suaeda physophora, and its significancy in plant adaptation to salinity during germination
Previously was: empty
Microbial interactions and mycorrhizal status YesYang, X., H. Q. Yu, T. Zhang, J. X. Guo and X. Zhang (2016) Arbuscular Mycorrhizal Fungi Improve the Antioxidative Response and the Seed Production of Suaedoideae Species Suaeda physophora Pall under Salt StressZhao, S., L. Li, S. H. Li, H. F. Wang, W. N. Hozzein, Y. G. Zhang, M. A. M. Wadaan, W. J. Li and C. Y. Tian (2015) Actinotalea suaedae sp nov., isolated from the halophyte Suaeda physophora in Xinjiang, Northwest China
Bioremediation unknown
antioxidants
  • AntioxidantsYang, X., H. Q. Yu, T. Zhang, J. X. Guo and X. Zhang (2016) Arbuscular Mycorrhizal Fungi Improve the Antioxidative Response and the Seed Production of Suaedoideae Species Suaeda physophora Pall under Salt Stress
  • Antioxidant enzymesYang, X., H. Q. Yu, T. Zhang, J. X. Guo and X. Zhang (2016) Arbuscular Mycorrhizal Fungi Improve the Antioxidative Response and the Seed Production of Suaedoideae Species Suaeda physophora Pall under Salt Stress
Secondary Metabolites
Compatible Solutes
  • ProlineSong, J., Feng, G., Tian, C-Y., Zhang, F-S. (2006) Osmotic adjustment traits of Suaeda physophora, Haloxylon ammodendron and Haloxylon persicum in field or controlled conditions
Habitat
  • E6.2 Continental inland salt steppesZhao, S., L. Li, S. H. Li, H. F. Wang, W. N. Hozzein, Y. G. Zhang, M. A. M. Wadaan, W. J. Li and C. Y. Tian (2015) Actinotalea suaedae sp nov., isolated from the halophyte Suaeda physophora in Xinjiang, Northwest ChinaZhou, J. C., W. W. Zhao, C. H. Yin, J. Song, B. S. Wang, J. L. Fan and G. Feng (2014) The role of cotyledons in the establishment of Suaeda physophora seedlings
Economic use
Distribution
Distribution map provided by GBIF | Global Biodiversity Information Facility
Distribution (text)
  • (N448130–220; E878400–540) in the Xinjiang Province of northwest ChinaZhou, J. C., W. W. Zhao, C. H. Yin, J. Song, B. S. Wang, J. L. Fan and G. Feng (2014) The role of cotyledons in the establishment of Suaeda physophora seedlings
  • (44170N, 87550E) near the Fukang Field Research Station of the Chinese Academy of Sciences, in Xinjiang province, northwest ChinaZhao, S., L. Li, S. H. Li, H. F. Wang, W. N. Hozzein, Y. G. Zhang, M. A. M. Wadaan, W. J. Li and C. Y. Tian (2015) Actinotalea suaedae sp nov., isolated from the halophyte Suaeda physophora in Xinjiang, Northwest China
  • (N4413#–22#; E8740#–54#) in Xinjiang, the northwest province of ChinaZhang, S., Song, J., Wang, H., Feng, G.  (2010) Effect of salinity on seed germination, ion content and photosynthesis of cotyledons in halophytes or xerophyte growing in Central Asia
  • AralkumDimeyeva, L. A., S.-W. Breckle and W. Wucherer (2012) Flora of the Aralkum
  • Golestan National Park (NE Iran) Akhani, H. and M. Ghasemkhani (2007) Diversity of photosynthetic organs in Chenopodiaceae from Golestan National Park (NE Iran) based on carbon isotope composition and anatomy of leaves and cotyledons
Previously was:
  • (N448130–220; E878400–540) in the Xinjiang Province of northwest ChinaZhou, J. C., W. W. Zhao, C. H. Yin, J. Song, B. S. Wang, J. L. Fan and G. Feng (2014) The role of cotyledons in the establishment of Suaeda physophora seedlings
  • (44170N, 87550E) near the Fukang Field Research Station of the Chinese Academy of Sciences, in Xinjiang province, northwest ChinaZhao, S., L. Li, S. H. Li, H. F. Wang, W. N. Hozzein, Y. G. Zhang, M. A. M. Wadaan, W. J. Li and C. Y. Tian (2015) Actinotalea suaedae sp nov., isolated from the halophyte Suaeda physophora in Xinjiang, Northwest China
  • (N4413#–22#; E8740#–54#) in Xinjiang, the northwest province of ChinaZhang, S., Song, J., Wang, H., Feng, G.  (2010) Effect of salinity on seed germination, ion content and photosynthesis of cotyledons in halophytes or xerophyte growing in Central Asia
  • AralkumDimeyeva, L. A., S.-W. Breckle and W. Wucherer (2012) Flora of the Aralkum
  • Miscellaneous notes Ranked 7 for salt tolerance on a scale of 0-10 (10 highest) by Breckle and Wucherer (2012)Breckle, S.-W. and W. Wucherer (2012) Halophytes and salt desertification in the Aralkum area
    References

    Last Records approved
    Submitted by T J Flowers
    Jun 28th 2022, 10:06 am

    Approved by T J Flowers
    Jun 28th 2022, 10:06 am
    Submitted by T J Flowers
    Jun 28th 2022, 9:43 am

    Approved by T J Flowers
    Jun 28th 2022, 9:43 am
    Submitted by T J Flowers
    Jun 27th 2022, 8:34 pm

    Approved by T J Flowers
    Jun 27th 2022, 8:34 pm
    Submitted by T J Flowers
    Jun 27th 2022, 8:30 pm

    Approved by T J Flowers
    Jun 27th 2022, 8:30 pm
    Submitted by T J Flowers
    Jun 27th 2022, 8:21 pm

    Approved by T J Flowers
    Jun 27th 2022, 8:21 pm
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