E. N. Terebova, E. Markovskaya, V. Androsova, M. A. Pavlova, N. V. Oreshnikova
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The ion-exchange capacity of the plant cell wall for P. maritima and T. maritima was established as follows correspondingly: 3570–3700 and 2710–3070 μmol g-1 dry cell weight per leaf; 2310–2350 and 1160–1250 μmol g-1 dry cell weight per root.","PeriodicalId":37981,"journal":{"name":"Czech Polar Reports","volume":"1 1","pages":""},"PeriodicalIF":0.5000,"publicationDate":"2020-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Cell wall functional activity and metal accumulation of halophytic plant species Plantago maritima and Triglochin maritima on the White Sea littoral zone (NW Russia)\",\"authors\":\"E. N. Terebova, E. Markovskaya, V. Androsova, M. A. Pavlova, N. V. 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引用次数: 3
摘要
本研究补充了白海西海岸潮带盐生植物车前草(Plantago maritima)和海Triglochin maritima的离子交换能力、植物细胞壁膨胀能力(弹性)以及重金属积累的相关知识。沿海地区的沿海土壤为沙质或岩质土壤,中、微含盐,有机质、锰、锌、镍、铅含量较低。所研究的土壤被认为未受重金属污染,因为它们含有背景量的铁和铜。海水受Fe (3.8 MPC)和Ni (55 MPC)污染严重,Zn和Cu含量较低,Pb和Mn的本底水平较低。沿海优势植物海苔和海苔具有富集金属的特点,这体现在整个植物对金属的生物吸收系数。P. maritima的金属富集序列为Cu (3.29)> Zn (2.81)> Ni (1.57)> Pb (1.30)> Mn (1.21)> Fe (0.97), T. maritima的金属富集序列为Ni (3.80)> Fe (2.08)> Cu (1.91)> Zn (1.84)> Pb (1.51)> Mn(1.31)。根积累的Ni、Cu、Zn、Pb和Mn占植株总金属含量的50 ~ 70%,叶和茎积累的Ni、Cu、Zn、Pb和Mn占植株总金属含量的30 ~ 50%。铁主要分布在根系(80%)。测定了海参和海参细胞壁的离子交换容量分别为3570 ~ 3700 μmol g-1和2710 ~ 3070 μmol g-1;每根干细胞重分别为2310 ~ 2350和1160 ~ 1250 μmol g-1。
Cell wall functional activity and metal accumulation of halophytic plant species Plantago maritima and Triglochin maritima on the White Sea littoral zone (NW Russia)
The presented study supplements the knowledge on ion-exchange capacity, swelling capacity (elasticity) of the plant cell wall, and the accumulation of heavy metals in halophytic species Plantago maritima and Triglochin maritima in the tidal zone of the White Sea western coast. The littoral soils of the coastal territories are sandy or rocky-sandy, medium and slightly saline with poor content of organic substances, Mn, Zn, Ni, and Pb. Studied soils are considered as uncontaminated by heavy metals because they contain background amounts of Fe and Cu. Sea water is significantly polluted by Fe (3.8 MPC) and Ni (55 MPC), has poor content of Zn and Cu and background level of Pb and Mn. The coastal dominant plant species P. maritima and T. maritima were characterized by intensive metals accumulation which was reflected in the coefficient of biological absorption (CBA) of metal by a whole plant. For P. maritima the following metal accumulation series was obtained: Cu (3.29)> Zn (2.81)> Ni (1.57)> Pb (1.30)> Mn (1.21)> Fe (0.97), and for T. maritima: Ni (3.80)> Fe (2.08)> Cu (1.91)> Zn (1.84)> Pb (1.51)> Mn (1.31). Roots accumulated 50–70% of Ni, Cu, Zn, Pb and Mn of the total metal content in the plant while leaves and stems contained 30–50%. Fe was allocated mainly in the roots (80%). The ion-exchange capacity of the plant cell wall for P. maritima and T. maritima was established as follows correspondingly: 3570–3700 and 2710–3070 μmol g-1 dry cell weight per leaf; 2310–2350 and 1160–1250 μmol g-1 dry cell weight per root.
Czech Polar ReportsAgricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.30
自引率
10.00%
发文量
22
期刊介绍:
Czech Polar Reports is an international, multidisciplinary, peer-reviewed journal. It is issued 2 times a year. The journal is dedicated to provide original research papers for sciences related to the polar regions and other planets with polar analogues. Czech Polar Reports covers the disciplines listed below. polar paleontology, geology, geochemistry, geomorphology, glaciology, climatology, hydrology, pedology, biochemistry, ecology, environmental science, microbiology, plant and animal biology including marine biology.