首页> 外文期刊>Tropical Agriculture and Development >Absorption and distribution of Na+ and some ions in seedlings of Metroxylon vitiense H. Wendl. ex Benth. & Hook. f. under salt stress.
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Absorption and distribution of Na+ and some ions in seedlings of Metroxylon vitiense H. Wendl. ex Benth. & Hook. f. under salt stress.

机译:Nax和一些离子在Metroxylon vitiense H. Wendl幼苗中的吸收和分布。前Benth。和钩。 F。在盐胁迫下。

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摘要

Na+, K+, Ca2+, Mg2+ and Cl- concentrations in different plant parts and some physiological characteristics under NaCl treatment in solution culture were determined to investigate the salt resistance of Metroxylon vitiense (H. Wendl.) H. Wendl. ex Benth. & Hook. f. that belongs to the same genus as sago palm (M. sagu Rottb.). Seedlings at the 11th to 13th leaf stages were used for the treatment of 342 mM (2%) NaCl for 31 days in a phytotron at 30 degrees C and 75% relative humidity under natural sunlight in mid-summer in central Japan. The Na+ and Cl- concentrations increased in the roots, petioles and leaflets with the NaCl treatment, while, the K+ concentration did not change in the top parts. The Ca2+ and Mg2+ concentrations increased in the leaflets, especially at lower and higher leaf positions, respectively. Leaf emergence and dry matter weight of the top parts were not affected by the NaCl treatment, whereas the transpiration rate decreased. It was, therefore, considered that salt avoidance to maintain the water status in the leaves by restricting the transpiration is important for the salt resistance of M. vitiense. The changes in the Ca2+ concentration can be considered to play a role in adequate absorption of K+, which would enable the plant to maintain osmotic adjustment in the leaflets.
机译:测定溶液培养中不同植物部位的Na +,K +,Ca 2+,Mg2 +和Cl-的浓度以及在NaCl处理下的某些生理特性,以研究甲硝唑(H. Wendl。)H。Wendl的耐盐性。前Benth。和钩。 F。与西米(M. sagu Rottb。)属于同一属。在日本中部仲夏,在自然光下,在30摄氏度和75%相对湿度的光电子加速器中,使用第11至13叶期的幼苗在342 mM(2%)NaCl中处理31天。 NaCl处理后,根,叶柄和小叶中的Na +和Cl-浓度增加,而顶部的K +浓度不变。小叶中的Ca2 +和Mg2 +浓度增加,尤其是在较低和较高叶片位置处。 NaCl处理不影响上部叶片的出苗和干物质重量,而蒸腾速率下降。因此,认为通过限制蒸腾来避免盐分来保持叶片中的水分状态对于维氏分枝杆菌的耐盐性很重要。可以认为,Ca 2+浓度的变化在钾的充分吸收中起作用,这将使植物能够维持小叶的渗透调节。

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