东北林业大学学报
東北林業大學學報
동북임업대학학보
JOURNAL OF NORTHEAST FORESTRY UNIVERSITY
2010年
2期
30-32
,共3页
王利民%陈金林%陈菲然%梁珍海%薛丹%赵好
王利民%陳金林%陳菲然%樑珍海%薛丹%趙好
왕이민%진금림%진비연%량진해%설단%조호
盐胁迫%滨梅%根际%X-射线电子探针%大量元素%微量元素
鹽脅迫%濱梅%根際%X-射線電子探針%大量元素%微量元素
염협박%빈매%근제%X-사선전자탐침%대량원소%미량원소
Salt stress%Prunus maritima%Rhizosphere%X-ray electron probe%Macroelements%Microelements
运用X-射线电子探针研究不同质量浓度的盐处理对滨梅(Prunus maritima)根际和根内营养元素相对质量分数及其分布的影响,揭示根-土界面微域养分的吸收、累积与亏缺状况,为植物耐盐机理和盐土改良利用提供依据.结果表明:在根际0~100μm范围内,9g/L处理的Na、Mg、Ca、Zn均呈明显亏缺状况, K、Cl亏缺不明显,而 Fe则出现明显累积.随NaCl处理质量浓度的增加,Na、Mg吸收量增多,而Cl、Ca、Fe则呈先升后降趋势,表明一定质量浓度盐分下滨梅吸收Cl、Ca等元素较多,植物长势较好,但质量浓度过高则吸收Na、Mg较多,不仅影响细胞的扩张性能,而且造成生理缺水,引起植物伤害.因此,Na、Mg吸收累积可能是引起植物盐害的主要原因.
運用X-射線電子探針研究不同質量濃度的鹽處理對濱梅(Prunus maritima)根際和根內營養元素相對質量分數及其分佈的影響,揭示根-土界麵微域養分的吸收、纍積與虧缺狀況,為植物耐鹽機理和鹽土改良利用提供依據.結果錶明:在根際0~100μm範圍內,9g/L處理的Na、Mg、Ca、Zn均呈明顯虧缺狀況, K、Cl虧缺不明顯,而 Fe則齣現明顯纍積.隨NaCl處理質量濃度的增加,Na、Mg吸收量增多,而Cl、Ca、Fe則呈先升後降趨勢,錶明一定質量濃度鹽分下濱梅吸收Cl、Ca等元素較多,植物長勢較好,但質量濃度過高則吸收Na、Mg較多,不僅影響細胞的擴張性能,而且造成生理缺水,引起植物傷害.因此,Na、Mg吸收纍積可能是引起植物鹽害的主要原因.
운용X-사선전자탐침연구불동질량농도적염처리대빈매(Prunus maritima)근제화근내영양원소상대질량분수급기분포적영향,게시근-토계면미역양분적흡수、루적여우결상황,위식물내염궤리화염토개량이용제공의거.결과표명:재근제0~100μm범위내,9g/L처리적Na、Mg、Ca、Zn균정명현우결상황, K、Cl우결불명현,이 Fe칙출현명현루적.수NaCl처리질량농도적증가,Na、Mg흡수량증다,이Cl、Ca、Fe칙정선승후강추세,표명일정질량농도염분하빈매흡수Cl、Ca등원소교다,식물장세교호,단질량농도과고칙흡수Na、Mg교다,불부영향세포적확장성능,이차조성생리결수,인기식물상해.인차,Na、Mg흡수루적가능시인기식물염해적주요원인.
X-ray electron probe was used to study the effect of treatments with different concentrations of NaCl on the distribution and relative content of nutrient elements in both rhizosphere and root tissue of Prunus maritima, aimed to study the absorption, accumulation and deficit of nutrients in the root-soil interface, and to provide a basis for the salt tolerance mechanism of plants and the improvement and utilization of solonchak. Results indicated that obvious deficit of Na, Mg, Ca, and Zn and not obvious deficit of K and Cl occurred at 1~100μm, but obvious accumulation of Fe was found under the treatment of 9g/L NaCl. Moreover, contents of Na and Mg in the root increased with the increment of NaCl concentration, whereas those of Cl, Ca, Fe firstly increased and then decreased, suggesting that P. maritima seedlings absorbed much Cl, Ca under the treatment with moderate concentration of NaCl and grew well, but the seedlings absorbed and accumulated much Na and Mg under the treatment with high concentration of NaCl, which inhibited cell elongation and resulted in water deficit, thereby caused injury to plants. Therefore, absorption and accumulation of Na and Mg might be the main reason for causing salt injury to plants.