期刊文献+

磷、砷双重胁迫对不同耐低磷水稻苗期生长及磷、砷吸收的影响 被引量:9

Effect of P and As Couple Stress on Growth,and P and As Absorption of Different P-tolerant Rice Seedlings
下载PDF
导出
摘要 以1个耐低磷和1个低磷敏感水稻为材料,通过土培试验研究磷、砷双重胁迫对水稻苗期生物学特性及磷、砷吸收的影响,并比较不同品种之间的差异.结果表明,相同磷水平下,外加砷浓度为小于25mg/kg时,水稻的生物量、叶宽、株高、SPAD值及磷吸收量均随砷浓度的增加而增加,当砷浓度达到50mg/kg时开始下降,两个品种表现相同趋势.说明少量砷可以刺激水稻生长,促进磷的吸收,砷用量过多则抑制水稻的生长及磷的吸收.相同砷水平下,水稻生物学性状及磷、砷吸收量随磷用量的增加而增加,两个品种亦表现相同趋势.说明适当施磷肥可以缓解砷对水稻生长的抑制作用.上述结果表明,低浓度的磷、砷具有协同效应,高浓度的磷、砷表现拮抗作用.此外,相同磷、砷水平下,供试耐低磷水稻的生物学性状及其相对值较低磷敏感水稻大;但相对磷吸收量(除磷处理为150mg/kg外)比低磷敏感水稻小,而砷吸收量及其相对值均比低磷敏感水稻多,这可能与二者的磷营养特性及水稻对磷和砷的竞争吸收有关. One low-P tolerant rice genotype and one low-P sensitive rice genotype were used to study the effect of P and A couple stress on their growth,and P and As absorption of their seedlings planted in soil.The results showed that at the sam P level,the biomass,leaf width,plant height,SPAD value and total P of the rice genotypes increased with As concentratio ranging from 0 mg/kg to 25 mg/kg,and then decreased with As concentration increasing to 50 mg/kg.The two rice genotypes showed the same tendency, which means meant that a small quantity of As might stimulate rice growth and absorb more P, while 50 mg/kg As would start to suppress rice growth and P absorption. At the same As level, the biological characters and P and As absorptions of the rice genotypes increased along with increasing of P supply. So proper P supply might alleviate the inhibition of rice by As. These indicated that the low levels of As and P displayed synergistic effect, while high levels of those displayed antagonism effect. Moreover, At the same P and As levels, the biomass, leaf width, plant height and SPAD value of the low-P tolerant rice genotype and their relative values were larger than those of low-P sensitive rice genotype, but the low-P tolerant rice genotype also absorbed more As than the low-P sensitive rice genotype, indicating that the uptake capability of rice to As might be related to its P nutrient character and its competitive absorption between P and As. Fig 7, Tab 1, Ref 19
出处 《应用与环境生物学报》 CAS CSCD 北大核心 2009年第5期596-601,共6页 Chinese Journal of Applied and Environmental Biology
基金 国家自然科学基金项目(No.40701076)资助~~
关键词 水稻 生物学性状 P As rice biological character
  • 相关文献

参考文献7

二级参考文献110

  • 1Tongbin Chen,Chaoyang Wei,Zechun Huang,Qifei Huang,Quanguo Lu,Zilian Fan.Arsenic hyperaccumulator Pteris Vittata L. and its arsenic accumulation[J].Chinese Science Bulletin,2002,47(11):902-905. 被引量:109
  • 2仙玲玲,杨磊.生物体抗砷机制的研究进展[J].中国地方病学杂志,2004,23(1):92-93. 被引量:91
  • 3韦东甫,华珞,白玲玉,师俊奇.土壤对砷的缓冲性与砷的生物效应及形态分布[J].土壤,1996,28(2):94-97. 被引量:14
  • 4谢正苗 黄昌勇.不同价态砷在不同母质土壤中的形态转化及其与土壤性质的关系[J].农业环境保护,1988,7(5).
  • 5Marschner H. Mineral Nutrition in Higher Plants. London: Academic Press, 1995.
  • 6Silva A E, Gabelman W H, Coors J G. Inheritance study of low phosphorus tolerance in maize (Zea mays L. ) grown in a sand-alumina culture solution. Plant and Soil, 1992, 146:189 - 197.
  • 7Ni J J, Wu P, Lou A C, Tao O N. Rice seedling tolerance to phosphorus stress in solution culture and soil. Nutrient Cycling in Agroecosystems, 1998, 51 : 95 - 99.
  • 8Gerloff G C. Intact-plant screening for tolerance of nutrient-deflciency stress. Plant and Soil, 1987, 99:3 - 16.
  • 9Gourley J P, Allan D L, Russelle M P. Plant nutrient efficiency: A comparison of definitions and suggested improvement. Plant and Soil, 1994, 158: 29- 37.
  • 10Chaubey C N, Senadhira D, Gregorio G B. Genetic analysis of tolerance for phosphorous deficiency in rice ( Oryza sativa L ). Theor Appl Genet, 1994, 89:313 - 317.

共引文献242

同被引文献192

引证文献9

二级引证文献44

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部