Author
Listed:
- S. Z. Xin
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- Y. J. Song
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- C. Lv
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- Y. K. Rui
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- F. S. Zhang
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- W. Xu
(Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China P. R.)
- D. Wu
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- S. Wu
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- J. Zhong
(Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China P. R.)
- D. L. Chen
(Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, China P. R.)
- Q. Chen
(Key Laboratory of Plant Nutrition, MOA, Key Laboratory of Plant-Soil Interactions, MOE, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China P. R.)
- F. T. Peng
(College of Horticulture Science and Engineering of Shandong Agricultural University, Taian, China P. R.)
Abstract
Consumption of vegetables is one of the most important ways of providing the body with mineral elements. However, it is not clear how mineral elements are distributed in different organs of vegetables, especially vegetables grown in greenhouses. The distribution of mineral elements in the root and leaves of greenhouse spinach was determined using synchrotron radiation XRF, the results indicated that the amount of various elements in different parts of the leaves, roots and stems were inequable. Generally, the content of the elements in the root base were slightly higher than in the other parts. The amounts in the root apices were much lower than those in the other parts while the amount of every element decreased gradually from the root base to the root apices. In stems, the amount of K, Ca, Fe, Ni, and Zn were higher in the base of the stem than in the top of stem while the amounts of Co and Cu were higher in the top of the stem than in the base of stem. From all the elements detected in the stem, Mn was at the lowest concentration. In leaves, Co and Zn were primarily accumulated around the main veins and the amount of Mn in the tip of the leaf was higher than in the other parts. In contrast, K, Ca, Ni, and Cu were higher in the center of the leaf.
Suggested Citation
S. Z. Xin & Y. J. Song & C. Lv & Y. K. Rui & F. S. Zhang & W. Xu & D. Wu & S. Wu & J. Zhong & D. L. Chen & Q. Chen & F. T. Peng, 2009.
"Application of synchrotron radiation X-ray fluorescence to investigate the distribution of mineral elements in different organs of greenhouse spinach,"
Horticultural Science, Czech Academy of Agricultural Sciences, vol. 36(4), pages 133-139.
Handle:
RePEc:caa:jnlhor:v:36:y:2009:i:4:id:18-2009-hortsci
DOI: 10.17221/18/2009-HORTSCI
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