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钙缺乏和铈对菠菜植株生长的影响。

Influences of calcium deficiency and cerium on growth of spinach plants.

作者信息

Chao Liu, Bofu Pan, Weiqian Cao, Yun Lu, Hao Huang, Liang Chen, Xiaoqing Liu, Xiao Wu, Fashui Hong

机构信息

College of Chemistry and Chemical Engineering, Suzhou University, Suzhou, People's Republic of China.

出版信息

Biol Trace Elem Res. 2008 Mar;121(3):266-75. doi: 10.1007/s12011-007-8054-y. Epub 2007 Oct 25.

Abstract

The main aim of the study was to determine the role of cerium in the amelioration of calcium-deficiency effects in spinach plants. Spinach plants were cultivated in Hoagland's solution. They were subjected to calcium-deficiency and to cerium chloride administered in the calcium-present Hoagland's media and calcium-deficient Hoagland's media. Within 3 weeks, young leaves developed distinct calcium-deficient symptoms, and plant growth significantly inhibited to calcium deprivation as would be expected; cerium-treated groups grown in the same conditions did not develop calcium-deficient symptoms; fresh weight, dry weight and chlorophyll content of spinach plants were increased by 35.9, 45 and 64.05% compared to those of plants cultivated in calcium-deficient media. In addition, calcium deprivation in spinach plants caused the reduction of photosynthetic rate, oxygen evolution rate and ribulose-1,5-bisphosphate carboxylase/oxygenase activity. The reduction of activities of nitrate reductase, glutamate dehydrogenase, glutamate synthase and glutamic-pyruvic transaminase was observed under calcium-deficient media. However, cerium treatment under calcium-deficient media could significantly improve photosynthesis and nitrogen metabolism of spinach plants. This is viewed as evidence that cerium added to calcium-deficient media in the spinach plants could substitute for calcium and improve spinach growth.

摘要

该研究的主要目的是确定铈在改善菠菜植株缺钙影响方面的作用。菠菜植株在霍格兰氏溶液中培养。它们分别遭受缺钙处理,并在含有钙的霍格兰氏培养基和缺钙的霍格兰氏培养基中施用氯化铈。在3周内,幼叶出现明显的缺钙症状,并且正如预期的那样,植株生长因缺钙而显著受到抑制;在相同条件下生长的铈处理组未出现缺钙症状;与在缺钙培养基中培养的植株相比,菠菜植株的鲜重、干重和叶绿素含量分别增加了35.9%、45%和64.05%。此外,菠菜植株缺钙导致光合速率、放氧速率和核酮糖-1,5-二磷酸羧化酶/加氧酶活性降低。在缺钙培养基中观察到硝酸还原酶、谷氨酸脱氢酶、谷氨酸合酶和谷丙转氨酶的活性降低。然而,在缺钙培养基中进行铈处理可显著改善菠菜植株的光合作用和氮代谢。这被视为在菠菜植株缺钙培养基中添加铈可以替代钙并促进菠菜生长的证据。

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