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首页> 外文期刊>Soil Science and Plant Nutrition >Effects of slag silicate fertilizer on silicon content of rice plants grown in paddy fields on the Shounai Plain, Yamagata, Japan.
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Effects of slag silicate fertilizer on silicon content of rice plants grown in paddy fields on the Shounai Plain, Yamagata, Japan.

机译:硅酸盐矿渣肥料对日本山形县寿内平原水田稻谷中硅含量的影响。

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摘要

Slag silicate fertilizer (SSF) is applied to paddy fields with different soil chemical properties to increase silicon (Si) concentration in rice ( Oryza sativa L.) plants. However, the effects of soil chemical properties on Si availability of SSF to rice Si uptake is poorly understood. To investigate the relationships between chemical properties of soils and the effects of SSF application on the Si concentration in rice plants, a field experiment was conducted in 2007 and 2008 at 18 paddy fields on the Shounai Plain, Yamagata, Japan. Two treatments were implemented: SSF applied at 1.5 t ha -1 and a no-SSF control. The Si concentrations of rice tissues were measured at the tillering and ripening stages. The difference in the Si concentrations of rice tissues between treatments (DeltaSi concentration) was used to evaluate the effect of SSF. The Si concentrations in the shoots and aboveground parts of the rice plants were significantly increased by the SSF application in six or more of the fields at the two growth stages, whereas the Si concentrations in the panicles of the rice plants at the ripening stage were not increased significantly in most fields. Results of two-way analysis of variance evidenced a significant effect of field on the DeltaSi concentrations in the shoots and aboveground parts at both growth stages. Furthermore, the DeltaSi concentrations in the same rice plant tissues and at the same growth stages in the first year and in the second year were found to be positively correlated. These results indicate that the effect of SSF on the Si concentration in shoots and aboveground parts of rice plants varies from field to field. The DeltaSi concentrations in shoots and aboveground plant parts at both growth stages were also found to be negatively correlated with soil chemical properties, i.e., available Si, Si adsorption capacity, contents of Si adsorbents (acid oxalate-extractable iron and manganese) and the pH under flooded soil conditions. These findings imply that those soil chemical properties of paddy fields should be taken into account for better prediction of DeltaSi concentration of rice plants.
机译:硅酸盐矿渣肥料(SSF)用于具有不同土壤化学性质的稻田,以提高水稻(Oryza sativa L.)植物中的硅(Si)浓度。然而,人们对土壤化学性质对水稻吸收硅中SSF的Si有效性的影响了解甚少。为了研究土壤化学性质与SSF施用对水稻中Si含量的影响之间的关系,于2007年和2008年在日本山形县寿内平原的18个稻田进行了田间试验。实施了两种处理:以1.5 t ha -1施用SSF和无SSF对照。在分ing和成熟阶段测量稻米组织中的硅浓度。处理之间水稻组织中硅浓度的差异(DeltaSi浓度)用于评估SSF的效果。在两个生育阶段,在六个或以上的田间,通过SSF施用,水稻植株的地上部分和地上部分的Si浓度显着增加,而在成熟阶段,穗部中的穗部中的Si浓度却没有增加在大多数领域都显着增加。双向方差分析的结果表明,在两个生长阶段,田间都对芽和地上部分中DeltaSi浓度产生显着影响。此外,发现第一年和第二年相同水稻植物组织中和处于相同生长阶段的DeltaSi浓度呈正相关。这些结果表明,SSF对水稻的芽和地上部分中Si浓度的影响随田间不同而不同。还发现在两个生长期的芽和地上植物部分中的DeltaSi浓度与土壤化学性质呈负相关,即可用的Si,Si吸附容量,Si吸附剂(草酸可萃取的铁和锰)含量和pH值在水淹的土壤条件下。这些发现暗示,应更好地预测稻田中那些土壤化学特性,以更好地预测稻米中DeltaSi的浓度。

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