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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Effect of preceding crops and their residues on availability of zinc in a calcareous Zn-deficient soil
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Effect of preceding crops and their residues on availability of zinc in a calcareous Zn-deficient soil

机译:石灰性缺锌土壤中前茬作物及其残留物对锌有效性的影响

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Limited information is available on the effect of preceding crop on phytoavailability of zinc (Zn) in soil. This pot experiment examined the effect of four preceding crops including clover, sunflower, safflower, and sorghum residues on shoot and grain Zn uptake by two wheat genotypes differing in Zn-deficiency tolerance Back Cross and Kavir in a calcareous Zn-deficient soil. Incorporation of all preceding crop residues into the soil significantly increased organic matter (OM) content, dissolved organic C (DOC), and diethylene triamine pentaacetic acid (DTPA) extractable Zn concentration in the soil. Residues of safflower and clover had the greatest effect on increasing DOC. Shoot and grain Zn concentrations were increased by incorporating all pre-crop residues into the soil although this increase was greater at safflower and clover treatments. Incorporation of sorghum residues into the soil had a negative effect on shoot and grain dry matter yield of wheat. Incorporation of safflower and clover residues into the soil increased Zn uptake by wheat shoot and grain. There was a positive significant correlation between shoot and grain Zn concentration with DOC in soil solution. It shows that DOC, produced from decomposition of crop residues, has facilitated Zn uptake by roots of wheat plants and particularly its transfer to grains.
机译:关于先前作物对土壤中锌(Zn)植物有效性的影响的信息有限。该盆栽试验研究了在缺钙的缺锌土壤中,两种对缺锌耐性不同的小麦基因型,包括三叶草,向日葵,红花和高粱残渣在内的四种作物对锌和锌吸收的影响。将所有先前的农作物残留物掺入土壤中会显着增加土壤中有机质(OM)含量,溶解的有机碳(DOC)和二亚乙基三胺五乙酸(DTPA)可提取的锌浓度。红花和三叶草的残留量对增加DOC的影响最大。通过将所有作物前残留物掺入土壤中,可以增加枝条和谷物中锌的浓度,尽管在红花和三叶草处理中,这种增加更大。将高粱残留物掺入土壤对小麦的芽和籽粒干物质产量具有负面影响。将红花和三叶草的残留物掺入土壤可增加小麦芽和谷物对锌的吸收。土壤溶液中的DOC含量与枝条和籽粒锌的含量呈正相关。结果表明,由农作物残余物分解产生的DOC促进了小麦根部对锌的吸收,尤其是其向谷物的转移。

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