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首页> 外文期刊>Journal of the Indian Society of Soil Science >Agronomic Bio-fortification of Zinc in Indigenous, High Yielding and Hybrid Rice (Oryza sativa L.) Cultivars
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Agronomic Bio-fortification of Zinc in Indigenous, High Yielding and Hybrid Rice (Oryza sativa L.) Cultivars

机译:本地,高产和杂交水稻(Oryza sativa L.)品种中锌的农艺生物强化

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Field experiment was conducted to assess the Zn content of rice grain and straw with and without Zn fertilizer application in a red and lateritic soil of Ranchi (Jharkhand). While, the grain yield of hybrid rice was considerably higher as compared tohigh yielding and indigenous rice cultivars, the response to added Zn in rice was not significant. Highest content of Zn (37.1 mg kg1) was recorded in rice grain of indigenous rice cultivars, when Zn was applied @ 100 kg ha-1 of ZnS04.7H20 (soil application) + 3 foliar application of 0.5% ZnS0_4.7FE20. Results suggested that indigenous and high yielding rice cultivars were more suited than hybrids in red and lateritic soil for agronomic bio-fortification. Content of Zn in rice grain of indigenous cultivars was higher (32.1 mg kg') followed by HYV (26.7 mg kg1) and hybrid (24.1 mg kg1) cultivars of rice. Total Zn removal by rice crop was 0.44, 0.65 and 0.63 kg ha1, respectively when indigenous; HYV and hybrid rice cultivars were grown without any addition of Zn. Soil as well as soil + foliar application of Zn increased the Zn uptake by rice more than two times, compared to its non-application. Apparent Zn recovery in rice was low i.e. 1.99, 1.49 and 1.08 per cent only with soil application of 100 kg ha-1 of ZnS04.7H20, respectively by hybrid, HYV and indigenous rice cultivars. This was considerably higher i.e. 4.32% in hybrid, 3.19% in HYV and 2.53% in indigenous rice cultivars, when Zn was added through soil (100 kg ha"1 of ZnS04.7H20) + foliar application of 0.5% ZnS04.7H20.
机译:进行了田间试验,以评估在兰契(贾坎德邦)的红色和红壤性土壤中施用和不施用锌肥的稻谷和稻草中的锌含量。尽管杂交水稻的谷物产量比高产和本地水稻品种高得多,但对水稻中添加锌的响应并不显着。当在100 kg ha-1的ZnS04.7H20(土壤施用)+ 3叶面添加0.5%ZnS0_4.7FE20的情况下施用Zn时,在本地水稻品种的稻米中记录到最高的Zn含量(37.1 mg kg1)。结果表明,在红壤和红壤土中,本地和高产水稻品种比杂交品种更适合农艺生物强化。土著品种的水稻籽粒中锌含量较高(32.1 mg kg'),其次是高YV(26.7 mg kg1)和杂交品种(24.1 mg kg1)。当为土著时,水稻作物的总锌去除量分别为0.44、0.65和0.63 kg ha1。在不添加锌的情况下培育了杂交水稻和杂交水稻品种。与不施用相比,土壤以及土壤+叶面施用Zn可使水稻对Zn的吸收增加两倍以上。仅杂交,高产和本地水稻品种分别在土壤中施用100 kg ha-1的ZnS04.7H20时,水稻的表观锌回收率较低,即1.99%,1.49%和1.08%。当通过土壤(100 kg ha-1的ZnS04.7H20)添加锌+叶面施用0.5%的ZnS04.7H20时,这要高得多,即杂交种为4.32%,HYV为3.19%,本地水稻品种为2.53%。

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