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Enrichment of Rice Grains with Zinc through AgronomicBio-fortification

机译:通过农艺学 - 强化用锌富集米粒

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摘要

A field experiment was carried out at instructional-cum-research farm of Assam Agricultural University, Jorhat, Assam to enrich grains of some popular high yielding rice varieties with soil and soil plus foliar application of zinc (Zn). Three different levels of Zn viz., 0, 21 kg ha~(-1) as soil application, and 21 kg ha~(-1)1 as soil application + foliar spray of 0.5% of ZnS04 thrice at heading, flowering and panicle initiation stages were evaluated. Irrespective of varieties, highest mean Zn concentration of 29.3 mg kg~(-1) was observed in rice grain with soil + foliar application of Zn. The mean Zn content varied from 17.6 to 34.2 mg kg~(-1) and it increased from 5.8 to 20.3 per cent over control with soil application and 13.2 to 32.3 per cent with soil + foliar application of Zn. Amongst the varieties, the highest concentration was found in variety Kushal (34.3 mg kg~(-1)) followed by Moniram (33.5 mg kg~(-1)). Variety Kushal also recorded highest Zn uptake (140.9 g ha~(-1)) followed by the variety Ranjit (127.1 g haHowever, in terms of Zn use efficiency and apparent Zn recovery efficiency, varieties Moniram and Ranjit, respectively performed best. Thus, Ranjit recorded the highest Zn accumulation efficiency by grains over other varieties.
机译:在Assam农业大学教学暨研究农场进行了一个田间实验,艾萨姆,阿西姆的富藻,富含土壤和土壤含有土壤和土壤的谷物和裂缝锌(Zn)。三种不同水平的Zn viz。,0,21kg ha〜(-1)作为土壤应用,21kg ha〜(-1)1作为土壤应用+叶面喷洒0.5%的ZnS04 ZnS04三次,开花和穗评估发起阶段。无论品种如何,在水稻粒子中观察到最高平均Zn浓度为29.3mg kg〜(-1),Zn土壤+叶面施用。平均Zn含量从17.6增加到34.2mg kg〜(-1),它从5.8%增加到土壤施用的5.8%至20.3%,13.2%至32.3%,土壤+叶片施用Zn。在品种中,最高浓度在品种kushal(34.3mg kg〜(-1))中发现,然后是moniram(33.5mg kg〜(-1))。品种kushal还记录了最高的zn吸收(140.9 g ha〜(-1)),然后是ranjit(127.1 g hahowever,在zn使用效率和表观zn恢复效率方面,品种moniram和ranjit,分别表现最佳。因此, Ranjit通过其他品种的谷物记录了最高的Zn累积效率。

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