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Dry Matter Partitioning and Harvest Index Differ in Rice Genotypes with Variable Rates of Phosphorus and Zinc Nutrition 被引量:7
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作者 Amanullah Inamullah 《Rice science》 SCIE CSCD 2016年第2期78-87,共10页
Phosphorus (P) and zinc (Zn) deficiencies are the major problems that decrease crop productivity under rice-wheat cropping system. Field experiments were conducted to investigate impacts of P (0, 40, 80 and 120 k... Phosphorus (P) and zinc (Zn) deficiencies are the major problems that decrease crop productivity under rice-wheat cropping system. Field experiments were conducted to investigate impacts of P (0, 40, 80 and 120 kg/hm^2) and Zn levels (0, 5, 10 and 15 kg/hm^2) on dry matter (DM) accumulation and partitioning, and harvest index of three rice genotypes 'fine (Bamati-385) vs. coarse (F-Malakand and Pukhraj)' at various growth stages (tiliering, heading and physiological maturity). The experiments were conducted at farmers' field at Batkhela in Northwestern Pakistan for two years in summer 2011 and 2012. The two year pooled data reveled that there were no differences in percent of DM partitioning into leaves and culms with application of different P and Zn levels, and genotypes at tillering. The highest P level (120 kg/hm^2) partitioned more DM into panicles than leaves and culms at heading and physiological maturity stages. The highest Zn level (15 kg/hm^2) accumulated more DM and partitioned more DM into panicles than leaves and culms at heading and physiological maturity stages. The hybrid rice (Pukhraj) produced and partitioned more DM into panicles than F-Malakand and Bamati-385 at heading and physiological maturity stages. Higher DM accumulation and greater amounts of partitioning into panicles at heading and physiological maturity stages was noticed with increase in P and Zn levels, and the increase was significantly higher in the coarse rice genotypes than fine. We concluded that the growing hybrid rice with application of 120 kg/hm^2 P + 15 kg/hm^2 Zn not only increases total DM accumulation and partitioned greater amounts into the reproductive plant parts (panicles) but also results in higher harvest index. 展开更多
关键词 dry matter partitioning growth stage harvest index phosphorus level RICE zinc level
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Response of Green Gram(Vigna Radiata(L.))Wilczek to Inter Row Spacing and Phosphorus under Semi-arid Conditions of Eritrea
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作者 N.N.Angiras Mebrahtom Tesfazghi Selam Abraham 《Journal of Botanical Research》 2021年第1期16-22,共7页
Green gram(Vigna radiata(L.)wilczek,)commonly known as moong or mung bean or golden gram was introduced to Eritrea as a pulse crop by Ministry of Agriculture at its National Agricultural Research Institute(NARI)in col... Green gram(Vigna radiata(L.)wilczek,)commonly known as moong or mung bean or golden gram was introduced to Eritrea as a pulse crop by Ministry of Agriculture at its National Agricultural Research Institute(NARI)in collaboration with Association for Strengthening Agricultural Research in Eastern and Central Africa(ASARECA)in 2012.But its agronomic practices for semi-arid conditions of Eritrea are not yet standardised.Therefore,to find the optimum inter row spacing and phosphorus dose for its higher productivity,a field experiment was conducted at the experimental farm of Hamelmalo Agricultural College,Keren,Eritrea during summer 2015 and 2016.The experiment was conducted in randomised complete block design(RCBD)with 12 treatment combinations of two factors consisting of four inter row spacing(Broadcast,18 cm,30 cm,and 45 cm)and three phosphorus levels(0,20 and 40 kg P2O5 ha^(-1))each replicated thrice.The results of the study revealed that sowing of K-26 bold seeded variety either by broadcast method or at 18 cm inter row spacing at10 cm plant to plant spacing fertilized with 40 kg P2O5 ha-1 through DAP fertilizer drilled at the time of sowing proved significantly superior to increase growth,yield attributes and seed yield of green gram. 展开更多
关键词 Green gram phosphorus level Row spacing NODULATION Weed count Seed yield
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