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首页> 外文期刊>Plant and Soil >Variation in grain yield, and nitrogen, phosphorus and potassium nutrition of irrigated rice cultivars grown at fertile and low-fertile soils
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Variation in grain yield, and nitrogen, phosphorus and potassium nutrition of irrigated rice cultivars grown at fertile and low-fertile soils

机译:在肥沃和低肥沃的土壤中生长的籽粒产量和氮,磷和钾营养的变化

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Background and aimsRice cultivars bred for fertile soils may not be the best suited to nutrient limited environments. Therefore, rice cultivars suited to sustain productivity in low-fertile soils and their adaptive mechanisms for success need to be identified.MethodsField experiments were conducted in fertile and low-fertile sites for two and five seasons, respectively, using forty four widely grown rice cultivars in Sri Lanka. Growth and tissue nitrogen (N), phosphorus (P) and potassium (K) concentrations were measured.Key resultsPlant biomass and shoot- N, P and K contents were reduced by 41, 54, 74 and 36% under low soil fertility, respectively, while crop duration was extended by 12days. Relationships between grain dry weight (DW- g plant(-1)) of a cultivar, and seed N, P and K concentrations were negative (P&0.05) at the fertile site, and this was true only for N at the low-fertile site. Seed- P and K concentrations at the low-fertile site reached to minimum and stable concentrations (1.45 and 1.61mgg(-1), respectively). Irrespective of the soil fertility status, grain DW of rice cultivars was positively correlated with shoot N, P and K contents (mg plant(-1)) and their accumulation rates (mg plant(-1)day(-1)). Moreover, grain DW of a rice cultivar at the low-fertile site could be explained by shoot P content, seed P concentration and P-harvest index through regression (R-2=0.74, significant at P&0.05). Cultivars; Bw451, Bg379-2, H4, At362, Ld408, Bg454, Bw400, At353, Bg380, At402, Bw452, Ld365, and Bw453 had higher grain DW than other cultivars at the low-fertile site.ConclusionRice cultivars with higher capacity to accumulate N, P and K (mg plant(-1)day(-1)), and longer crop duration ensured higher grain DW while seed P and K concentrations are not good indicators to select promising rice cultivars to low-fertile soils with severe P limitation.
机译:用于肥沃的土壤的背景和Aimsrice品种可能不是最适合营养有限环境的背景。因此,适于维持低肥沃土壤生产率的水稻品种及其在两种季节的肥沃和低肥沃地点进行了两种苗条的肥沃和低肥沃地点进行了两种生长的水稻品种在斯里兰卡。测定生长和组织氮(n),磷(p)和钾浓度。在低土壤肥力下,在41%,54,74和36%下,细胞植物生物质和芽面分别降低了41,54,74%,P和K含量,虽然作物持续时间延长了12天。在栽培品种和种子n,p和k浓度的谷粒干重(dw-g植物(-1))之间的关系是阴性遗址的阴性(p& 0.05),但这是真的低肥沃的遗址。低肥华位点的种子P和K浓度达到最小且稳定的浓度(1.45和1.61mg(-1))。无论土壤肥力状态如何,水稻品种谷物DW与芽N,P和K含量呈正相关(Mg植物(-1))及其积累率(Mg植物(-1)天(-1))。此外,低肥力位点的水稻品种谷物DW可以通过回归(R-2 = 0.74,在P& 0.05)中射击P含量,种子P浓度和P-HARFORE指数来解释水稻品种。品种; BW451,BG379-2,H4,AT362,LD408,BG454,BW400,AT353,BG380,AT402,BW452,LD365和BW453具有比低肥沃位点的其他品种更高的谷物DW。包括较高容量的品种累积n ,P和K(mg植物(-1)天(-1)),较长的作物持续时间确保较高的谷物DW,而种子p和k浓度不是良好的指标,为具有严重P限制的低肥沃土壤选择有前途的水稻品种。

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