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Grain yield responses of lowland rice varieties to increased amount of nitrogen fertilizer under tropical highland conditions in central Kenya

机译:肯尼亚中心热带高地条件下低地水稻品种对氮肥量增加的粮食产量响应

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Tropical highland conditions in Mwea Kenya, ensure the high radiation and the large day–night temperature differences. Such conditions are generally believed to promote rice growth and yield, but the current grain yield is lower than the expectation. In the current standard N fertilizer practice in Mwea, 75?kg nitrogen (N) ha~(?1) is applied in three splits at fixed timing. The effects of increases in N fertilizer amount (125, 175, and 225?kg?N?ha~(?1)) on rice growth and yield were evaluated to test the hypothesis that unachieved high rice grain yield in Mwea is due to insufficient amount of N fertilizer. Two popular lowland varieties in Mwea (Basmati 370 and BW196) and two varieties reported as high yielding in other countries (Takanari and IR72) were used. Shoot dry weight (DW) increased with increases in the amount of N fertilizer applied in three splits at fixed timing, irrespective of variety. It reached approximately 20?t?ha~(?1) under increased N conditions (>75?kg?N?ha~(?1)) in several cases, indicating that high biomass production could be achieved by increasing N application rate. However, the increased biomass did not increase grain yield, due to decreased grain filling under high N conditions in all varieties. Thus, N amounts above 75?kg?ha~(?1) were ineffective for increasing grain yields in Mwea, where N fertilizer was applied in three splits at fixed timing. Increasing influence of low temperature under high N conditions may be one of the reasons for the decreased grain filling in Mwea.
机译:MWEA肯尼亚的热带高地条件,确保高辐射和大的日夜温度差异。通常据信这种病症促进水稻生长和产量,但目前的籽粒产量低于预期。在目前在MWEA的标准N肥料实践中,在固定时刻的三个分裂中施加75μl钾肥施肥。对水稻生长和产量增加了N肥料量(125,175和225 kg?kg?kg?kg?kg?kg?kg?n?1)的影响,以测试MWEA未提升的高水稻产量的假设是由于不足N肥料量。使用了MWEA(Basmati 370和BW196)中的两个受欢迎的低地品种和其他国家的高产(Takanari和Ir72)的两种品种。射击干重(DW)随着在固定时序的三个分裂中施加的N肥的增加而增加,无论多样化如何。在几种情况下,它达到大约20℃(>75Ω·kg?n?ha〜(?1)),表明可以通过增加n施用率来实现高生物量产生。然而,由于所有品种的高N条件下的谷物填充下降,增加的生物质未增加谷物产量。因此,高于75℃的N量kg?Ha〜(β1)对于增加MWEA的谷物产量是无效的,其中N肥在固定时序的三个分裂中施加。在高N条件下的低温影响增加可能是麦田籽粒灌注减少的原因之一。

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