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Nitrogen uptake and utilization in contrasting nitrogen efficient tropical maize hybrids.

机译:与氮效率高的热带玉米杂交种相比,氮素的吸收和利用。

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摘要

Maize cultivars with improved grain yields under nitrogen (N) stress are desirable for sub-Saharan African maize growing environments. This study assesses N uptake, N utilization, and the genotype x environment (G x E) interaction of 16 tropical maize (Zea mays L.) hybrids differing in grain yield under low-N conditions. Hybrids were evaluated under low-N, medium-N, and high-N at Harare, Zimbabwe, in 2003 and 2004 and at Kiboko, Kenya, in 2003. At maturity, N accumulation in the aboveground biomass ranged from 47 to 278 kg N ha-1 in various experiments. Grain yields ranged from 1.5 to 4.3 Mg ha-1 and 10.6 to 14.9 Mg ha-1 for the same experiments, respectively. Significant G x E interactions were observed which became more pronounced as the difference in N stress intensity between two environments increased. High grain yield under low-N was consistently associated with higher postanthesis N uptake, increased grain production per unit N accumulated, and an improved N harvest index. Additive main effect and multiplicative interaction analysis identified hybrids with specific adaptation to either low-N or high-N environments. Several hybrids produced high yields under both low-N and high-N conditions. More detailed studies with these hybrids are required to examine the underlying physiological mechanisms contributing to the N-use efficiency..
机译:在撒哈拉以南非洲玉米生长环境中,在氮(N)胁迫下具有提高谷物产量的玉米品种是理想的。这项研究评估了低氮条件下不同产量的16种热带玉米(Zea mays L.)杂交种的氮素吸收,氮素利用和基因型x环境(G x E)相互作用。 2003年和2004年在津巴布韦哈拉雷以及2003年在肯尼亚的Kiboko对杂交种进行了低氮,中氮和高氮评估。成熟时,地上生物量的氮累积量为47至278 kg N ha-1在各种实验中。对于相同的实验,谷物的产量分别为1.5至4.3 Mg ha-1和10.6至14.9 Mg ha-1。观察到显着的G x E相互作用,这随着两个环境之间N胁迫强度差异的增加而变得更加明显。在低氮条件下的高谷物产量始终与较高的花后氮吸收量,单位氮素累积的谷物产量增加以及氮素收获指数的提高有关。加性主效应和乘法相互作用分析确定了对低氮或高氮环境具有特定适应性的杂种。几种杂种在低氮和高氮条件下均产生高产。需要对这些杂种进行更详细的研究,以检查有助于氮利用效率的潜在生理机制。

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