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Grain Yield and Heterosis of Maize Hybrids under Nematode Infested and Nematicide Treated Conditions

机译:线虫侵染和杀线虫处理条件下玉米杂交种的籽粒产量和杂种优势

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摘要

Plant-parasitic nematodes are present on maize but resistant genotypes have not been identified in Uganda. This study was aimed at determining the level of nematode resistance among F1 hybrids, and to estimate grain yield, heterosis and yield losses associated with maize hybrids under nematode infestation. The 30 F1 hybrids and two local checks were evaluated in a split plot design with nematode treatment (nematode infested versus nematicide treated) as the whole plot factor, and the hybrids as subplot factors arranged in an 8 x 4 alpha-lattice design. The experiment was conducted simultaneously at three sites. The hybrids were also evaluated in a split plot design under greenhouse conditions at IITA-Namulonge. Results revealed 24 P. zeae susceptible hybrids compared to only six P. zeae resistant hybrids. Grain yield across sites was higher by about 400 kg ha-1 under nematicide treatment than under nematode infestation. The nematode tolerant/resistant hybrids exhibited yields ranging from 5.0 to 8.4 t ha-1 compared to 5.0 t ha-1 obtained from the best check. Grain yield loss was up to 28% among susceptible hybrids, indicating substantial economic yield losses due to nematodes. Under field conditions, desired heterosis was recorded on 18 hybrids for P. zeae, and on three hybrids for Meloidogyne spp. Under nematode infestation, only 16 hybrids had higher relative yield compared to the mean of both checks, the best check and the trial mean, whereas it was 20 hybrids under nematicide treated plots. Overall, most outstanding hybrids under nematode infestation were CML395/MP709, CML312/5057, CML312/CML206, CML312/CML444, CML395/CML312 and CML312/CML395. Therefore, grain yield loss due to nematodes is existent but can be significantly reduced by growing nematode resistant hybrids.
机译:玉米上存在植物寄生线虫,但在乌干达尚未鉴定出抗性基因型。这项研究旨在确定F1杂种中线虫的抗性水平,并估计在线虫侵染下与玉米杂种相关的谷物产量,杂种优势和产量损失。在分裂地块设计中评估了30个F1杂种和两个局部检查,其中线虫处理(侵染线虫与杀线虫剂进行了处理)作为整个地块因子,杂种作为子图因子以8 x 4 alpha格子设计排列。在三个地点同时进行了实验。还在IITA-Namulonge的温室条件下以分块设计评估了杂种。结果显示,与24个玉米抗性杂种相比,仅有6个玉米抗性杂种。杀线虫剂处理后,整个地点的谷物产量比线虫侵染时高约400 kg ha -1 。线虫耐性/抗性杂种的单产范围为5.0到8.4 t ha -1 ,而最好的检查方法为5.0 t ha -1 。在易感杂种中,谷物产量损失高达28%,这表明由于线虫而造成的大量经济产量损失。在田间条件下,期望的杂种优势被记录在斑节对虾的18个杂种上,而根结线虫属的三个杂种上。在线虫侵染下,与两种检查,最佳检查和试验均值的平均值相比,只有16个杂种的相对产量更高,而在杀线虫剂处理的田间,则有20个杂种。总体而言,在线虫侵染下,最杰出的杂种为CML395 / MP709,CML312 / 5057,CML312 / CML206,CML312 / CML444,CML395 / CML312和CML312 / CML395。因此,存在由于线虫引起的谷物产量损失,但是可以通过生长抗线虫杂种来显着减少。

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