首页> 外文期刊>Plant and Soil >The relationship between competitive ability and yield stability in an old and a modern winter wheat cultivar.
【24h】

The relationship between competitive ability and yield stability in an old and a modern winter wheat cultivar.

机译:冬小麦和现代冬小麦品种竞争能力与产量稳定性之间的关系。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

This study was conducted to determine if there were differences in competitive ability and yield stability on the growth of an old landrace of winter wheat (Triticum aestivum), Pinglang 40 (PL40), and a modern cultivar, Changwu135, (CW135), which differed in time of cultivar release, height, shoot and root biomass. A second aim was to investigate whether there is a relationship between competitive ability and yield stability. One pot and two field experiments were conducted to monitor changes in the competitive ability and yield stability of an old and a modern winter wheat cultivar grown in monoculture and mixtures using a de Wit replacement series. The pot study was conducted at two soil moisture levels: (a) well watered (WW), soil maintained at 85% field capacity, and (b) moderate drought (MD), soil maintained at 55% field capacity. The field experiments were conducted in 2 years that were drier than the average. In the second field experiment 40 mm of irrigation was applied to half of the plots at jointing, booting and anthesis. The results were similar in the pot and field experiments. In the mixture, the old cultivar PL40 had a greater relative yield with a larger number of spikes per plant when compared with those of the modern cultivar CW135. The dry matter per stem of CW135 tended to decrease with the increasing proportion of PL40, indicating a lower competitive ability of the modern cultivar than that of the old cultivar. The superior competition of PL40 was primarily due to the higher plant height, larger leaf area index, greater tillering capacity and larger root system. Our results showed that the modern cultivar CW135 produced a higher grain yield, yield components (except spike number), water use efficiency (WUEg) and harvest index under both water regimes in monoculture. However, the reduction in grain yield of CW135 when subjected to water-limited conditions was less than that of PL40 in the pot and field experiments. The greater grain yield of the CW135 was associated with a higher harvest index, thousand-kernel-weight and a lower root:shoot ratio. Water consumption over the entire growing period was significantly lower in CW135 under all soil moisture conditions, and the main difference in water consumption between the two cultivars was observed before anthesis. Post-anthesis accumulation of dry matter was greater in CW135 under water-limited conditions, but there was no difference between cultivars when water was adequate. The dry matter remobilization and contribution to grain yield of CW135 was lower than that of PL40. The results of the present study demonstrated that the higher competitive ability in the old landrace led to an increased sensitivity to environmentally-induced stress. As a result, there was a greater loss in grain yield by the old cultivar when the water supply was unfavorable. In addition, the differences in the life history strategy between the old and modern cultivars imply that reducing competitive ability in the modern cultivar has led to increased yield of the crop population and greater yield stability.
机译:进行这项研究的目的是确定竞争能力和产量稳定性在旧小麦冬小麦( Triticum aestivum ),平浪40(PL40)和现代品种昌武135的生长上是否存在差异(CW135),其在品种释放时间,高度,枝条和根生物量上有所不同。第二个目的是研究竞争能力和产量稳定性之间是否存在关系。进行了一个盆栽和两个田间试验,以监测使用德维特替代系列种植的单一和混合栽培的老小麦和现代冬小麦品种的竞争能力和产量稳定性的变化。盆栽研究在两个土壤湿度水平下进行:(a)浇水(WW),土壤保持在85%的田间持水量;(b)中度干旱(MD),土壤保持在55%的田间持水量。现场实验在2年内进行,比平均水平要干燥。在第二个田间试验中,在接缝,靴子和花粉期的一半样地上进行了40毫米的灌溉。在盆栽和田间试验中结果相似。在混合物中,与现代品种CW135相比,旧品种PL40的相对产量更高,每株穗数更多。随着PL40比例的增加,CW135的单茎干物质趋于减少,这表明现代品种的竞争能力要比旧品种低。 PL40的优异竞争主要是由于更高的株高,更大的叶面积指数,更大的分till能力和更大的根系。我们的研究结果表明,在单一水分培养的两种水分制度下,现代品种CW135的谷物产量,产量组成(穗数除外),水分利用效率(WUE g )和收获指数更高。但是,在盆栽和田间试验中,水分受限条件下CW135的籽粒产量下降幅度小于PL40。 CW135的更高谷物产量与更高的收获指数,千粒重和更低的根:茎比有关。在所有土壤水分条件下,CW135整个生育期的耗水量均显着降低,并且在花期前观察到两个品种之间的耗水量存在主要差异。水分限制条件下,CW135的花后干物质积累量更大,但是当水充足时,品种之间没有差异。 CW135的干物质转运和对谷物产量的贡献低于PL40。本研究的结果表明,在旧地方品种中更高的竞争能力导致对环境诱导的胁迫的敏感性增加。结果,当供水不利时,旧品种的谷物产量损失更大。此外,旧品种与现代品种之间的生活史策略的差异表明,现代品种竞争能力的降低导致农作物产量的增加和产量稳定性的提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号