首页> 外文学位 >Growing degree-days as a method to characterize germination, flower pattern, and chemical flower suppression of a mature annual bluegrass [Poa annua var reptans (Hauskins) Timm] fairway in Michigan.
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Growing degree-days as a method to characterize germination, flower pattern, and chemical flower suppression of a mature annual bluegrass [Poa annua var reptans (Hauskins) Timm] fairway in Michigan.

机译:生长度-天数作为表征密歇根州成熟的一年生禾本科(Poa annua var reptans(Hauskins)Timm)球道的发芽,花型和化学花抑制的方法。

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摘要

Three turfgrass research projects characterized important seasonal events for two mature adjacent fairway populations of annual bluegrass [AB] as they relate to growing degree-days [GDD]. Experiments were conducted between 2001-2006 on a 9 to 15 yr old AB fairway maintained at 1.5 cm at the Hancock Turfgrass Research Center in East Lansing, MI. Environmental data was collected remotely by a Michigan Agricultural Weather Network [MAWN] weather station and verified with on-site measurements. AB seedling emergence [SEM] followed a bimodal pattern with peaks occurring in the spring and fall of each year. A simple growing degree-day [GDD] model accurately predicted mean soil temperature but did not adequately describe rate of SEM. However, logistic regression of mean soil temperature and SEM occurrence verified that SEM in this population fell within published soil temperature optima. Occurrence and rate of flowering of AB were observed for six years. Ordinal dates for onset, peak duration, and completion of flowering were recorded. GDD proved to be a reliable method to predict key flowering events in five of six years. A simple average-calculated GDD model, using a base temperature of -5 C was developed to describe seedhead production (R2=0.65) as compared to previously published model (R2=0.65). Onset, peak period, and completion of flowering were 550, 800 to 1300, and 1550 GDD-5, respectively. Plant growth regulators [PGRs] may be used to suppress AB flowering. Five one-year studies examined the effects of application timing and PGRs, mefluidide [MF], ethephon [EP], or EP plus trinexapac-ethyl [TE] on suppressing AB flowering. AB seedhead suppression, but not the occurrence of turfgrass injury, could be explained by application timing for MF only. Application dates associated with maximum seedhead suppression from MF were used to identify optimum GDD range. Applications occurring between 350-550 GDD-5 resulted in 5% seedhead cover averaged over all years. No injury was associated with EP or EP plus TE. Seedhead suppression was not affected by application timing for EP or EP plus TE when applied between 200-600 GDD-5. EP and EP plus TE applications resulted in 14% seedhead cover averaged over all years. GDD proved to be a reliable method to predict key seedhead production events for AB and PGR application timing for suppression of AB flowering. GDD alone did not explain rate of SEM but did predict conditions conducive for SEM. Regional testing of simple average-derived GDD models will facilitate end-user adoption of web-based decision-making tools related to AB management.
机译:三个草皮草研究项目的特征是两个重要的年度事件,这两个年度相邻的一年生早熟禾[AB]的航道种群与生长日数[GDD]有关。实验是在2001年至2006年之间,在密歇根州东兰辛的汉考克草坪草研究中心维持9到15年的AB球道上进行的,该球道保持在1.5厘米处。环境数据是由密歇根州农业气象网络[MAWN]气象站远程收集的,并通过现场测量进行了验证。 AB幼苗出苗[SEM]遵循双峰模式,每年春季和秋季均出现高峰。一个简单的生长日数模型[GDD]可以准确预测平均土壤温度,但不能充分描述SEM的速率。但是,平均土壤温度和SEM发生的逻辑回归证明该人群的SEM处于公布的土壤温度最佳值之内。观察了六年的AB的发生和开花率。记录发病的起始日期,高峰持续时间和开花完成。 GDD被证明是预测六年中五分之一关键开花事件的可靠方法。与以前发布的模型(R2 = 0.65)相比,使用-5°C的基本温度开发了一个简单的平均计算的GDD模型来描述种子头的产量(R2 = 0.65)。 GDD-5的发病期,高峰期和开花完成分别为550、800至1300和1550 GDD-5。植物生长调节剂[PGRs]可用于抑制AB开花。五个为期一年的研究检查了施用时间和PGR,甲氟肽[MF],乙烯利[EP]或EP加抗倒酯[TE]对抑制AB开花的影响。 AB种子头的抑制而不是草皮草损伤的发生,只能通过MF的施药时间来解释。使用与MF抑制最大种子头相关的施用日期来确定最佳GDD范围。在350-550 GDD-5之间发生的应用导致所有年份的平均头盖覆盖率低于5%。 EP或EP加TE没有受伤。在200-600 GDD-5之间使用EP或EP加TE的施药时间不会影响种子抑制。 EP和EP加TE的应用导致所有年份的平均种子盖率不到14%。 GDD被证明是预测AB关键种子头生产事件和PGR施用时机以抑制AB开花的可靠方法。单独的GDD不能解释SEM的发生率,但是可以预测有利于SEM的条件。简单的平均衍生GDD模型的区域测试将促进最终用户采用与AB管理相关的基于Web的决策工具。

著录项

  • 作者

    Calhoun, Ronald Nigel.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Agriculture Agronomy.;Agriculture Horticulture.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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