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The effects of previous-year corn hybrid and cropping system on current-year corn hybrids in second year corn.

机译:前一年玉米杂交和种植制度对第二年玉米当前年玉米杂交的影响。

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摘要

Grain yields decrease when corn (Zea mays L.) follows corn compared to corn grown in rotation with other crops. The factors that decrease grain yield of corn following corn are not well understood, and limit recommendations available to corn growers. Our objectives were to determine (i) if plant population, moisture, and yield of 2nd year corn are affected by the previous-year corn hybrid, (ii) evaluate if continued use of single hybrid over two growing seasons influences grain yield, and (iii) compare 2nd year corn yields to corn grown in rotation with soybean. The experiment was conducted at six Iowa locations in 2008 and 2009 three locations were in the Northern region of Iowa and three in the south. Three corn hybrids were planted in 18 m2 blocks as the main plots in the first year, followed by 12 hybrids planted on each of the main plots in the second year. The same 12 hybrids were planted into a nearby field on soybean residue at each location in 2008, but established as a main plot for 2009. Plant population was not influenced by the three previous-year corn hybrids. Plant populations were greater when corn followed soybean compared to 2nd year corn. Grain moisture content was not influenced by crop rotation or previous-year corn hybrid. Previous-year corn residue did not impact grain yield of the current-year hybrid, and the continued use of single hybrid over multiple growing seasons showed no influence on grain yield. Cropping system influenced grain yield in 2009, within both regions. Second-year corn yields were 11% and 14% less in the north and south regions, respectively, compared to corn rotated with soybean. Previous-year corn hybrid did not influence plant population, grain yield, or grain moisture. The influence of previous-year corn hybrid on the root and plant growth of the current-year hybrids is not well understood and may account for the decrease in grain yield. The objectives the second study were to determine (i) if current-year corn grain yields, root, and plant biomass were influenced by previous-year hybrid and/or cropping system (ii) if there are differences in plant and root biomass among modern commercial corn hybrids (iii) if root and plant biomass are correlated with grain yield. In 2008 and 2009, root and plant biomass studies were conducted at two Iowa State University research and demonstration farms. Experimental design and corn hybrids were the same as the grain yield study. At each location, root and plant biomass samplings were conducted at four different sample dates: V4, V12, VT, and R6. After sampling, roots were washed, dried, and weighed while plants were dried and weighed. Root and plant biomass were compiled and calculated for comparison. Overall, previous-year corn hybrid/cropping system did not influence root or plant biomass however, plant biomass was greater when corn followed soybean compared to 2nd year corn at Kanawha and Ames in 2009. Current-year hybrids were variable and did not indicate strong differences in root or plant biomass. Root biomass was not correlated with grain yield within any sample date. Plant biomass was correlated with grain yield at sample date 2 and 4 in Kanawha (2009). Root to shoot correlations were strong within all sample dates indicating that root growth is correlated to shoot growth throughout the growing season. Root and plant biomass are not influenced by the previous-year hybrid and are poor indicators of final grain yield.
机译:与其他作物轮作种植的玉米相比,当玉米(Zea mays L.)追随玉米时,谷物单产下降。降低玉米后玉米籽粒产量的因素尚未充分了解,并限制了玉米种植者可获得的建议。我们的目标是确定(i)第二年玉米的植物种群,水分和产量是否受到前一年玉米杂交品种的影响,(ii)评估在两个生长季节持续使用单一杂交品种是否会影响谷物产量,以及( iii)将第二年的玉米单产与与大豆轮作的玉米进行比较。该实验分别在2008年和2009年在爱荷华州的六个地点进行,三个地点分别在爱荷华州的北部地区和南部的三个地点。第一年将三个玉米杂交种种植在18平方米的地块上作为主要地块,第二年随后在每个主要地块种植12个杂交种。同样的12个杂种在2008年的每个位置都种植在附近的大豆残渣田上,但被确定为2009年的主要地块。植物种群不受前三年的玉米杂种的影响。与第二年玉米相比,当玉米追随大豆时,植物种群更大。谷物含水量不受轮作或前一年玉米杂交的影响。前一年的玉米残留量不影响当年杂交种的谷物产量,并且在多个生长季节继续使用单一杂交种对谷物产量没有影响。 2009年,两个地区的作物种植制度都影响了谷物单产。与大豆轮作的玉米相比,北部和南部地区的第二年玉米单产分别降低了11%和14%。前一年的玉米杂交种不会影响植物种群,谷物产量或谷物水分。前一年的玉米杂交种对当年杂交种的根和植物生长的影响尚不为人所知,这可能是导致谷物产量下降的原因。第二项研究的目标是确定(i)当年的玉米谷物产量,根系和植物生物量是否受到前一年的杂交和/或种植系统的影响(ii)现代植物之间的植物和根系生物量是否存在差异商业玉米杂交种(iii)根和植物生物量是否与谷物产量相关。在2008年和2009年,在爱荷华州立大学的两个研究和示范农场进行了根和植物生物量研究。试验设计和玉米杂交种与谷物产量研究相同。在每个位置,在四个不同的采样日期分别进行了根和植物生物量采样:V4,V12,VT和R6。取样后,将根部洗涤,干燥并称重,而将植物干燥并称重。根和植物生物量被编译并计算以进行比较。总体而言,前一年的玉米杂交/种植系统不影响根系或植物生物量,但与2009年Kanawha和Ames的第二年玉米相比,当玉米追随大豆时,植物生物量更大。根或植物生物量的差异。在任何采样日期内,根生物量与谷物产量均不相关。 Kanawha(2009)在第2和第4个采样日,植物生物量与谷物产量相关。在所有采样日期中,根与芽的相关性很强,这表明根的生长与整个生长季节的芽生长相关。根和植物生物量不受上一年杂交的影响,并且是最终谷物产量的较差指标。

著录项

  • 作者

    Kent, Wade Adam.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Agronomy.
  • 学位 M.S.
  • 年度 2010
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:33

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