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Evaluation of creeping bentgrass (Agrostis stolonifera L.) responses to an amino acid containing co-product

机译:评估bent草(Agrostis stolonifera L.)对含氨基酸副产物的反应

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摘要

Tryptophan, an essential amino acid that acts as a building block in protein synthesis, is a biochemical precursor for serotonin, niacin, and auxin in most organisms. When soil moisture is limited, applying biosolids boosted with auxin from tryptophan may increase root production and endogenous hormone levels that can result in plant growth regulation. Tryptophan is produced industrially, which results in a significant amount of byproducts. Tryptophan byproduct (TRP-B) is considered a waste product, but its amino acid and nutrient content make it a possible growth promoter for turfgrasses. The objective of this research was to determine whether applications of TRP-B improve ‘Penn A-4’ creeping bentgrass (Agrostis stolonifera L.) performance more than applications of pure tryptophan and/or urea.Creeping bentgrass plugs taken from sand-based greens at both Virginia Polytechnic Institute and State University (Blacksburg, VA), and Iowa State University (Ames, IA) were transplanted into pots and allowed to re-establish in growth chambers before being treated. Treatments included TRP-B, urea, and pure tryptophan + urea applied every 14 days at three different rates. Application rates were based on the amount of nitrogen (N) applied (2.45, 12.23, and 24.46 kg N ha-1). At trial’s end (42 days), plant parts were harvested and used for analysis. On average, TRP-B treatments increased leaf total free amino acid contents by 6.2%, rooting biomass by 9.3%, leaf indole-acetic-acid (IAA) concentration by 20.2%, and root IAA concentration by 145.2%, compared to urea only treatments. Tryptophan + urea treatments increased leaf total free amino acid contents by 5%, rooting biomass by 8.3%, leaf IAA concentrations by 32.6%, and root IAA concentrations by 213% on average, compared to urea only treatments. At 24.46 kg N ha-1, TRP-B increased root biomass by 18.2% and pure tryptophan + urea produced a 16.3% increase compared to urea only. According to the results, creeping bentgrass treated with TRP-B can result in increased performance, and that response is rate-dependent.
机译:色氨酸是蛋白质合成的基本氨基酸,是大多数生物体内5-羟色胺,烟酸和生长素的生化前体。当土壤水分有限时,使用色氨酸中生长素促进的生物固体可以增加根系产量和内源激素水平,从而导致植物生长调节。色氨酸是工业生产的,导致大量的副产物。色氨酸副产物(TRP-B)被认为是废品,但其氨基酸和营养成分使其成为草皮草生长的促进剂。这项研究的目的是确定使用TRP-B是否比纯色氨酸和/或尿素的使用更能改善'Penn A-4'爬行bent草(Agrostis stolonifera L.)的性能。弗吉尼亚理工学院和州立大学(弗吉尼亚州布莱克斯堡分校)和爱荷华州立大学(爱荷华州艾姆斯分校)都被移植到盆中,并在治疗前在生长室中重建。处理包括TRP-B,尿素和纯色氨酸+尿素,每14天以三种不同的比例使用。施用量基于施用的氮(N)量(2.45、12.23和24.46 kg N ha-1)。在试验结束(42天)后,收获了植物部分并用于分析。与仅使用尿素相比,平均而言,TRP-B处理可使叶片总游离氨基酸含量增加6.2%,生根生物量增加9.3%,叶片吲哚乙酸(IAA)浓度增加20.2%,根IAA浓度增加145.2%。治疗。与仅使用尿素的处理相比,色氨酸+尿素处理平均可使叶片总游离氨基酸含量增加5%,生根生物量增加8.3%,叶片IAA浓度增加32.6%,根IAA浓度增加213%。在24.46 kg N ha-1下,TRP-B使根系生物量增加了18.2%,而纯色氨酸+尿素与仅尿素相比增加了16.3%。根据结果​​,用TRP-B处理的bent草可以提高性能,并且响应速度与速率有关。

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    Mertz, Isaac;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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