Physiological Response to Water Deficit Stress with Restricted Rooting in Tall Fescue and Zoysiagrass

Q2 Agricultural and Biological Sciences Journal of environmental horticulture Pub Date : 2020-03-01 DOI:10.24266/0738-2898-38.1.29
Travis Culpepper, Joseph R. Young, D. T. Montague, Manish Sapkota, Eduardo Escamilla, B. Wherley
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引用次数: 1

Abstract

Urban soils may restrict turfgrass rooting depth with shallow soil layers in high sand content soils, which may influence water conservation. A greenhouse study sought to quantify water usage and determine the physiological response of turfgrasses at four irrigation levels. ‘ATF-1434′ tall fescue (Schedonorus arundinaceus (Schreb.) Dumort. nom. cons.; syn. Festuca arundinacea Schreb.), ‘Jamur' Japanese lawngrass (Zoysia japonica Steud.), and ‘Zeon' Manilagrass [Zoysia matrella (L.) Merr.] were established in 10 cm (4 in) diameter by 17.8 cm (7 in) tall containers. Each species was irrigated with 16.5, 21.9, 27.3, or 32.7 mm.wk−1 (0.65, 0.86, 1.1, or 1.3 in.wk−1). Gravimetric water loss was determined by pre- and post-irrigation pot weights. Turf quality, leaf discoloration, percent green cover, and gross photosynthesis were evaluated weekly and root parameters were measured at the conclusion of each trial. Although root mass was similar among species, water deficit stress and leaf discoloration occurred sooner in tall fescue than the two Zoysia species, reducing turf quality and green cover. Japanese lawngrass and Manilagrass had greater stomatal conductance, resulting in 109 and 89% higher gross photosynthesis relative to tall fescue. Both zoysiagrasses maintained acceptable turf quality with 27.3 mm water.wk−1. However, tall fescue quality was not acceptable at any irrigation level. Index words: Photosynthesis, gravimetric water loss, tall fescue, Japanese lawngrass, Manilagrass. Species used in this study: Tall fescue (Schedonorus arundinaceus (Schreb.) Dumort. nom. cons.; syn. Festuca arundinacea Schreb.); Japanese lawngrass (Zoysia japonica Steud.); Manilagrass [Zoysia matrella (L.) Merr.].
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高羊茅和结缕草限制生根对水分胁迫的生理反应
在高含砂土壤中,城市土壤可能会以浅土层限制草坪草的生根深度,从而影响水土保持。一项温室研究试图量化四种灌溉水平下草坪草的用水量并确定其生理反应ATF-1434′高羊茅。nom。缺点。;syn。高羊茅Jamur‘Japanese lawngrass(结缕草)和Zeon‘Manilagrass[Zoysia matrella(L.)Merr.]在直径10厘米(4英寸)乘17.8厘米(7英寸)高的容器中培养。用16.5、21.9、27.3或32.7 mm·wk−1(0.65、0.86、1.1或1.3 in.·wk–1)灌溉每个物种。重量水分损失通过灌溉前和灌溉后的花盆重量确定。每周评估草皮质量、叶片变色、绿色覆盖率和总光合作用,并在每次试验结束时测量根系参数。尽管不同物种的根系质量相似,但高羊茅的缺水胁迫和叶片变色发生得比两种结缕草更快,降低了草坪质量和绿色覆盖率。日本草坪草和马尼拉草具有更大的气孔导度,导致总光合作用比高羊茅高109和89%。两种结缕草在27.3毫米的水下保持了可接受的草坪质量。然而,在任何灌溉水平下,高羊茅的质量都是不可接受的。索引词:光合作用,重量失水,高羊茅,日本草坪草,马尼拉草。本研究中使用的物种:高羊茅。nom。缺点。;syn。高羊茅;日本结缕草;马尼拉草。
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来源期刊
Journal of environmental horticulture
Journal of environmental horticulture Environmental Science-Environmental Science (miscellaneous)
CiteScore
1.90
自引率
0.00%
发文量
18
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