Comparison of nitrogen assimilation components among Agrostis species and cultivars

Michelle DaCosta, Jeffrey Scott Ebdon, Lindsey Hoffman Chappell
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Abstract

Enhanced nitrogen use efficiency (NUE) in turfgrass systems comprises several factors, including more efficient uptake and assimilation of applied nitrogen (N), as well as reduced N losses to the environment. The objectives of the current research were to evaluate the inter- and intraspecific variation in N use parameters in two Agrostis species, creeping bentgrass (Agrostis stolonifera L.) and velvet bentgrass (Agrostis canina L.), under field and controlled environmental conditions. Measurements included leaf NUE (g dry matter mg–1 N), leaf N content (mg g–1 dry matter), leaf and root nitrate reductase activity (NRA)(μmol NO2 g–1 fresh weight h–1), and root nitrate uptake rate (NUR). Velvet bentgrass cultivars exhibited higher leaf N content and therefore lower leaf NUE than creeping bentgrass cultivars in the field and in a nutrient solution. Differences in leaf NRA were only observed in Agrostis species and cultivars in the field, with higher NRA observed in creeping bentgrass. Velvet bentgrass cultivars grown in a nutrient solution exhibited a 50% higher root NUR than creeping bentgrass, with leaf NRA and N content increasing and leaf NUE decreasing in Agrostis under higher NO3 supply.

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Agrostis种和品种间氮同化成分的比较
草坪草系统中氮利用效率的提高包括几个因素,包括更有效地吸收和同化施用的氮,以及减少氮对环境的损失。本研究的目的是评估在田间和受控环境条件下,两种土壤改良剂(Agrostis stolonifera L.)和天鹅绒底栖草(Agrosts canina L.)在氮利用参数方面的种间和种内变异。测量包括叶片NUE(g干物质mg–1 N)、叶片N含量(mg g–1干物质)、叶片和根硝酸还原酶活性(NRA)(μmol NO2–g–1鲜重h–1)以及根硝酸盐吸收率(NUR)。在田间和营养液中,天鹅绒底栖草品种表现出比匍匐底栖草品种更高的叶片氮含量,因此叶片NUE更低。叶片NRA的差异仅在田间的Agrostis物种和品种中观察到,在匍匐底栖草中观察到更高的NRA。在营养液中生长的Velvet Bentha草品种的根系NUR比匍匐Bentha草高50%,在较高的NO3供应下,Agrostis的叶片NRA和N含量增加,叶片NUE降低。
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Poa annua control in golf course putting green collars via fraise mowing Cover Image, Volume 14, Issue 1 14th International Turfgrass Research Conference: Development and Sustainability 14th International Turfgrass Research Conference: Development and Sustainability International Turfgrass Society Research Journal, Volume 14 (2022)
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