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Influence of regrowth time on the forage quality of prairie grass, perennial ryegrass and tall fescue under non-limiting soil nutrient and moisture conditions

机译:非限制性土壤养分和水分条件下再生时间对草原草,多年生黑麦草和高羊茅草料品质的影响

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The influence of regrowth time on the forage quality of prairie grass (Bromus willdenowii Kunth. cv. Matua), perennial ryegrass (Lolium perenne L. cv. Dobson) and tall fescue (Festuca arundinacea Schreb. cv. Dovey) was determined under non-limiting soil nutrient and moisture growth conditions. In a glasshouse, individual plants of each species were arranged in separate mini-swards and were defoliated at 6, 10 and 14 weeks after sowing to a stubble height of 60 mm for perennial ryegrass and tall fescue and 90 mm for prairie grass. Following defoliation at 14 weeks, selected individual plants were cut to the previous stubble height as each new leaf per tiller was fully expanded, to provide leaf material for nutrient analysis, until prairie grass, perennial ryegrass and tall fescue had attained 6–8, 5 and 3 leaves/tiller, respectively.nnThe concentration of leaf phosphorus (P) decreased from 6.6 to 5.9 g/kg dry matter (DM) in prairie grass, increased from 5.9 to 6.9 g/kg DM in perennial ryegrass, and initially increased to 8.8 g/kg DM and then decreased to 8.4 g/kg DM in tall fescue. The mean potassium (K) content in perennial ryegrass was 29.6 g/kg DM and was not significantly affected by duration of regrowth, whereas K content in prairie grass and tall fescue fell from 51.7 to 43.6 g/kg DM and from 55.5 to 47.9 g/kg DM, respectively, after the first leaf per tiller formed. Calcium levels increased with regrowth in all species and at the completion of regrowth were 5.8, 3.8 and 3.4 g/kg DM in prairie grass, perennial ryegrass and tall fescue, respectively. The magnesium (Mg) and sodium (Na) content of perennial ryegrass showed no change throughout the regrowth period and had measured values of 2.5 and 2.8 g/kg DM, respectively. For tall fescue, the concentration of leaf Mg decreased from 0.30 to 0.24 g/kg DM, whereas the Na concentration increased from 1.2 to 2.1 g/kg DM. The Mg content of prairie grass remained constant at 2.0 g/kg DM, whereas the Na content increased from 2.7 to 4.3 (g/kg DM).
机译:非再生条件下确定了再生时间对草原草(Bromus willdenowii Kunth.cv.Matua),多年生黑麦草(Lolium perenne L.cv.Dobson)和高羊茅草(Festuca arundinacea Schreb.cv.Dovey)饲草质量的影响。限制土壤养分和水分的生长条件。在温室中,将每个物种的单株植物分别布置在不同的小型草丛中,并在播种后第6、10和14周脱叶至多年生黑麦草和高羊茅的残茬高度为60 mm,草原草的残茬高度为90 mm。在第14周进行脱叶后,将选定的单个植物切成先前的残茬高度,因为每个分er的每片新叶片都完全展开,以提供叶片材料进行营养分析,直到草原草,多年生黑麦草和高羊茅草达到6–8,5 nn草原草中的叶磷(P)浓度从6.6 g / kg干物质(DM)降低到5.9 g / kg,多年生黑麦草中的DM浓度从5.9 g / kg增加到6.9 g / kg,最初增加到8.8 g / kg DM,然后在高羊茅中降低到8.4 g / kg DM。多年生黑麦草的平均钾(K)含量为29.6 g / kg DM,并且不受再生时间的影响,而草原草和高羊茅草中的K含量从51.7降至43.6 g / kg DM,从55.5降至47.9 g每个分er形成的第一片叶子之后分别为/ kg DM。在所有草种中,钙水平随再生长而增加,在再生长时,草原草,多年生黑麦草和高羊茅中的钙分别为5.8、3.8和3.4 g / kg DM。多年生黑麦草的镁(Mg)和钠(Na)含量在整个再生期间均无变化,测量值分别为2.5和2.8 g / kg DM。对于高羊茅,叶片Mg的浓度从0.30降低至0.24 g / kg DM,而Na的浓度从1.2升高至2.1 g / kg DM。草原草的Mg含量保持恒定在2.0 g / kg DM,而Na含量从2.7增加到4.3(g / kg DM)。

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