首页> 外文期刊>Grass and forage science: the journal of the British Grassland Society. >Interaction between water-soluble carbohydrate reserves and defoliation severity on the regrowth of perennial ryegrass (Lolium perenne L.)-dominant swards
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Interaction between water-soluble carbohydrate reserves and defoliation severity on the regrowth of perennial ryegrass (Lolium perenne L.)-dominant swards

机译:多年生黑麦草(Lolium perenne L。)-优势草的再生长上水溶性碳水化合物储备与落叶严重程度之间的相互作用

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A field-study was undertaken in Hamilton, New Zealand to determine if there was an interaction between water-soluble carbohydrate (WSC) reserve content and defoliation severity on the regrowth of perennial ryegrass-dominant swards during winter. Perennial ryegrass plants with either low or high WSC content were obtained by varying the defoliation frequency. At the third defoliation at the one-leaf stage and at the first defoliation at the three-leaf stage (harvest H-1), swards were mown with a rotary lawnmower to residual stubble heights of 20, 40 or 60 mm. All swards were then allowed to regrow to the three-leaf stage before again defoliating to their treatment residual stubble heights (H-2). Frequently defoliated plants contained proportionately between 0 center dot 37 and 0 center dot 48 less WSC in the stubble after defoliation, depending on the severity of defoliation. There was no interaction between WSC content and defoliation severity for herbage regrowth between harvests H-1 and H-2. Herbage regrowth was lower from swards containing low WSC plants compared with high WSC plants (2279 vs. 2007 kg DM ha(-1)). Furthermore, swards defoliated to 20 or 40 mm had greater herbage regrowth compared with those defoliated to 60 mm (2266, 2249 and 1914 kg DM ha(-1) for swards defoliated to residual stubble heights of 20, 40 and 60 mm, respectively). Regrowth of perennial ryegrass was positively correlated with post-defoliation stubble WSC content within defoliation severity treatment, implying that WSC contributed to the defoliation frequency-derived difference in herbage yield. However, the effect of defoliation severity on herbage regrowth was not associated with post-defoliation stubble WSC content.
机译:在新西兰的汉密尔顿进行了一项野外研究,以确定冬季常年黑麦草主导的草丛再生时水溶性碳水化合物(WSC)的储备含量和落叶严重程度之间是否存在相互作用。通过改变脱叶频率获得具有低或高WSC含量的多年生黑麦草植物。在单叶阶段的第三次脱叶和三叶阶段的第一次脱叶(收获H-1)时,用旋转割草机割草草坪,使残茬高度达到20、40或60 mm。然后使所有草皮重新生长至三叶阶段,然后再脱叶至其处理后的残茬高度(H-2)。根据脱叶的严重程度,脱叶后的残茬中,经常去叶的植物在0中心点37和0中心点48之间的比例较小。在收获物H-1和H-2之间,WSC含量与落叶的严重程度之间没有相互影响。与高WSC植株相比,含有低WSC植株的草丛中草的生长量较低(2279比2007 kg DM ha(-1))。此外,与落叶到60毫米的草皮相比,落叶到20或40毫米的草皮具有更大的草丛长势(落叶到剩余残茬高度分别为20、40和60毫米的草皮分别为2266、2249和1914公斤DM ha(-1)) 。多年生黑麦草的再生与落叶后残茬处理中WSC含量呈正相关,这表明WSC导致了落叶产生的草本产量差异。然而,落叶严重程度对草本植物再生的影响与落叶后残茬WSC含量无关。

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