Sap Flow and Water Consumption of Captain Cook Tree [Cascabela thevetia (l.) Lippold].

F. F. Bebawi, R. Mayer, A. Downey
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Abstract

A two-year field study documented the diurnal and nocturnal sap flow rates and water consumption of young (YCC), adult (ACC) and mature (MCC) Captain Cook trees [Cascabela thevetia (L.) Lippold] that were invading a riparian habitat in northern Queensland. For comparison, two native trees [black tea tree (Melaleuca bracteata F. Muell.) and Moreton Bay ash (Corymbia tessellaris (F.Muell.) K.D.Hill & L.A.S.Johnson)] growing in association with Captain Cook tree were also monitored. Sap flow measurements were grouped into eight timeframes per day (early morning, late morning, early afternoon, late afternoon, early night, late night, early dawn and late dawn). Significant interactions in sap flow rate occurred between plant types, timeframes, and months. The magnitude of sap flow rate was Moreton Bay ash>YCC>ACC>black tea tree>MCC. Maximum sap flow rates tended to occur during early (1-3 pm) to mid-afternoon (4-6 pm) for all age groups of Captain Cook tree and the two native trees. Diurnal sap flow rates were significantly greater than nocturnal, and on a monthly basis sap flow rates were highest over the spring to autumn period (September-May) and lowest during winter (June–August). Significant differences in water consumption also occurred between species and months. Water consumption peak time varied between plant types with most plants peaking in January except for MCC and Moreton Bay ash trees for which peak water consumption occurred in June and July respectively. Water consumption was high across all seasons except winter. The magnitude of water consumption was Moreton Bay ash>black tea tree>YCC>ACC>MCC trees. Moreton Bay ash registered maximal monthly water consumption (4700 L) compared with minimal consumption by MCC trees (55 L). On average, Captain Cook trees used 99% and 72% less water than Moreton Bay ash and black tea trees respectively. The significantly lower water consumption by Captain Cook trees compared with Moreton Bay ash and black tea trees may be offset by high population densities. Results also suggest that knowledge of optimal sap flow timeframes may be advantageous in exploring optimal timing for application of control operations related to management of Captain Cook trees.
库克船长树(Cascabela thevetia)的液流和耗水量(1)Lippold]。
一项为期两年的实地研究记录了库克船长树(Cascabela thevetia, L.)幼树(YCC)、成树(ACC)和成熟树(MCC)的昼夜液流率和水分消耗。它们正在入侵昆士兰北部的一个河岸栖息地。作为比较,两种本地树木[黑茶树(千层树)和摩顿湾白蜡(Corymbia tessellaris (F.Muell.)]。K.D.Hill & l.a.s.j johnson)]与库克船长树(Captain Cook tree)一起生长的情况也进行了监测。液流测量分为每天8个时间段(清晨、上午晚些时候、下午早些时候、下午晚些时候、晚上早些时候、晚上晚些时候、凌晨和凌晨)。在植物类型、时间框架和月份之间,液流速率发生了显著的相互作用。液流速率大小为莫顿湾灰>YCC>ACC>黑茶树>MCC。库克船长树和两种本地树的所有年龄组的树液流速率均在早(下午1-3点)至下午3 -6点之间达到最大值。日液流率显著大于夜液流率,月液流率在春秋季(9 - 5月)最高,冬季(6 - 8月)最低。不同品种和月份的耗水量也存在显著差异。不同植物类型的耗水高峰时间不同,除MCC和Moreton Bay白蜡树分别在6月和7月达到耗水高峰外,大多数植物在1月达到耗水高峰。除冬季外,其他季节的用水量都很高。用水量大小为莫顿湾灰树>黑茶树>YCC树>ACC树>MCC树。摩顿湾白蜡树的月用水量最大(4700升),而MCC树的月用水量最小(55升)。库克船长树的月用水量平均比摩顿湾白蜡树和红茶树分别少99%和72%。与莫顿湾白蜡树和黑茶树相比,库克船长树的用水量明显较低,这可能被高人口密度所抵消。结果还表明,最佳液流时间框架的知识可能有利于探索与库克船长树管理相关的控制操作应用的最佳时机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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