首页> 外文OA文献 >Evaluation of drought response of two poplar clones (Populus x canadensis Mönch 'I-214' and P. deltoides Marsh. 'Dvina') through high resolution analysis of stem growth
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Evaluation of drought response of two poplar clones (Populus x canadensis Mönch 'I-214' and P. deltoides Marsh. 'Dvina') through high resolution analysis of stem growth

机译:通过茎生长的高分辨率分析评估两个杨树无性系(Populus x canadensisMönch'I-214'和P. deltoides Marsh。'Dvina')的干旱响应

摘要

Different irrigation effects on stem radius variation (ΔR) and maximum daily shrinkage (MDS) in Populus deltoides 'Dvina' and Populus×canadensis 'I-214' were studied to assess differences in drought tolerance between clones. One-year-old trees growing in concrete tanks were submitted to two irrigation regimes (natural rainfall and irrigation) from 24 June to 10 August, and ΔR was monitored by automatic point dendrometers. Independently of the irrigation regime, 'Dvina' showed a higher stem radial increment than 'I-214'. In both clones, the first response to changed soil water content was a significant increase in MDS, whilst ΔR decreased about 20 d later when pre-dawn leaf water potential (Ψpd) dropped below -0.4 MPa. However, they displayed different strategies to overcome drought. 'Dvina' maintained a positive ΔR for longer than 'I-214', which had lower leaf Ψpd and greater leaf abscission at the end of the drought period. After irrigation resumed, 'Dvina' showed a higher capacity to restore stem growth. 'I-214' was probably unable to recover secondary growth because of higher leaf abscission during drought stress and the production of newly expanded leaves during recovery. It is concluded that the larger radial growth of 'Dvina' derived from a better water use (carbon uptake versus water loss) than 'I-214' under limited water availability.
机译:研究了不同灌溉方式对美洲黑杨“ Dvina”和胡杨×加拿大油菜“ I-214”的茎半径变化(ΔR)和最大日收缩率(MDS)的影响,以评估克隆之间的耐旱性差异。从6月24日至8月10日,将在混凝土罐中生长的一岁树种接受两种灌溉方式(自然降雨和灌溉),并通过自动点式密度计监测ΔR。与灌溉方式无关,“ Dvina”显示出比“ I-214”更高的茎径向增量。在两个克隆中,对土壤水含量变化的第一个反应是MDS的显着增加,而当黎明前叶水势(Ψpd)降至-0.4 MPa以下时,ΔR下降约20 d。但是,他们展示了克服干旱的不同策略。 'Dvina'的ΔR维持时间比'I-214'更长,后者在干旱期结束时叶片Ψpd较低​​,而叶片脱落量更大。恢复灌溉后,“ Dvina”显示出更高的恢复茎生长的能力。 “ I-214”可能无法恢复次生,这是由于干旱胁迫期间叶片脱落增加,以及恢复期间新膨胀叶片的产生。结论是,在有限的水供应条件下,“ Dvina”的较大径向生长源于比“ I-214”更好的用水量(碳吸收与失水)。

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