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首页> 外文期刊>Journal of Plant Research >Intervessel connectivity and relationship with patterns of lateral water exchange within and between xylem sectors in seven xeric shrubs from the great Sahara desert
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Intervessel connectivity and relationship with patterns of lateral water exchange within and between xylem sectors in seven xeric shrubs from the great Sahara desert

机译:撒哈拉大沙漠7种干灌木中木质部扇形内和扇形间的横向相互交换模式与血管间的连通性和关系。

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The main objective of this study was to evaluate the role of intervessel contacts in determining the patterns of hydraulic integration both within and between xylem sectors. The degree of intervessel contacts and the lateral exchange capability within and between sectors were examined and correlated in different xeric shrubs. A dye injection method was used to detect the connections between vessels; an apoplastic dye was sucked through a known number of vessels and its distribution in the xylem network was followed. Hydraulic techniques were used to measure axial and tangential conductivity both within and between xylem sectors. The intra- and inter-sector integration indexes were then determined as the ratio of tangential to axial conductance. Species differed significantly in the degree of intervessel contacts, intra- and inter-sector integration index. In all cases, hydraulic integration was observed to be higher within sector than between sectors. From the correlation analyses, the intervessel contacts showed a very weak relationship with inter-sector integration index and a strong positive relationship with intra-sector integration index. Results suggested that (1) the factors affecting patterns of lateral flow within xylem sectors might be relatively different from those between sectors. (2) The degree of intervessel contacts was a major determinant of hydraulic integration within the same xylem sector. (3) Intervessel connectivity alone was a poor predictor of hydraulic integration between different sectors, implying a significant contribution of other anatomical, physiological and environmental factors in determining the patterns of integrated-sectored transport within woody stems.
机译:这项研究的主要目的是评估血管间接触在确定木质部内部和木质部之间的水力整合模式中的作用。在不同的干燥灌木中,检查了扇间之间的接触程度和扇形内部以及扇形之间的横向交换能力,并将它们相互关联。染料注入法用于检测血管之间的连接。通过已知数量的容器吸取质外性染料,并跟踪其在木质部网络中的分布。水力技术被用来测量木质部扇形内和扇形之间的轴向和切向电导率。然后将行业内和行业间的整合指数确定为切向与轴向电导之比。物种之间的接触间接触程度,行业内和行业间的整合指数差异很大。在所有情况下,都发现部门内的水力整合程度高于部门之间的水力整合程度。从相关性分析来看,跨部门联系与部门间整合指数之间的关系非常弱,而与部门内部整合指数之间的关系则很强。结果表明:(1)影响木质部扇形内部横向流动的因素可能与扇形之间的相对不同。 (2)脉管间接触的程度是同一木质部内水力整合的主要决定因素。 (3)仅凭血管间的连通性就不能很好地预测不同部门之间的水力整合,这暗示着其他解剖,生理和环境因素在确定木柄内整合扇形运输方式方面的重要作用。

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