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Insights into root structure and function of Bassia indica: water redistribution and element dispersion

机译:洞悉巴西根的根结构和功能:水分再分配和元素分散

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In the last few decades, research has increasingly been aimed at clarifying how root system architecture, physiology and function are related to environmental drivers. 'Negative halotropism' has been defined as the alteration of root growth direction to avoid salinity. We suggested that 'positive halotropism' may be found in halophytes relying on salinity for optimal growth. Investigating root structure of the halophyte Bassia indica (Wight) A. J. Scott, we have shown that positive halotropism can explain the growth of horizontal roots towards optimal salt concentrations along a soil salinity gradient. Here we tested three hypotheses. First, that development of B. indica roots depends on a trade-off between optimal nutrient supply and saline concentrations: results of split-root-experiment showed a preference for sand enriched with nutrients and poor in salts. Second, that shallow horizontal roots enable B. indica to forage for nutrient-rich patches. Results demonstrated that bulk elemental analysis was not consistent with tissue-specific elemental analysis, and this can be explained by substantial variability of element composition of particular root segments. Third, we hypothesised that B. indica redistributes water horizontally through shallow horizontal roots. Results showed that back flow of water from the tap root towards tip root was possible in horizontal roots in saline microenvironment.
机译:在过去的几十年中,越来越多的研究旨在阐明根系统的体系结构,生理和功能与环境驱动因素之间的关系。 “负卤虫病”已被定义为改变根系生长方向以避免盐碱化。我们建议依赖盐度实现最佳生长的盐生植物中可能会发现“阳性卤虫病”。调查盐生植物巴西(Wight)A。J. Scott的根系结构,我们已经表明,正生卤虫病可以解释水平根系向土壤盐分梯度方向上最佳盐浓度的增长。在这里,我们检验了三个假设。首先,in树根的发育取决于最佳养分供应与盐浓度之间的权衡:分根实验的结果表明偏爱富含养分而盐分较差的沙土。第二,浅水平根使印度双歧杆菌能够觅食富含营养的斑块。结果表明,本体元素分析与组织特异性元素分析不一致,这可以通过特定根节的元素组成的显着差异来解释。第三,我们假设印度B(B。indica)通过浅水平的根部水平地重新分配水。结果表明,在微环境中,横根中水可能从水龙头根流向根尖。

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