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Adaptive plasticity of Laguncularia racemosa in response to different environmental conditions: Integrating chemical and biological data by chemometrics

机译:紫花苜蓿适应不同环境条件的适应性可塑性:通过化学计量学整合化学和生物学数据

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Mangroves are dynamic environments under constant influence of anthropic contaminants. The correlation between environmental contamination levels and possible changes in the morphology of plants, evaluated by multivariate statistics helps to highlight matching between these variables. This study aimed to evaluate the uptake and translocation of metals and metalloids in roots and leaves as well as the changes induced in both anatomy and histochemistry of roots of Laguncularia racemosa inhabiting two estuaries of Espírito Santo (Brazil) with different pollution degrees. The analysis of 14 elements in interstitial water, sediments and plants followed by multivariate statistics, allowed the differentiation of studied sites, showing good match between levels of elements in the environment with the corresponding in plants. L. racemosa showed variations in their root anatomy in different collection areas, with highest values of cortex/vascular cylinder ratio, periderm thickness and air gap area in Vitória Bay, the most polluted sampling area. These three parameters were also important to differentiate the mangrove areas by linear discriminant analysis. The development stage of aerenchyma in roots reflected the oxygen availability in the water, being found a negative correlation between these variables. The combined use of chemical and biological analyses responded quite well to different pollution scenarios, matching morphological responses to physical and chemical parameters, measured at different partitions within the estuary. Thus, L. racemosa can be confirmed as a reliable sentinel plant for biomonitoring of estuaries impacted by anthropic pollution.
机译:红树林是在人类污染物不断影响下的动态环境。通过多变量统计评估,环境污染水平与植物形态可能发生的变化之间的相关性有助于突出显示这些变量之间的匹配。这项研究旨在评估根和叶中金属和准金属的摄取和转运以及在两个不同污染程度的巴西埃斯皮里图桑托河口居住的总状紫菜根的解剖学和组织化学变化。对间隙水,沉积物和植物中的14种元素进行分析,然后进行多元统计分析,可以区分研究地点,表明环境中的元素水平与植物中的相应元素之间具有良好的匹配性。紫花苜蓿在不同采集区的根部解剖结构表现出差异,在污染最严重的维托里亚湾中,皮质/血管圆柱比,周长厚度和气隙面积的值最高。这三个参数对于通过线性判别分析区分红树林区域也很重要。根部气孔的发育阶段反映了水中的氧气利用率,发现这些变量之间呈负相关。化学和生物学分析的结合使用对不同的污染情况有很好的响应,使形态响应与物理和化学参数相匹配,在河口内的不同分区进行了测量。因此,沙门氏菌可被确认为可靠的定点植物,用于对受人类污染影响的河口进行生物监测。

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