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Boron Toxicity Reduces Water Transport from Root to Shoot in Arabidopsis Plants. Evidence for a Reduced Transpiration Rate and Expression of Major PIP Aquaporin Genes

机译:硼毒性减少了从根到拟南芥植物中的水运输。 降低蒸腾率和主要皮对水素基因的表达的证据

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Toxic boron (B) concentrations cause impairments in several plant metabolic and physiological processes. Recently we reported that B toxicity led to a decrease in the transpiration rate of Arabidopsis plants in an ABA-dependent process within 24 h, which could indicate the occurrence of an adjustment of whole-plant water relations in response to this stress. Since plasma membrane intrinsic protein (PIP) aquaporins are key components influencing the water balance of plants because of their involvement in root water uptake and tissue hydraulic conductance, the aim of the present work was to study the effects of B toxicity on these important parameters affecting plant water status over a longer period of time. For this purpose, transpiration rate, water transport to the shoot and transcript levels of genes encoding four major PIP aquaporins were measured in Arabidopsis plants treated or not with a toxic B concentration. Our results indicate that, during the first 24 h of B toxicity, increased shoot ABA content would play a key role in reducing stomatal conductance, transpiration rate and, consequently, the water transport to the shoot. These physiological responses to B toxicity were maintained for up to 48 h of B toxicity despite shoot ABA content returning to control levels. In addition, B toxicity also caused the down-regulation of several genes encoding root and shoot aquaporins, which could reduce the cell to cell movement of water in plant tissues and, consequently, the water flux to shoot. All these changes in the water balance of plants under B toxicity could be a mechanism to prevent excess B accumulation in plant tissues.
机译:有毒硼(B)浓度导致几种植物代谢和生理过程中的损伤。最近我们报道,B毒性导致24小时内的ABA依赖过程中拟南芥植物的蒸腾速率降低,这可能表明响应这种压力的全植物关系调整。由于血浆膜内在蛋白(PIP)Aquaporins是影响植物水平的关键部件,因为它们参与了根水吸收和组织液压传导,目前的目的是研究B毒性对这些重要参数影响的影响植物水状况在更长的时间内。为此目的,蒸腾率,对编码四个主要皮质蛋白的基因的芽和转录水平的蒸发速率在治疗或不具有毒性B浓度的拟南芥植物中测量。我们的结果表明,在B毒性的前24小时内,增加射击ABA含量将在降低气孔导度,蒸腾速率和因此水运中发挥关键作用。尽管射击对照水平,但在BA内容恢复到控制水平的情况下,对B毒性的这些生理反应保持高达48小时。此外,B毒性也导致了编码根和芽通泡蛋白的几个基因的下调,这可以将细胞减少到植物组织中水的细胞运动,因此,水通量拍摄。 B毒性下植物水平衡的所有这些变化可能是防止植物组织中过量积累的机制。

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