首页> 外文期刊>Aquatic Botany >Anatomical and physiological adaptations in aquatic ecotypes of Cyperus alopecuroides Rottb. under saline and waterlogged conditions.
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Anatomical and physiological adaptations in aquatic ecotypes of Cyperus alopecuroides Rottb. under saline and waterlogged conditions.

机译:莎草(Cyperus alopecuroides Rottb)水生生态型的解剖和生理适应。在盐水和浸水的条件下。

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摘要

An experiment was conducted to investigate structural and functional acclimation in two ecotypes of Cyperus alopecuroides Rottb. under saline and waterlogged conditions. A salt sensitive ecotype was collected from fresh river water (FW) and a salt tolerant ecotype from polluted brackish water (BW). The experiment was conducted in a 2-factorial (salinity, ecotyope) completely randomized design with five replications. Three salt regimes were maintained during the experiment, 0 (control, no salt), 150 and 300 mM NaCl. Ecotype BW was better adapted to salinity + waterlogging than ecotype FW from fresh water of the River Ravi. Waterlogging was simulated as ecotype BW showed greater root and shoot length, root and shoot fresh and dry biomass, and bract area, higher chlorophyll a and b concentration, net assimilation rate, water use efficiency, turgor potential, root and shoot K+ and accumulation of free proline, but lower transpiration rate and shoot Na+ uptake than ecotype FW under stressful conditions of salinity/waterlogging. Root lysogenous aerenchyma was more prominent in ecotype FW than in ecotype BW. In addition, ecotype BW had large cortical cells, a thick endodermis barrier, high sclerification and large metaxylem vessels, all contributing to efficient water and solute conduction under combined salinity and waterlogging stress; hence contributing substantially to better survival of this ecotype in harsh stressful environments.
机译:进行了一项实验,以研究两种生态型莎草(Cyperus alopecuroides Rottb)的结构和功能适应性。在盐水和浸水的条件下。从淡河水(FW)中收集盐分敏感的生态型,从咸淡水(BW)中收集盐分的生态型。该实验以2因子(盐度,生态型)完全随机设计进行,重复5次。在实验过程中维持了三种盐方案:0(对照,无盐),150和300 mM NaCl。与从拉维河淡水生产的生态型FW相比,生态型BW更适合盐分+涝灾。由于生态型BW表现出更大的根和茎长度,根和茎新鲜和干燥生物量、,片面积,较高的叶绿素a和b浓度,净同化率,水分利用效率,膨化潜力,根和芽K ,因此模拟了涝渍盐度/涝渍胁迫条件下,游离脯氨酸的积累和积累,但蒸腾速率和芽Na + 的吸收率低于生态型FW。生态型FW比生态型BW的根源性溶血性气血瘤更为突出。另外,生态型BW具有大的皮质细胞,厚厚的内胚层屏障,高度的硬化和较大的木质部脉管,在盐度和涝渍综合胁迫下均有助于有效的水和溶质传导;因此,在恶劣的压力环境下,可以为这种生态型的更好生存做出重大贡献。

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