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L. 功能性状表明其最佳生长状态。

L. Functional Traits Indicate Its Optimum Growth.

作者信息

Cárdenas-Pérez Stefany, Rajabi Dehnavi Ahmad, Leszczyński Karol, Lubińska-Mielińska Sandra, Ludwiczak Agnieszka, Piernik Agnieszka

机构信息

Department of Geobotany and Landscape Planning, Faculty of Biological and Veterinary Sciences, Nicolaus Copernicus University in Torun, Lwowska 1, 87-100 Torun, Poland.

Department of Agronomy and Plant Breeding, College of Agriculture, Isfahan University of Technology, Isfahan 84156-83111, Iran.

出版信息

Plants (Basel). 2022 Apr 12;11(8):1051. doi: 10.3390/plants11081051.

Abstract

L. grows in areas periodically flooded by salty or brackish water. It has potential economic value, because it can be used as food, forage, or biofuel, and has potential in pharmaceuticals and cosmetics. Increasing interest in is due to its extreme salt tolerance and well growth in marginal saline soils. However, the variation in its functional traits in response to environmental conditions is still poorly studied. There are still questions regarding the optimal level of salinity for different traits. Therefore, we worked to address the question if traits from different scales are controlled by salinity level. Based on performed pot experiment, we found that almost all traits are salinity dependent but affected in different ways. We demonstrated that morphological, biomass, and anatomical properties indicate optimum growth between 200 and 400 mM NaCl and growth limitations at 0, 800, and 1000 mM NaCl. Moreover, we found the most affected traits which include photosynthetic pigments and protein content, plant surface area, peroxidase activity, and anatomic traits related to cell shape. Our results significantly expanded the knowledge about functional traits variation in response to salinity, which can be important for discovering regulating processes and for possible future agricultural applications.

摘要

L.生长在周期性被咸水或微咸水淹没的地区。它具有潜在的经济价值,因为它可以用作食物、饲料或生物燃料,并且在制药和化妆品领域具有潜力。对其兴趣的增加归因于其极强的耐盐性以及在边缘盐渍土壤中良好的生长情况。然而,其功能性状对环境条件响应的变化仍研究不足。关于不同性状的最佳盐度水平仍存在问题。因此,我们致力于解决不同尺度的性状是否受盐度水平控制这一问题。基于所进行的盆栽实验,我们发现几乎所有性状都依赖于盐度,但受到的影响方式不同。我们证明形态、生物量和解剖学特性表明在200至400 mM NaCl之间生长最佳,而在0、800和1000 mM NaCl时生长受限。此外,我们发现受影响最大的性状包括光合色素和蛋白质含量、植物表面积、过氧化物酶活性以及与细胞形状相关的解剖学性状。我们的结果显著扩展了关于L.功能性状对盐度响应变化的认识,这对于发现调控过程以及未来可能的农业应用可能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1591/9033102/43be4e586404/plants-11-01051-g001.jpg

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