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Nuclear Migration: An Indicator of Plant Salinity Tolerance in vitro

机译:核迁移:体外植物耐盐性的指标

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摘要

In order to understand the mechanisms underlying acquisition of tolerance to salinity, we recently produced callus tissues of tobacco and Medicago truncatula resistant to NaCl-induced salt stress following application of a step-up recurrent selection method. The effects of salinity on cell size are known, but those on cell morphometry including cell and nuclear surface area and position of nuclei within salt stress resistant cells were never studied before. This work fills that gap, using suspension cultured cells of M. truncatula A17 initiated from callus, and Nicotiana tabacum BY-2 cell line resistant to increasing NaCl concentrations up to 150 mM NaCl. The surface area of salinity resistant cells of M. truncatula A17 and N. tabacum BY2 and their nuclei, produced by step-up recurrent selection, were reduced, and cells elongated as NaCl increased, but these parameters proved to be unreliable in explaining cell survival and growth at high NaCl. Conversely, nuclei of resistant cells migrated from the center to the periphery of the cytoplasm close to the walls. Nuclear marginalization was for the first time observed as a result of salt stress in plant cells, and could be a novel helpful morphological marker of acquisition of salinity tolerance.
机译:为了了解获得耐盐性的基本机制,我们最近应用逐步重复选择方法,生产了对NaCl诱导的盐胁迫具有抗性的烟草和苜蓿苜蓿的愈伤组织。盐度对细胞大小的影响是已知的,但以前从未研究过盐度抗性细胞对细胞形态的影响,包括细胞和核表面积以及核的位置。这项工作填补了这一空白,使用了从愈伤组织启动的截叶分枝杆菌A17悬浮培养的细胞,以及对NaCl浓度增加至150 mM NaCl具有抗性的烟草BY-2细胞系。递升选择提高了截叶分枝杆菌A17和烟草N.2的耐盐碱细胞的表面积以及它们的细胞核,并且随着NaCl的增加细胞伸长了,但这些参数被证明在解释细胞存活方面是不可靠的在高氯化钠下生长。相反,抗性细胞的细胞核从细胞质中心向壁附近迁移。首次由于植物细胞中的盐胁迫而观察到核边缘化,它可能是获得耐盐性的新型有用的形态标志。

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