Al Hassan Mohamad, López-Gresa María Del Pilar, Boscaiu Monica, Vicente Oscar
Universitat Politècnica de València, Instituto de Biología Molecular y Celular de Plantas (UPV-CSIC), CPI, edificio 8E, Camino de Vera s/n, 46022 Valencia, Spain.
Universitat Politècnica de València, Instituto Agroforestal Mediterráneo (UPV), CPI, edificio 8E, Camino de Vera s/n, 46022 Valencia, Spain.
Funct Plant Biol. 2016 Oct;43(10):949-960. doi: 10.1071/FP16007.
Comparative studies on the responses to salinity and drought were carried out in three Juncus species, two halophytes (Juncus maritimus Lam. and Juncus acutus L.) and one more salt-sensitive (Juncus articulatus L.). Salt tolerance in Juncus depends on the inhibition of transport of toxic ions to the aerial part. In the three taxa studied Na+ and Cl- accumulated to the same extent in the roots of salt treated plants; however, ion contents were lower in the shoots and correlated with the relative salt sensitivity of the species, with the lowest levels measured in the halophytes. Activation of K+ transport at high salt concentration could also contribute to salt tolerance in the halophytes. Maintenance of cellular osmotic balance is mostly based on the accumulation of sucrose in the three species. Yet, neither the relative salt-induced increase in sugar content nor the absolute concentrations reached can explain the observed differences in salt tolerance. In contrast, proline increased significantly in the presence of salt only in the salt-tolerant J. maritimus and J. acutus, but not in J. articulatus. Similar patterns of osmolyte accumulation were observed in response to water stress, supporting a functional role of proline in stress tolerance mechanisms in Juncus.
对三种灯心草属植物进行了盐度和干旱响应的比较研究,其中两种是盐生植物(滨海灯心草和尖锐灯心草),另一种对盐更敏感(节叶灯心草)。灯心草属植物的耐盐性取决于对有毒离子向地上部分运输的抑制。在所研究的三个分类群中,盐处理植物的根中Na+和Cl-积累程度相同;然而,地上部分的离子含量较低,且与物种的相对盐敏感性相关,盐生植物中的含量最低。高盐浓度下K+运输的激活也可能有助于盐生植物的耐盐性。细胞渗透平衡的维持主要基于三种植物中蔗糖的积累。然而,无论是相对盐诱导的糖含量增加还是达到的绝对浓度都无法解释观察到的耐盐性差异。相反,脯氨酸仅在耐盐的滨海灯心草和尖锐灯心草中在盐存在时显著增加,而在节叶灯心草中没有增加。在水分胁迫下观察到类似的渗透调节物质积累模式,这支持了脯氨酸在灯心草属植物胁迫耐受机制中的功能作用。