Dpto. Nutrición Vegetal, Centro de Edafología y Biología Aplicada del Segura (CEBAS-CSIC), Campus de Espinardo, 30100, Murcia, Spain.
Planta. 2013 May;237(5):1297-310. doi: 10.1007/s00425-013-1849-5. Epub 2013 Feb 2.
The aim of this study was to compare differences in water relations in the leaves of three broccoli cultivars and differential induction of the expression of PIP2 aquaporin isoforms under salt stress. Although broccoli is known to be moderately tolerant to salinity, scarce information exists about the involvement of leaf aquaporins in its adaptation to salinity. Thus, leaf water relations, leaf cell hydraulic conductivity (Lpc), gas exchange parameters and the PIP2 expression pattern were determined for short- (15 h) and long- (15 days) term NaCl treatments. In the long term, the lower half-time of water exchange in the cells of cv. Naxos, compared with Parthenon and Chronos, and its increased PIP2 abundance may have contributed to its Lpc maintenance. This unmodified Lpc in cv. Naxos under prolonged salinity may have diluted NaCl in the leaves, as suggested by lower Na(+) concentrations in the leaf sap. By contrast, the increase in the half-time of water exchange and the lower PIP2 abundance in cvs. Chronos and Parthenon would have contributed to the reduced Lpc values. In cv. Parthenon, there were no differences between the ε values of control and salt-stressed plants; in consequence, cell turgor was enhanced. Also, the increases in BoPIP2;2 and BoPIP2;3 expression in cv. Chronos for the short-term NaCl treatment suggest that these isoforms are involved in osmotic regulation as downstream factors in this cultivar, in fact, in the short-term, Chronos had a significantly reduced osmotic potential and higher PIP2 isoforms expression.
本研究旨在比较三种西兰花品种叶片水分关系的差异,以及在盐胁迫下 PIP2 水通道蛋白同工型表达的差异诱导。尽管西兰花被认为对盐度中度耐受,但关于叶片水通道蛋白在其适应盐度中的作用的信息很少。因此,测定了短期(15 h)和长期(15 天)NaCl 处理下叶片水分关系、叶片细胞水力传导率(Lpc)、气体交换参数和 PIP2 表达模式。在长期处理中,与 Parthenon 和 Chronos 相比,Naxos 品种叶片细胞的水交换半衰期更短,其 PIP2 丰度增加,可能有助于维持 Lpc。Naxos 品种在长期盐胁迫下未改变的 Lpc 可能会稀释叶片中的 NaCl,因为叶片汁液中的 Na+浓度较低。相比之下,Chronos 和 Parthenon 品种水交换半衰期的增加和 PIP2 丰度的降低,导致 Lpc 值降低。在 Parthenon 品种中,对照和盐胁迫植物的 ε 值没有差异;因此,细胞膨压增加。此外,Chronos 品种在短期 NaCl 处理下 BoPIP2;2 和 BoPIP2;3 表达增加,表明这些同工型作为该品种的下游因子参与渗透调节,事实上,在短期内,Chronos 的渗透势显著降低,PIP2 同工型表达增加。