School of Biology and Environmental Sciences, University College Dublin, Dublin, Ireland.
Plant Cell Environ. 2023 Mar;46(3):747-763. doi: 10.1111/pce.14535. Epub 2023 Jan 15.
Salt stress reduces plant water flow during day and night. It is not known to which extent root hydraulic properties change in parallel. To test this idea, hydroponically grown wheat plants were grown at four levels of salt stress (50, 100, 150 and 200 mM NaCl) for 5-8d before harvest (d14-18) and subjected to a range of analyses to determine diurnal changes in hydraulic conductivity (Lp) at cell, root and plant level. Cell pressure probe analyses showed that the Lp of cortex cells was differentially affected by salt stress during day and night, and that the response to salt stress differed between the main axis of roots and lateral roots. The Aquaporin (AQP) inhibitor H O reduced Lp to a common, across treatments, level as observed in salt-stressed plants during the night. Analyses of transpiring plants and exuding root systems provided values of root Lp which were in the same range as values modeled based on cell-Lp. The results can best be explained through a change in root Lp in response to salt stress and day/night, which results from an altered activity of AQPs. qPCR gene expression analyses point to possible candidate AQP isoforms.
盐胁迫会减少植物在白天和夜间的水分流动。目前尚不清楚根液压特性在多大程度上与之平行变化。为了验证这一观点,对水培小麦植株进行了 5-8 天的 4 个盐胁迫水平(50、100、150 和 200 mM NaCl)处理,然后在收获前 5-8 天(d14-18)进行了一系列分析,以确定细胞、根系和植株水平的导水率(Lp)的昼夜变化。细胞压力探针分析表明,盐胁迫在白天和夜间对皮层细胞的 Lp 有不同的影响,并且盐胁迫对主根和侧根的响应不同。水通道蛋白(AQP)抑制剂 H₂O 将 Lp 降低到与夜间盐胁迫植物相同的共同水平。对蒸腾植物和渗出根系的分析提供了根 Lp 的值,该值与基于细胞 Lp 建模的值处于相同范围。通过根 Lp 对盐胁迫和昼夜的响应变化来解释这些结果,这是由于 AQP 的活性改变所致。qPCR 基因表达分析指向可能的候选 AQP 同工型。