Research and Innovation Centre, Fondazione Edmund Mach, San Michele all'Adige, Trentino, Italy ; East Malling Research, East Malling, Kent, United Kingdom.
PLoS One. 2013 Sep 23;8(9):e74945. doi: 10.1371/journal.pone.0074945. eCollection 2013.
PIP aquaporin responses to drought stress can vary considerably depending on the isoform, tissue, species or level of stress; however, a general down-regulation of these genes is thought to help reduce water loss and prevent backflow of water to the drying soil. It has been suggested therefore, that it may be necessary for the plant to limit aquaporin production during drought stress, but it is unknown whether aquaporin down-regulation is gradual or triggered by a particular intensity of the stress. In this study, ten Fragaria PIP genes were identified from the woodland strawberry (Fragaria vesca L.) genome sequence and characterised at the sequence level. The water relations of F. vesca were investigated and the effect of different intensities of drought stress on the expression of four PIP genes, as well as how drought stress influences their diurnal transcription was determined. PIP down-regulation in the root corresponded to the level of drought stress. Moreover, transcript abundance of two genes highly expressed in the root (FvPIP1;1 and FvPIP2;1) was strongly correlated to the decline in substrate moisture content. The amplitude of diurnal aquaporin expression in the leaves was down-regulated by drought without altering the pattern, but showing an intensity-dependent effect. The results show that transcription of PIP aquaporins can be fine-tuned with the environment in response to declining water availability.
PIP 水通道蛋白对干旱胁迫的响应在很大程度上取决于同种型、组织、物种或胁迫水平;然而,这些基因的普遍下调被认为有助于减少水分流失并防止水分倒流回干燥的土壤。因此,植物在干旱胁迫期间可能需要限制水通道蛋白的产生,但尚不清楚水通道蛋白的下调是逐渐发生的,还是由特定的胁迫强度触发的。在这项研究中,从林地草莓( Fragaria vesca L.)基因组序列中鉴定出了 10 个 Fragaria PIP 基因,并在序列水平上进行了表征。研究了 F. vesca 的水分关系,确定了不同强度的干旱胁迫对 4 个 PIP 基因表达的影响,以及干旱胁迫如何影响它们的昼夜转录。根中的 PIP 下调与干旱胁迫的水平相对应。此外,在根中高度表达的两个基因( FvPIP1;1 和 FvPIP2;1)的转录丰度与基质水分含量的下降强烈相关。叶片中昼夜水通道蛋白表达的振幅在没有改变模式的情况下被干旱下调,但表现出与强度相关的效应。结果表明,PIP 水通道蛋白的转录可以根据环境进行微调,以响应可用水分的减少。