Verslues Paul E, Bray Elizabeth A
Department of Botany and Plant Sciences and the Center for Plant Cell Biology, University of California, Riverside, CA 92521, USA.
Plant Physiol. 2004 Sep;136(1):2831-42. doi: 10.1104/pp.104.045856. Epub 2004 Sep 3.
With the goal of identifying molecular components of the low-water-potential response, we have carried out a two-part selection and screening strategy to identify new Arabidopsis mutants. Using a system of polyethylene glycol-infused agar plates to impose a constant low-water-potential stress, putative mutants impaired in low-water-potential induction of the tomato (Lycopersicon esculentum) le25 promoter were selected. These lines were then screened for altered accumulation of free Pro. The seedlings of 22 mutant lines had either higher or lower Pro content than wild type when exposed to low water potential. Two mutants, designated low-water-potential response1 (lwr1) and lwr2, were characterized in detail. In addition to higher Pro accumulation, lwr1 seedlings had higher total solute content, greater osmotic adjustment at low water potential, altered abscisic acid content, and increased sensitivity to applied abscisic acid with respect to Pro content. lwr1 also had altered growth and morphology. lwr2, in contrast, had lower Pro content and less osmotic adjustment leading to greater water loss at low water potential. Both lwr1 and lwr2 also had altered leaf solute content and water relations in unstressed soil-grown plants. In both mutants, the effects on solute content were too large to be explained by the changes in Pro content alone, indicating that LWR1 and LWR2 affect multiple aspects of cellular osmoregulation.
为了确定低水势响应的分子成分,我们实施了一个分为两部分的筛选策略来鉴定拟南芥新突变体。利用聚乙二醇灌注琼脂平板系统施加恒定的低水势胁迫,筛选在番茄(Lycopersicon esculentum)le25启动子的低水势诱导中受损的假定突变体。然后对这些株系进行游离脯氨酸积累变化的筛选。当暴露于低水势时,22个突变株系的幼苗脯氨酸含量要么高于野生型,要么低于野生型。详细研究了两个分别命名为低水势响应1(lwr1)和低水势响应2(lwr2)的突变体。除了脯氨酸积累增加外,lwr1幼苗的总溶质含量更高,在低水势下渗透调节能力更强,脱落酸含量改变,并且在脯氨酸含量方面对施加的脱落酸敏感性增加。lwr1的生长和形态也发生了改变。相比之下,lwr2的脯氨酸含量较低,渗透调节能力较弱,导致在低水势下水分损失更大。lwr1和lwr2在未受胁迫的土壤种植植物中叶片溶质含量和水分关系也发生了改变。在这两个突变体中,对溶质含量的影响太大,无法仅用脯氨酸含量的变化来解释,这表明LWR1和LWR2影响细胞渗透调节的多个方面。