Larsen Paul B, Geisler Matt J B, Jones Carol A, Williams Kelly M, Cancel Jesse D
Department of Biochemistry, University of California, Riverside, CA 92521, USA.
Plant J. 2005 Feb;41(3):353-63. doi: 10.1111/j.1365-313X.2004.02306.x.
Aluminum (Al) toxicity in acid soils is a worldwide agricultural problem that severely limits crop productivity through inhibition of root growth. Previously, Arabidopsis mutants with increased Al sensitivity were isolated in order to identify genes important for Al tolerance in plants. One mutant, als3, exhibited extreme root growth inhibition in the presence of Al, suggesting that this mutation negatively impacts a gene required for Al tolerance. Map-based cloning of the als3-1 mutation resulted in the isolation of a novel gene that encodes a previously undescribed ABC transporter-like protein, which is highly homologous to a putative bacterial metal resistance protein, ybbM. Northern analysis for ALS3 expression revealed that it is found in all organs examined, which is consistent with the global nature of Al sensitivity displayed by als3, and that expression increases in roots following Al treatment. Based on GUS fusion and in situ hybridization analyses, ALS3 is primarily expressed in leaf hydathodes and the phloem throughout the plant, along with the root cortex following Al treatment. Immunolocalization indicates that ALS3 predominantly accumulates in the plasma membrane of cells that express ALS3. From our results, it appears that ALS3 encodes an ABC transporter-like protein that is required for Al resistance/tolerance and may function to redistribute accumulated Al away from sensitive tissues in order to protect the growing root from the toxic effects of Al.
酸性土壤中的铝(Al)毒性是一个全球性的农业问题,它通过抑制根系生长严重限制了作物产量。此前,为了鉴定植物中对铝耐受性至关重要的基因,分离出了对铝敏感性增加的拟南芥突变体。其中一个突变体als3在铝存在的情况下表现出极端的根系生长抑制,这表明该突变对铝耐受性所需的一个基因产生了负面影响。对als3 - 1突变进行图位克隆,分离出了一个新基因,该基因编码一种此前未描述过的ABC转运蛋白样蛋白,它与一种假定的细菌金属抗性蛋白ybbM高度同源。对ALS3表达的Northern分析表明,在所检测的所有器官中都能发现它,这与als3所表现出的铝敏感性的全局性一致,并且在铝处理后根中的表达增加。基于GUS融合和原位杂交分析,ALS3主要在整个植物的叶水孔和韧皮部表达,铝处理后根皮层也表达。免疫定位表明,ALS3主要积累在表达ALS3的细胞的质膜中。从我们的结果来看,似乎ALS3编码一种对铝抗性/耐受性必需的ABC转运蛋白样蛋白,其功能可能是将积累的铝从敏感组织重新分配出去,以保护生长中的根免受铝的毒性影响。