Zhang Lei, Wu Xin-Xin, Wang Jinfang, Qi Chuandong, Wang Xiaoyun, Wang Gongle, Li Mingyue, Li Xingsheng, Guo Yang-Dong
Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, College of Horticulture, China Agricultural University, Beijing, China.
Shandong Huasheng Agriculture Co. Ltd, Shandong, China.
Front Plant Sci. 2018 Jan 23;8:2156. doi: 10.3389/fpls.2017.02156. eCollection 2017.
Aluminum (Al) is present in approximately 50% of the arable land worldwide and is regarded as the main limiting factor of crop yield on acidic soil. Al-induced root malate efflux plays an important role in the Al tolerance of plants. Here, the aluminum induced malate transporter (KF322104) was cloned from cabbage (). showed higher expression in roots than in shoots. The expression of was specifically induced by Al treatment, but not the trivalent cations lanthanum (La), cadmium (Cd), zinc (Zn), or copper (Cu). Subcellular localization studies were performed in onion epidermal cells and revealed that BoALMT1 was localized at the plasma membrane. Scanning Ion-selective Electrode Technique was used to analyze H flux. oocytes and expressing excreted more H under Al treatment. Overexpressing in transgenic resulted in enhanced Al tolerance and increased malate secretion. The results suggested that functions as an Al-resistant gene and encodes a malate transporter. Expressing in oocytes or indicated that BoALMT1 could increase malate secretion and H+ efflux to resist Al tolerance.
铝(Al)存在于全球约50%的耕地中,被视为酸性土壤上作物产量的主要限制因素。铝诱导的根系苹果酸外流在植物耐铝性中起重要作用。在此,从甘蓝()中克隆了铝诱导的苹果酸转运蛋白(KF322104)。在根中的表达高于地上部分。的表达受铝处理特异性诱导,但不受三价阳离子镧(La)、镉(Cd)、锌(Zn)或铜(Cu)诱导。在洋葱表皮细胞中进行了亚细胞定位研究,结果显示BoALMT1定位于质膜。采用扫描离子选择性电极技术分析H通量。铝处理下,表达的卵母细胞和分泌更多的H。在转基因中过表达导致耐铝性增强和苹果酸分泌增加。结果表明,作为一个抗铝基因发挥作用,编码一种苹果酸转运蛋白。在卵母细胞或中表达表明,BoALMT1可增加苹果酸分泌和H+外流以抵抗铝耐受性。