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LaALMT1 介导磷饥饿白 Lupin 根尖端和金属根到梢转运中的苹果酸释放。

LaALMT1 mediates malate release from phosphorus-deficient white lupin root tips and metal root to shoot translocation.

机构信息

Institute of Crop Science, Nutritional Crop Physiology, University of Hohenheim, Stuttgart, Germany.

出版信息

Plant Cell Environ. 2020 Jul;43(7):1691-1706. doi: 10.1111/pce.13762. Epub 2020 Apr 12.

DOI:10.1111/pce.13762
PMID:32239684
Abstract

Under phosphorus (P) deficiency, Lupinus albus (white lupin) releases large amounts of organic acid anions from specialized root structures, so-called cluster or proteoid roots, to mobilize and acquire sparingly soluble phosphates from a restricted soil volume. The molecular mechanisms underlying this release and its regulation are, however, poorly understood. Here, we identified a gene belonging to the aluminium (Al)-activated malate transporter (ALMT) family that specifically contributes to malate, but not citrate release. This gene, LaALMT1, was most prominently expressed in the root apices under P deficiency, including those of cluster roots and was also detected in the root stele. Contrary to several ALMT homologs in other species, the expression was not stimulated, but moderately repressed by Al. Aluminium-independent malate currents were recorded from the plasma membrane localized LaALMT1 expressed in Xenopus oocytes. In composite lupins with transgenic roots, LaALMT1 was efficiently mutated by CRISPR-Cas9, leading to diminished malate efflux and lower xylem sap malate concentrations. When grown in an alkaline P-deficient soil, mutant shoot phosphate concentrations were similar, but iron and potassium concentrations were diminished in old leaves, suggesting a role for ALMT1 in metal root to shoot translocation, a function that was also supported by growth in hydroponics.

摘要

在磷(P)缺乏的情况下,白羽扇豆(白 Lupinus albus)从专门的根结构(所谓的簇状或蛋白根)中释放大量的有机酸阴离子,以从有限的土壤体积中动员和获取难溶性磷酸盐。然而,这种释放及其调节的分子机制知之甚少。在这里,我们鉴定了一个属于铝(Al)激活的苹果酸转运蛋白(ALMT)家族的基因,该基因专门参与苹果酸的释放,而不参与柠檬酸的释放。该基因,LaALMT1,在 P 缺乏下特别是在根尖中表达,包括簇状根的根尖,并且在根中柱中也有检测到。与其他物种中的几种 ALMT 同源物不同,表达不是被 Al 刺激,而是被适度抑制。从在非洲爪蟾卵母细胞中表达的质膜定位的 LaALMT1 中记录到铝独立的苹果酸电流。在具有转基因根的复合羽扇豆中,CRISPR-Cas9 有效地突变了 LaALMT1,导致苹果酸外排减少,木质部汁液中苹果酸浓度降低。当在碱性 P 缺乏的土壤中生长时,突变体地上部磷酸盐浓度相似,但老叶中的铁和钾浓度降低,表明 ALMT1 在金属从根到地上部的转运中起作用,这一功能也得到了水培生长的支持。

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