Department of Biology, Harding University, Searcy, Arkansas 72149, USA.
G3 (Bethesda). 2013 Jan;3(1):131-41. doi: 10.1534/g3.112.004655. Epub 2013 Jan 1.
Levels of the phytohormone indole-3-acetic acid (IAA) can be altered by the formation and hydrolysis of IAA conjugates. The isolation and characterization of Arabidopsis thaliana mutants with reduced IAA-conjugate sensitivity and wild-type IAA responses is advancing the understanding of auxin homeostasis by uncovering the factors needed for conjugate metabolism. For example, the discovery that the IAA-Ala-resistant mutant iar1 is defective in a protein in the ZIP family of metal transporters uncovered a link between metal homeostasis and IAA-conjugate sensitivity. To uncover additional factors impacting auxin conjugate metabolism, we conducted a genetic modifier screen and isolated extragenic mutations that restored IAA-amino acid conjugate sensitivity to the iar1 mutant. One of these suppressor mutants is defective in a putative cation diffusion facilitator, MTP5 (At3g12100; formerly known as MTPc2). Loss of MTP5 function restored IAA conjugate sensitivity to iar1 but not to mutants defective in IAA-amino acid conjugate amidohydrolases. Our results are consistent with a model in which MTP5 and IAR1 transport metals in an antagonistic fashion to regulate metal homeostasis within the subcellular compartment in which the IAA-conjugate amidohydrolases reside, and support previous suggestions that the ion composition in this compartment influences hydrolase activity.
植物激素吲哚-3-乙酸(IAA)的水平可以通过 IAA 缀合物的形成和水解来改变。拟南芥突变体中 IAA 缀合物敏感性降低和野生型 IAA 反应的分离和表征,通过揭示代谢缀合物所需的因素,促进了对生长素稳态的理解。例如,发现 IAA-丙氨酸抗性突变体 iar1 在金属转运蛋白 ZIP 家族的一种蛋白中存在缺陷,揭示了金属稳态和 IAA 缀合物敏感性之间的联系。为了揭示影响生长素缀合物代谢的其他因素,我们进行了遗传修饰剂筛选,并分离出恢复 iar1 突变体对 IAA-氨基酸缀合物敏感性的外显基因突变。这些抑制突变体之一是假定的阳离子扩散促进因子 MTP5(At3g12100;以前称为 MTPc2)的缺陷。MTP5 功能的丧失恢复了 iar1 对 IAA 缀合物的敏感性,但对 IAA-氨基酸缀合物酰胺水解酶缺陷的突变体没有恢复。我们的结果与 MTP5 和 IAR1 以拮抗方式运输金属以调节 IAA 缀合物酰胺水解酶所在的亚细胞隔室中的金属稳态的模型一致,并支持先前的建议,即该隔室中的离子组成影响水解酶活性。