Recent Updates on ALMT Transporters' Physiology, Regulation, and Molecular Evolution in Plants

被引:3
作者
Dabravolski, Siarhei A. [1 ]
Isayenkov, Stanislav V. [2 ,3 ]
机构
[1] Braude Acad Coll Engn, Dept Biotechnol Engn, Snunit 51, IL-2161002 Karmiel, Israel
[2] Martin Luther Univ Halle Wittenberg, Inst Agr & Nutr Sci, Betty Heimann Str 3, D-06120 Halle, Germany
[3] Natl Acad Sci Ukraine, Inst Food Biotechnol & Genom, Dept Plant Food Prod & Biofortificat, Osipovskogo Str 2a, UA-04123 Kiev, Ukraine
来源
PLANTS-BASEL | 2023年 / 12卷 / 17期
关键词
ALMT; anion channel; aluminium tolerance; malate transport; STOP1; phosphate deficiency; VACUOLAR ANION CHANNEL; ZINC-FINGER PROTEIN; MALATE ACCUMULATION; SIGNALING PATHWAY; LOW PH; ALUMINUM; ARABIDOPSIS; EXPRESSION; TRANSCRIPTION; STOP1;
D O I
10.3390/plants12173167
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Aluminium toxicity and phosphorus deficiency in soils are the main interconnected problems of modern agriculture. The aluminium-activated malate transporters (ALMTs) comprise a membrane protein family that demonstrates various physiological functions in plants, such as tolerance to environmental Al3+ and the regulation of stomatal movement. Over the past few decades, the regulation of ALMT family proteins has been intensively studied. In this review, we summarise the current knowledge about this transporter family and assess their involvement in diverse physiological processes and comprehensive regulatory mechanisms. Furthermore, we have conducted a thorough bioinformatic analysis to decipher the functional importance of conserved residues, structural components, and domains. Our phylogenetic analysis has also provided new insights into the molecular evolution of ALMT family proteins, expanding their scope beyond the plant kingdom. Lastly, we have formulated several outstanding questions and research directions to further enhance our understanding of the fundamental role of ALMT proteins and to assess their physiological functions.
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页数:18
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