Root K+ Acquisition in Plants: The Arabidopsis thaliana Model

被引:136
作者
Aleman, Fernando [1 ]
Nieves-Cordones, Manuel [1 ]
Martinez, Vicente [1 ]
Rubio, Francisco [1 ]
机构
[1] Ctr Edafol & Biol Aplicada Segura CSIC, Murcia 30100, Spain
关键词
Arabidopsis; Nutrition; Potassium; Salinity; Uptake; HIGH-AFFINITY POTASSIUM; THELLUNGIELLA-HALOPHILA; PLASMA-MEMBRANE; SALT TOLERANCE; NA+ UPTAKE; TRANSPORT SYSTEMS; CHANNEL ACTIVITY; PROTEIN-KINASE; TOMATO ROOTS; EXPRESSION;
D O I
10.1093/pcp/pcr096
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
K+ is an essential macronutrient required by plants to complete their life cycle. It fulfills important functions and it is widely used as a fertilizer to increase crop production. Thus, the identification of the systems involved in K+ acquisition by plants has always been a research goal as it may eventually produce molecular tools to enhance crop productivity further. This review is focused on the recent findings on the systems involved in K+ acquisition. From Epstein's pioneering work > 40 years ago, K+ uptake was considered to consist of a high- and a low-affinity component. The subsequent molecular approaches identified genes encoding K+ transport systems which could be involved in the first step of K+ uptake at the plant root. Insights into the regulation of these genes and the proteins that they encode have also been gained in recent studies. A demonstration of the role of the two main K+ uptake systems at the root, AtHKA5 and AKT1, has been possible with the study of Arabidopsis thaliana T-DNA insertion lines that knock out these genes. AtHAK5 was revealed as the only uptake system at external concentrations < 10 mu M. Between 10 and 200 mu M both AtHAK5 and AKT1 contribute to K+ acquisition. At external concentrations > 500 mu M, AtHAK5 is not relevant and AKT1's contribution to K+ uptake becomes more important. At 10 mM K+, unidentified systems may provide sufficient K+ uptake for plant growth.
引用
收藏
页码:1603 / 1612
页数:10
相关论文
共 111 条
[1]   Expression of KT/KUP genes in arabidopsis and the role of root hairs in K+ uptake [J].
Ahn, SJ ;
Shin, R ;
Schachtman, DP .
PLANT PHYSIOLOGY, 2004, 134 (03) :1135-1145
[2]   Potassium/sodium steady-state homeostasis in Thellungiella halophila and Arabidopsis thaliana under long-term salinity conditions [J].
Aleman, Fernando ;
Nieves-Cordones, Manuel ;
Martinez, Vicente ;
Rubio, Francisco .
PLANT SCIENCE, 2009, 176 (06) :768-774
[3]   Differential regulation of the HAK5 genes encoding the high-affinity K+ transporters of Thellungiella halophila and Arabidopsis thaliana [J].
Aleman, Fernando ;
Nieves-Cordones, Manuel ;
Martinez, Vicente ;
Rubio, Francisco .
ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2009, 65 (2-3) :263-269
[4]   Genome-wide Insertional mutagenesis of Arabidopsis thaliana [J].
Alonso, JM ;
Stepanova, AN ;
Leisse, TJ ;
Kim, CJ ;
Chen, HM ;
Shinn, P ;
Stevenson, DK ;
Zimmerman, J ;
Barajas, P ;
Cheuk, R ;
Gadrinab, C ;
Heller, C ;
Jeske, A ;
Koesema, E ;
Meyers, CC ;
Parker, H ;
Prednis, L ;
Ansari, Y ;
Choy, N ;
Deen, H ;
Geralt, M ;
Hazari, N ;
Hom, E ;
Karnes, M ;
Mulholland, C ;
Ndubaku, R ;
Schmidt, I ;
Guzman, P ;
Aguilar-Henonin, L ;
Schmid, M ;
Weigel, D ;
Carter, DE ;
Marchand, T ;
Risseeuw, E ;
Brogden, D ;
Zeko, A ;
Crosby, WL ;
Berry, CC ;
Ecker, JR .
SCIENCE, 2003, 301 (5633) :653-657
[5]   Nutrient sensing and signalling in plants: Potassium and phosphorus [J].
Amtmann, A ;
Hammond, JP ;
Armengaud, P ;
White, PJ .
ADVANCES IN BOTANICAL RESEARCH, VOL 43: INCORPORATING ADVANCES IN PLANT PATHOLOGY, 2006, 43 :209-257
[6]   The effect of potassium nutrition on pest and disease resistance in plants [J].
Amtmann, Anna ;
Troufflard, Stephanie ;
Armengaud, Patrick .
PHYSIOLOGIA PLANTARUM, 2008, 133 (04) :682-691
[7]   Effects of N, P, K and S on metabolism: new knowledge gained from multi-level analysis [J].
Amtmann, Anna ;
Armengaud, Patrick .
CURRENT OPINION IN PLANT BIOLOGY, 2009, 12 (03) :275-283
[8]   FUNCTIONAL EXPRESSION OF A PROBABLE ARABIDOPSIS-THALIANA POTASSIUM CHANNEL IN SACCHAROMYCES-CEREVISIAE [J].
ANDERSON, JA ;
HUPRIKAR, SS ;
KOCHIAN, LV ;
LUCAS, WJ ;
GABER, RF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1992, 89 (09) :3736-3740
[9]   The potassium-dependent transcriptome of Arabidopsis reveals a prominent role of jasmonic acid in nutrient signaling [J].
Armengaud, P ;
Breitling, R ;
Amtmann, A .
PLANT PHYSIOLOGY, 2004, 136 (01) :2556-2576
[10]   Salinity induced potassium deficiency in maize plants [J].
Botella, MA ;
Martinez, V ;
Pardines, J ;
Cerda, A .
JOURNAL OF PLANT PHYSIOLOGY, 1997, 150 (1-2) :200-205