HvLsi1 is a silicon influx transporter in barley

被引:205
作者
Chiba, Yukako [1 ]
Mitani, Namiki [1 ]
Yamaji, Naoki [1 ]
Ma, Jian Feng [1 ]
机构
[1] Okayama Univ, Bioresources Res Inst, Kurashiki, Okayama 7100046, Japan
关键词
aquaporin; barley; influx; silicon; transporter; HIGHER-PLANTS; RICE; RESISTANCE; ROOTS; LSI1;
D O I
10.1111/j.1365-313X.2008.03728.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Most plants accumulate silicon in their bodies, and this is thought to be important for resistance against biotic and abiotic stresses; however, the molecular mechanisms for Si uptake and accumulation are poorly understood. Here, we describe an Si influx transporter, HvLsi1, in barley. This protein is homologous to rice influx transporter OsLsi1 with 81% identity, and belongs to a Nod26-like major intrinsic protein sub-family of aquaporins. Heterologous expression in both Xenopus laevis oocytes and a rice mutant defective in Si uptake showed that HvLsi1 has transport activity for silicic acid. Expression of HvLsi1 was detected specifically in the basal root, and the expression level was not affected by Si supply. There was a weak correlation between Si uptake and the expression level of HvLsi1 in eight cultivars tested. In the seminal roots, HvLsi1 is localized on the plasma membrane on the distal side of epidermal and cortical cells. HvLsi1 is also located in lateral roots on the plasma membrane of hypodermal cells. These cell-type specificity of localization and expression patterns of HvLsi1 are different from those of OsLsi1. These observations indicate that HvLsi1 is a silicon influx transporter that is involved in radial transport of Si through the epidermal and cortical layers of the basal roots of barley.
引用
收藏
页码:810 / 818
页数:9
相关论文
共 22 条
[1]   Boosting silica levels in wheat leaves reduces grazing by rabbits [J].
Cotterill, Jane V. ;
Watkins, Richard W. ;
Brennon, Clare B. ;
Cowan, David P. .
PEST MANAGEMENT SCIENCE, 2007, 63 (03) :247-253
[2]   Silicon and plant disease resistance against pathogenic fungi [J].
Fauteux, F ;
Rémus-Borel, W ;
Menzies, JG ;
Bélanger, RR .
FEMS MICROBIOLOGY LETTERS, 2005, 249 (01) :1-6
[3]   Phylogenetic variation in the silicon composition of plants [J].
Hodson, MJ ;
White, PJ ;
Mead, A ;
Broadley, MR .
ANNALS OF BOTANY, 2005, 96 (06) :1027-1046
[4]  
Lux A., 2004, Root Research, V13, P117, DOI [10.3117/rootres.13.117, DOI 10.3117/ROOTRES.13.117]
[5]   Functions and transport of silicon in plants [J].
Ma, J. F. ;
Yamaji, N. .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2008, 65 (19) :3049-3057
[6]  
Ma J.F., 2002, SOIL FERTILIZER PLAN
[7]  
Ma JF, 2003, PROG MOLEC, V33, P127
[8]   A silicon transporter in rice [J].
Ma, JF ;
Tamai, K ;
Yamaji, N ;
Mitani, N ;
Konishi, S ;
Katsuhara, M ;
Ishiguro, M ;
Murata, Y ;
Yano, M .
NATURE, 2006, 440 (7084) :688-691
[9]  
Ma JF, 2004, SOIL SCI PLANT NUTR, V50, P11, DOI 10.1080/00380768.2004.10408447
[10]  
Ma JF, 2001, PLANT PHYSIOL, V127, P1773, DOI 10.1104/pp.010271