Uptake of an endocytic marker by rice cells: Variations related to osmotic and saline stress

被引:13
作者
Bahaji, A
Aniento, F
Cornejo, MJ [1 ]
机构
[1] Univ Valencia, Dept Biol Vegetal, E-46003 Valencia, Spain
[2] Univ Valencia, Dept Bioquim & Biol Mol, E-46003 Valencia, Spain
关键词
biotinylated markers; endocytosis; osmotic and saline stress; plant cells; rice (Oryza sativa L.);
D O I
10.1093/pcp/pcg133
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Saline and osmotic stress are the main abiotic factors limiting the productivity of rice and other crop plants. Although both coincide in generating water deficit and affect many aspects of plant growth and development similarly, some effects of salinity are distinctively related to the ionic component of salt stress. At the cellular level, dessication tolerance is largely dependent on the cell's ability for osmotic adjustment. Here, we have studied the effects of saline and osmotic stress on endocytosis by rice cells, to investigate the common and distinctive effects of saline-generated stress and osmotically generated stress, and the possible involvement of endocytosis in tolerance mechanisms. For this purpose, we have used rice cell lines with different levels of tolerance and biotinylated bovine serum albumin (bBSA) as an endocytic marker, which in our previous experiments has been shown to enter rice cells by a process with the characteristics of receptor-mediated endocytosis. Our results indicate that the pattern of uptake is common to both types of stress. Thus, when rice cells were subjected to saline or osmotic stress there was an initial dose-dependent inhibition of uptake. However, after more extended stress periods, there was an activation of uptake in the stressed cells. This late activation appears mainly related to the inhibition of growth commonly caused by the different stress agents used in this study. When using cell lines with different degrees of tolerance, the level of uptake activation varied as a function of the type of stress. Thus, under osmotic stress, a higher stress tolerance was directly related to a higher bBSA uptake, while the opposite occurred under saline stress. The possible role of endocytosis in the cellular responses to osmotic and saline stress is discussed.
引用
收藏
页码:1100 / 1111
页数:12
相关论文
共 46 条
[31]   Physiological and genomic variations in rice cells recovered from direct immersion and storage in liquid nitrogen [J].
Moukadiri, O ;
Lopes, CR ;
Cornejo, MJ .
PHYSIOLOGIA PLANTARUM, 1999, 105 (03) :442-449
[32]   Osmotic stress activates distinct lipid and MAPK signalling pathways in plants [J].
Munnik, T ;
Meijer, HJG .
FEBS LETTERS, 2001, 498 (2-3) :172-178
[33]  
OPARKA KJ, 1993, J EXP BOT, V44, P247
[34]   Short-term salinity and high temperature stress-associated ultrastructural alterations in young leaf cells of Oryza sativa L. [J].
Pareek, A ;
Singla, SL ;
Grover, A .
ANNALS OF BOTANY, 1997, 80 (05) :629-639
[35]   Cytosolic acidification as a signal mediating hyperosmotic stress responses in Dictyostelium discoideum [J].
Pintsch, T ;
Satre, M ;
Klein, G ;
Martin, JB ;
Schuster, SC .
BMC CELL BIOLOGY, 2001, 2 (1) :art. no.-9
[36]   ARRESTED EMBRYOS FROM THE BIO1 AUXOTROPH OF ARABIDOPSIS-THALIANA CONTAIN REDUCED LEVELS OF BIOTIN [J].
SHELLHAMMER, J ;
MEINKE, D .
PLANT PHYSIOLOGY, 1990, 93 (03) :1162-1167
[37]   The role of phosphoinositides in membrane transport [J].
Simonsen, A ;
Wurmser, AE ;
Emr, SD ;
Stenmark, H .
CURRENT OPINION IN CELL BIOLOGY, 2001, 13 (04) :485-492
[38]  
STEPONKUS PL, 1991, SOC EXPT BIOL SEMINA, V45, P103
[39]   Plant mitogen-activated protein kinase signaling cascades [J].
Tena, G ;
Asai, T ;
Chiu, WL ;
Sheen, J .
CURRENT OPINION IN PLANT BIOLOGY, 2001, 4 (05) :392-400
[40]   STUDIES ON REDUCTION OF 2,3,5-TRIPHENYLTETRAZOLIUM CHLORIDE AS A VIABILITY ASSAY FOR PLANT-TISSUE CULTURES [J].
TOWILL, LE ;
MAZUR, P .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1975, 53 (11) :1097-1102