Redox signaling in colonial hydroids: many pathways for peroxide

被引:15
作者
Blackstone, NW [1 ]
Bivins, MJ [1 ]
Cherry, KS [1 ]
Fletcher, RE [1 ]
Geddes, GC [1 ]
机构
[1] No Illinois Univ, Dept Biol Sci, De Kalb, IL 60115 USA
关键词
anti-oxidant; clonal; cnidarian; colony development; Eirene; evolutionary morphology; hydroid; Podocoryna; Podocoryne; reactive oxygen species; redox signalling;
D O I
10.1242/jeb.01394
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Studies of mitochondrial redox signaling predict that the colonial hydroids Eirene viridula and Podocoryna carnea should respond to manipulations of reactive oxygen species (ROS). Both species encrust surfaces with feeding Polyps connected by networks of stolons; P. carnea is more 'sheet-like' with closely spaced polyps and short stolons, while E. viridula is more 'runner-likel with widely spaced polyps and long stolons. Treatment with the chemical antioxidant vitamin C diminishes ROS in mitochondrion-rich epitheliomuscular cells (EMCs) and produces phenotypic effects (sheet-like growth) similar to uncouplers of oxidative phosphorylation. In peripheral stolon tips, treatment with vitamin C triggers a dramatic increase of ROS that is followed by tissue death and stolon regression. The enzymatic anti-oxidant catalase is probably not taken up by the colony but, rather, converts hydrogen peroxide in the medium to water and oxygen. Exogenous catalase does not affect ROS in mitochondrion-rich EMCs, but does increase the amounts of ROS emitted from peripheral stolons, resulting in rapid, runner-like growth. Treatment with exogenous hydrogen peroxide increases ROS levels in stolon tips and results in somewhat faster colony growth. Finally, untreated colonies of E. viridula exhibit higher levels of ROS in stolon tips than untreated colonies of P. carnea. ROS may participate in a number of putative signaling pathways: (1) high levels of ROS may trigger cell and tissue death in peripheral stolon tips; (2) more moderate levels of ROS in stolon tips may trigger outward growth, inhibit branching and, possibly, mediate the redox signaling of mitochondrion-rich EMCs; and (3) ROS may have an extra-colony function, perhaps in suppressing the growth of bacteria.
引用
收藏
页码:383 / 390
页数:8
相关论文
共 29 条
[1]   The coenzyme Q10 analog decylubiquinone inhibits the redox-activated mitochondrial permeability transition - Role of mitochondrial respiratory complex III [J].
Armstrong, JS ;
Whiteman, M ;
Rose, P ;
Jones, DP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (49) :49079-49084
[2]  
Blackstone NW, 1999, J EXP BIOL, V202, P3541
[3]  
Blackstone NW, 2004, INVERTEBR BIOL, V123, P43
[4]   Phylogenetic considerations of clonality, coloniality, and, mode of germline development in animals [J].
Blackstone, NW ;
Jasker, BD .
JOURNAL OF EXPERIMENTAL ZOOLOGY PART B-MOLECULAR AND DEVELOPMENTAL EVOLUTION, 2003, 297B (01) :35-47
[5]   Redox signaling in the growth and development of colonial hydroids [J].
Blackstone, NW .
JOURNAL OF EXPERIMENTAL BIOLOGY, 2003, 206 (04) :651-658
[6]  
Blackstone NW, 2001, J EXP BIOL, V204, P1845
[7]   SHAPE VARIATION IN HYDRACTINIID HYDROIDS [J].
BLACKSTONE, NW ;
BUSS, LW .
BIOLOGICAL BULLETIN, 1991, 180 (03) :394-405
[8]  
BLACKSTONE NW, 2005, IN PRESS P R SOC LON
[9]  
BLACKSTONE NW, 2005, IN PRESS HYDROBIOLOG
[10]   Bacterial resistance of daf-2 mutants [J].
Bolm, M ;
Chhatwal, GS ;
Jansen, WTM .
SCIENCE, 2004, 303 (5666) :1976-1976