Non-structural carbohydrate reserves of eelgrass Zostera marina

被引:134
作者
Burke, MK
Dennison, WC
Moore, KA
机构
[1] UNIV MARYLAND SYST, HORN POINT ENVIRONM LAB, CAMBRIDGE, MD 21613 USA
[2] COLL WILLIAM & MARY, VIRGINIA INST MARINE SCI, SCH MARINE SCI, GLOUCESTER POINT, VA 23062 USA
关键词
eelgrass; Zostera; seagrass; starch; sugar; shading; carbon balance; biomass;
D O I
10.3354/meps137195
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The high minimum Light requirement of eelgrass Zostera marina L. suggests that this species has difficulty in maintaining a positive carbon balance except under high light conditions. The carbon balance of Z. marina can be studied by following seasonal changes in non-structural carbohydrate (NSC) reserves, however, little is known about the seasonal variation in NSC reserves in seagrasses or the influence of shading on NSC reserve content and distribution. Seasonal changes in eelgrass NSC reserves were measured in a shallow coastal lagoon, Chincoteague Bay, Maryland/Virginia, USA, near the southern edge of this species' distributional range. Concentrations of sugar varied seasonally in leaves, rhizomes and roots, with maximum concentrations occurring in the rhizomes. In contrast, starch concentrations did not vary with the season, but were highest in the roots. Seasonal peaks in rhizome NSC reserves parallel the spring and fall bimodal growth patterns observed for Z., marina in the region. Total NSC reserves change from an estimated 52 to 73 g m(-2) in June to 4 to 18 g m(-2) in January, or a decrease of 75 to 92%. Experimental shading for 3 wk in the spring reduced (p < 0.001) sugar but not starch concentrations in leaves (48%), rhizomes (40%) and roots (51%). In addition, shading reduced (p < 0.05) leaf biomass (34%), root and rhizome biomass (23%) and density (27%). Potential NSC reserve storage during shading was reduced by an estimated 66%. Spring appears to be an important time for both growth and storage of NSC reserves in Z. marina, and the NSC reserves are generally depleted throughout the remainder of the year. Turbidity during this springtime 'window of opportunity' may jeopardize subsequent survival as a result of inadequate NSC reserves to maintain a positive carbon balance during the rest of the year.
引用
收藏
页码:195 / 201
页数:7
相关论文
共 35 条
[22]   EVIDENCE FOR THE INFLUENCE OF SEAGRASSES ON THE BENTHIC NITROGEN-CYCLE IN A COASTAL-PLAIN ESTUARY NEAR BEAUFORT, NORTH-CAROLINA (USA) [J].
KENWORTHY, WJ ;
ZIEMAN, JC ;
THAYER, GW .
OECOLOGIA, 1982, 54 (02) :152-158
[23]   EFFECTS OF TEMPERATURE ON PHOTOSYNTHESIS AND RESPIRATION IN EELGRASS (ZOSTERA-MARINA L) [J].
MARSH, JA ;
DENNISON, WC ;
ALBERTE, RS .
JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 1986, 101 (03) :257-267
[24]   SEASONAL AND YEAR TO YEAR VARIATIONS IN THE GROWTH OF ZOSTERA-MARINA L (EELGRASS) IN THE LOWER CHESAPEAKE BAY [J].
ORTH, RJ ;
MOORE, KA .
AQUATIC BOTANY, 1986, 24 (04) :335-341
[25]   CHESAPEAKE BAY - AN UNPRECEDENTED DECLINE IN SUBMERGED AQUATIC VEGETATION [J].
ORTH, RJ ;
MOORE, KA .
SCIENCE, 1983, 222 (4619) :51-53
[26]   STRESS PHYSIOLOGY AND THE DISTRIBUTION OF PLANTS [J].
OSMOND, CB ;
AUSTIN, MP ;
BERRY, JA ;
BILLINGS, WD ;
BOYER, JS ;
DACEY, JWH ;
NOBEL, PS ;
SMITH, SD ;
WINNER, WE .
BIOSCIENCE, 1987, 37 (01) :38-48
[27]   DISTURBANCE BY ICE AND LIFE-HISTORY ADAPTATIONS OF THE SEAGRASS ZOSTERA-MARINA [J].
ROBERTSON, AI ;
MANN, KH .
MARINE BIOLOGY, 1984, 80 (02) :131-141
[28]  
SAND-JENSEN K, 1975, Ophelia, V14, P185
[29]   COMPARISON OF A CURRENT EELGRASS DISEASE TO THE WASTING DISEASE IN THE 1930S [J].
SHORT, FT ;
IBELINGS, BW ;
DENHARTOG, C .
AQUATIC BOTANY, 1988, 30 (04) :295-304
[30]  
*STATS INC, 1992, STAT MAC TULS