首页> 外文期刊>Aquatic Botany >Photosynthetic metabolism and major organic compounds in the marine brownalga Desmarestia menziesii from King George Island (Antarctica)
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Photosynthetic metabolism and major organic compounds in the marine brownalga Desmarestia menziesii from King George Island (Antarctica)

机译:南极乔治国王岛海洋褐藻Desmarestia menziesii中的光合代谢和主要有机化合物

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摘要

Photosynthesis and organic composition in Desmarestia menziesii from a population at Potter Cove (King George Island) were measured during the Antarctic spring-summer. Light saturated net photosynthesis (P-max), and dark respiration showed a similar seasonal variation with maximum values in plants collected in November (250 and 200 mu mol O-2 g(-1) DW h(-1), respectively) and minimal values in January (42 and 16 mu mol O-2 g(-1) DW h(-1), respectively), Similarly, a peak of photosynthetic efficiency (alpha) in November [(7.5 mu mol O-2 g(-1) DW h(-1) (mu mol photons m(-2) s(-1))(-1)] was coupled with a peak of Chl a (6.7 mg g(-1) DW). Saturation points (I-k) for photosynthesis were high in January (100 mu mol photon m(-2) s(-1)) and low in December (25 mu mol photon m(-2) s(-1)), whereas compensation points (I-C) gradually decreased from 45 mu mol photon m(-2) s(-1) in October to values close to 10 mu mol photon m(-2) s(-1) in summer (December to February). Carbon (C) and nitrogen (N) as well as C:N ratios did not vary significantly along the study period with means close to 35% C, 3.8% N of dry weight and 9.3 (C:N ratio), respectively, which clearly indicates no nutrient limitation for algal metabolism. In contrast, major organic compounds showed marked seasonal changes. High protein contents close to 22% of DW were determined in September and October, decreasing towards summer to values of 12% of DW, whereas total amino acids (free and protein-bound) had a peak in November (18% of DW) and remained low between December and February (below 12% of DW). Mannitol content was relatively low between September and December increasing to values close to 8% of DW in February. Laminaran was high in September (7.2% of DW) and remained low and relatively constant (ca. 2.5% of DW) from October onwards. The significant effect of amino acids, mannitol, laminaran, protein contents inferred from regression analyse point up to a relationship between monthly allocation of organic compounds and high metabolic activities during spring-summer, i.e., reserve carbohydrates may compensate, at least partially, for C losses due to the high respiratory activity.
机译:在南极的春夏季期间,测量了来自波特湾(国王乔治岛)种群的曼氏海藻中的光合作用和有机组成。轻饱和净光合作用(P-max)和暗呼吸显示相似的季节变化,在11月收集的植物中分别出现最大值(分别为250和200μmol O-2 g(-1)DW h(-1))和一月的最小值(分别为42和16μmol O-2 g(-1)DW h(-1)),类似地,十一月的光合作用效率(alpha)峰值[(7.5μmol O-2 g(-1) -1)DW h(-1)(μmol光子m(-2)s(-1))(-1)]与Chla(6.7 mg g(-1)DW)的峰耦合。 (Ik)的光合作用在1月高(100μmol光子m(-2)s(-1)),在12月低(25μmol光子m(-2)s(-1)),而补偿点(碳(IC)从10月份的45μmol光子m(-2)s(-1)逐渐下降到夏季(12月至2月)的接近10μmol光子m(-2)s(-1)的值。 )和氮(N)以及C:N比率在研究期间没有显着变化,平均值分别接近35%的C,3.8%的干重氮和9.3(C:N的比率),表明藻类代谢没有营养限制。相反,主要有机化合物表现出明显的季节性变化。在9月和10月确定了接近22%DW的高蛋白质含量,到夏季降低到DW的12%,而总氨基酸(游离和结合蛋白质的氨基酸)在11月(DW的18%)达到峰值。在12月和2月之间保持低位(低于权重的12%)。在9月至12月之间,甘露醇含量相对较低,2月时接近DW的8%。 Laminaran在9月份较高(DW的7.2%),并从10月份开始一直较低且相对恒定(约DW的2.5%)。从回归分析推断出氨基酸,甘露醇,laminaran,蛋白质含量的显着影响,直至春季夏季有机化合物的月度分配与高代谢活性之间的关系,即储备碳水化合物可能至少部分补偿了碳高呼吸活动造成的损失。

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