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The response of the photosynthetic apparatus of three marine algae to growth irradiance variations.

机译:三种海藻的光合设备对生长辐照度变化的响应。

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The response of the photosynthetic apparatus of three marine algae, Macrocystis pyrifera (Phaeophyta), Cylindrotheca fusiformis (Bacillariophyta) and Dunaliella salina (Chlorophyta) to growth irradiance was investigated. The stoichiometry of Photosystem II (PSII) and PSI reaction centers varied in response to growth irradiance. In Macrocystis, the PSII/PSI ratio varied from 1.4 in winter to 2.5 in summer surface blades. Cylindrotheca exhibited a more extreme response to growth irradiance. High-light grown cells displayed a PSII/PSI ratio of 1.3 and low-light cells had a PSII/PSI ratio of 3.9. Under moderate light, the PSII/PSI ratio in Dunaliella was 1.4. In very high light cells, the PSII/PSI ratio was 3.9. Light-harvesting chlorophyll (Chl) antenna size, or absorption cross section, also varied in response to growth irradiance. In Macrocystis, {dollar}-{dollar}20 m blades showed a larger absorption cross section of PSII (by about 85%) and PSI (by about 50%) compared to surface blades. Cylindrotheca also showed larger PSII (100%) and larger PSI (30%) absorption cross section in low light versus high light grown cells. In Dunaliella, PSII exhibits heterogeneity of Chl antenna size. In moderate light grown cells, approximately 60% of the total PSII centers were PSII{dollar}alpha{dollar} (containing 500 Chl molecules) and 40% were PSII{dollar}beta{dollar} centers (containing 125 Chl). At very high light intensities, PSII{dollar}alpha{dollar} centers were absent and the proportion of PSII{dollar}beta{dollar} centers was less than 5% of the total PSII. The remainder (95%) of the PSII centers contained only 50 Chl a molecules (PSII-50). The Chl antenna of PSI showed a reduction in size with growth irradiance: from 220 Chl molecules in low light to 150 Chl in moderate light, 110 Chl in high light and only 95 Chl in very high light thylakoids. In summary, the response of the photosynthetic apparatus of marine algae to growth irradiance involves changes in the stoichiometry and chlorophyll antenna size of the photosystems. Both parameters are adjusted and optimized in response to irradiance to improve photosynthetic efficiency.
机译:研究了三种海藻光合装置(Pyreophyta),fusylyltheca fusiformis(Bacillariophyta)和杜氏盐藻(Chlorophyta)的光合作用对生长辐照的响应。光系统II(PSII)和PSI反应中心的化学计量随生长辐照度而变化。在巨囊藻中,PSII / PSI比值从冬季的1.4到夏季的表面叶片的2.5不等。 Cylindrotheca对生长辐照表现出更极端的反应。高光细胞的PSII / PSI比为1.3,低光细胞的PSII / PSI比为3.9。在中等光照下,杜氏藻的PSII / PSI比为1.4。在非常高亮度的电池中,PSII / PSI比为3.9。收集光的叶绿素(Chl)天线尺寸或吸收截面也随生长辐照度而变化。在巨囊藻中,与表面叶片相比,{dollar}-{dollar} 20 m叶片显示PSII(约85%)和PSI(约50%)的吸收截面更大。 Cylindrotheca在低光与高光生长的细胞中也显示出较大的PSII(100%)和较大的PSI(30%)吸收截面。在杜氏藻中,PSII表现出Chl天线尺寸的异质性。在中等光照下的细胞中,总PSII中心的大约60%是PSII {dollar} alpha {dollar}(包含500个Chl分子),而40%是PSII {dollar} beta {dollar}中心(包含125 Chl)。在非常高的光强度下,没有PSII {dollar} alpha {dollar}中心,并且PSII {dollar} beta {dollar}中心的比例不到总PSII的5%。其余(95%)的PSII中心仅包含50个Chl a分子(PSII-50)。 PSI的Chl天线显示出随着辐照度的增加而减小的大小:从低光照下的220 Chl分子到中等光照下的150 Chl,高光照下的110 Chl,在非常高光照的类囊体中只有95 Chl。总之,海藻光合作用设备对生长辐照度的响应涉及光系统化学计量和叶绿素天线尺寸的变化。响应辐照度调整和优化两个参数,以提高光合效率。

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