首页> 美国卫生研究院文献>Plant Physiology >Effect of Light Quality on the Composition Function and Structure of Photosynthetic Thylakoid Membranes of Asplenium australasicum (Sm.) Hook
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Effect of Light Quality on the Composition Function and Structure of Photosynthetic Thylakoid Membranes of Asplenium australasicum (Sm.) Hook

机译:光照质量对南芥(Asmium australasicum(Sm。)Hook)光合类囊体膜的组成功能和结构的影响

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摘要

The effect of light quality on the composition, function and structure of the thylakoid membranes, as well as on the photosynthetic rates of intact fronds from Asplenium australasicum, a shade plant, grown in blue, white, or red light of equal intensity (50 microeinsteins per square meter per second) was investigated. When compared with those isolated from plants grown in white and blue light, thylakoids from plants grown in red light have higher chlorophyll a/chlorophyll b ratios and lower amounts of light-harvesting chlorophyll a/b-protein complexes than those grown in blue light. On a chlorophyll basis, there were higher levels of PSII reaction centers, cytochrome f and coupling factor activity in thylakoids from red light-grown ferns, but lower levels of PSI reaction centers and plastoquinone. The red light-grown ferns had a higher PSII/PSI reaction center ratio of 4.1 compared to 2.1 in blue light-grown ferns, and a larger apparent PSI unit size and a lower PSII unit size. The CO2 assimilation rates in fronds from red light-grown ferns were lower on a unit area or fresh weight basis, but higher on a chlorophyll basis, reflecting the higher levels of electron carriers and electron transport in the thylakoids.The structure of thylakoids isolated from plants grown under the three light treatments was similar, with no significant differences in the number of thylakoids per granal stack or the ratio of appressed membrane lengthonappressed membrane length. The large freeze-fracture particles had the same size in the red-, blue-, and white-grown ferns, but there were some differences in their density. Light quality is an important factor in the regulation of the composition and function of thylakoid membranes, but the effects depend upon the plant species.
机译:光照质量对类囊体膜组成,功能和结构的影响,以及对生长在强度相同的蓝色,白色或红色光(50个微爱因斯坦)中的荫罩植物Asplenium australasicum完整叶片的光合速率的影响每平方米每秒)进行了调查。与从白光和蓝光下生长的植物分离的类囊体相比,在红光下生长的类囊体具有比蓝光下更高的叶绿素a /叶绿素b比和较低的光收集叶绿素a / b蛋白复合物数量。以叶绿素为基础,红光生长的蕨类类囊体中PSII反应中心,细胞色素f和偶联因子的活性较高,而PSI反应中心和质体醌的水平较低。与蓝色光生蕨类植物相比,红色光生蕨类植物的PSII / PSI反应中心比率为4.1,而蓝色光生蕨类植物为2.1,并且较大的表观PSI单位尺寸和较低的PSII单位尺寸。红光生长的蕨类植物叶片中的CO2同化率以单位面积或鲜重计较低,但以叶绿素计较高,反映了类囊体中较高的电子载流子和电子传递水平。在三种光处理下生长的植物是相似的,每粒堆栈中类囊体的数量或贴膜长度/未压膜长度的比率没有显着差异。大的冻裂颗粒在红色,蓝色和白色生长的蕨类中具有相同的大小,但是它们的密度存在一些差异。光照质量是调节类囊体膜组成和功能的重要因素,但其效果取决于植物种类。

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