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Microgravity affects the photosynthetic apparatus of Brassica rapa L.

机译:微重力影响甘蓝型油菜的光合作用。

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Structural and functional characteristics of the photosynthetic apparatus in 15-day old Brassica rapa plants grown aboard the space shuttle Columbia (STS-87) have been studied. Maintaining of the same growth conditions for control plants was realized using the Orbiter Environmental Simulator in Kennedy Space Center. The main differences in spaceflight plants in comparison with control ones have been shown to be the following. An average volume of one mesophyll palisade cell increased approximately twice and the chloroplast number per cell by 69.8%. Partial volumes of stromal thylakoids, starch grains and plastoglobuli also increased by 19.4%, 20.6% and 2 times accordingly. At the same time, the grana number per chloroplast decreased. Greater diversity of the thylakoid length in grana and a decrease in thylakoid membrane stacking were revealed. A decrease of PSII and PSI light-harvesting antennae has been detected, for PSII by an increase of Chl a/b ratio and kinetics delay in chlorophyll fluorescence induction, and for PSI by a decrease of integral intensity in the excitation spectrum of fluorescence at 735 nm, which indicated a decline of PSI absorption cross-section. Some distortion of PSI complexes have been displayed by fluorescence spectra. A slight decrease in PSII photochemistry yield was detected for the spaceflight material. PSI is concluded to be more susceptible to the microgravity conditions.
机译:研究了在哥伦比亚号航天飞机(STS-87)上生长的15天大的甘蓝型油菜植物的光合装置的结构和功能特性。使用肯尼迪航天中心的轨道飞行器环境模拟器,可以为对照植物维持相同的生长条件。与对照植物相比,航天植物的主要差异如下所示。一个叶肉栅栏细胞的平均体积增加了大约两倍,每个细胞的叶绿体数量增加了69.8%。基质类囊体,淀粉粒和质球的部分体积也分别增加了19.4%,20.6%和2倍。同时,每个叶绿体的粒数减少。揭示了谷物中类囊体长度的更大多样性和类囊体膜堆叠的减少。已检测到PSII和PSI捕光触角的减少,其中PSII通过增加Chl a / b比值和叶绿素荧光诱导的动力学延迟,而PSI通过降低735荧光激发光谱中的积分强度,表明PSI吸收截面下降。通过荧光光谱已经显示出PSI复合物的一些变形。对于航天材料,检测到PSII光化学产率略有下降。结论是PSI对微重力条件更敏感。

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