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作 者:LI HuaSheng LU JinYing ZHAO Hui SUN Qiao YU FuTong PAN Yi CHEN Yu SU Liang LIU Min
机构地区:[1]Space Molecular Biological Laboratory, China Academy of Space Technology [2]Department of Plant Nutrition, China Agricultural University [3]Institute of Genetics and Developmental Biology, Chinese Academy of Sciences
出 处:《Science China(Technological Sciences)》2017年第6期902-910,共9页中国科学(技术科学英文版)
基 金:supported by the National Key Basic Research Program (Grant No. 2011CB710902);China Manned Space Engineering Program;International S&T Cooperation Program of China
摘 要:One of the important questions in space biology is the mechanisms underlying plant responses to an outer space environment,i.e.,how gene expression is altered in space.In this study,the transcriptome of Arabidopsis thaliana seedlings was analyzed as a part of Germany SIMBOX(science in microgravity box)spaceflight experiment on Shenzhou 8 spacecraft.This experiment involved the following treatments:spaceflight with microgravity(Fμg),spaceflight with 1g centrifugal force(F 1g),and ground 1g control(G 1g).Gene chips were used to screen gene expression differences in Arabidopsis thaliana seedlings among these treatments.Microarray analysis revealed that 621 genes were differentially expressed in samples Fμg vs.G 1g,249 genes in samples F 1g vs.G 1g,and 368 genes in samples Fμg vs.F 1g.Gene ontology analysis indicated that the genes were involved in metabolism of stress response,gravitropic response,and DNA damage and repair,suggesting that plants adjust these metabolic pathways to space environmental stress,microgravity,and radiation.
关 键 词:Arabidopsis thaliana space flight microgravity microarray gene expression profile
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