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小球藻(绿藻纲)内源性细胞分裂素浓度与光照及细胞周期的关系(1)。

CHANGES IN ENDOGENOUS CYTOKININ CONCENTRATIONS IN CHLORELLA (CHLOROPHYCEAE) IN RELATION TO LIGHT AND THE CELL CYCLE(1).

作者信息

Stirk Wendy A, van Staden Johannes, Novák Ondřej, Doležal Karel, Strnad Miroslav, Dobrev Petre I, Sipos György, Ördög Vince, Bálint Péter

机构信息

Research Centre for Plant Growth and Development, University of KwaZulu-Natal Pietermaritzburg, P/Bag X01, Scottsville 3209, South AfricaLaboratory of Growth Regulators, Palacký University and Institute of Experimental Botany AS CR, Slechtitelů 11, CZ-783 71 Olomouc, Czech RepublicInstitute of Experimental Botany, Academy of Sciences of the Czech Republic, Rozvojová 263, CZ-16502, Praha 6, Czech RepublicInstitute of Plant Biology, Faculty of Agricultural and Food Sciences, University of West Hungary, H-9200 Mosonmagyaróvár, Hungary.

出版信息

J Phycol. 2011 Apr;47(2):291-301. doi: 10.1111/j.1529-8817.2010.00952.x. Epub 2011 Mar 1.

Abstract

Endogenous cytokinins were quantified in synchronized Chlorella minutissima Fott et Novákova (MACC 361) and Chlorella sp. (MACC 458) grown in a 14:10 light:dark (L:D) photoperiod. In 24 h experiments, cell division occurred during the dark period, and cells increased in size during the light period. Cytokinin profiles were similar in both strains, consisting of five cis-zeatin (cZ) and three N(6) -(2-isopentenyl)adenine (iP) derivatives. Cytokinin concentrations were low during the dark period and increased during the light period. In 48 h experiments using synchronized C. minutissima (MACC 361), half the cultures were maintained in continuous dark conditions for the second photoperiod. Cell division occurred during both dark periods, and cells increased in size during the light periods. Cultures kept in continuous dark did not increase in size following cell division. DNA analysis confirmed these results, with cultures grown in light having increased DNA concentrations prior to cell division, while cultures maintained in continuous dark had less DNA. Cytokinins (cZ and iP derivatives) were detected in all samples with concentrations increasing over the first 24 h. This increase was followed by a large increase, especially during the second light period where cytokinin concentrations increased 4-fold. Cytokinin concentrations did not increase in cultures maintained in continuous dark conditions. In vivo deuterium-labeling technology was used to measure cytokinin biosynthetic rates during the dark and light periods in C. minutissima with highest biosynthetic rates measured during the light period. These results show that there is a relationship between light, cell division, and cytokinins.

摘要

对同步培养的极小绿藻(Chlorella minutissima Fott et Novákova,MACC 361)和小球藻(Chlorella sp.,MACC 458)进行了内源性细胞分裂素的定量分析,这两种藻类在14:10光暗(L:D)光周期条件下生长。在24小时的实验中,细胞分裂发生在黑暗期,细胞大小在光照期增加。两种藻株的细胞分裂素谱相似,均由五种顺式玉米素(cZ)和三种N⁶-(2-异戊烯基)腺嘌呤(iP)衍生物组成。细胞分裂素浓度在黑暗期较低,在光照期升高。在使用同步化的极小绿藻(MACC 361)进行的48小时实验中,一半培养物在第二个光周期保持连续黑暗条件。细胞分裂在两个黑暗期均发生,细胞大小在光照期增加。持续处于黑暗中的培养物在细胞分裂后大小并未增加。DNA分析证实了这些结果,光照下生长的培养物在细胞分裂前DNA浓度增加,而持续处于黑暗中的培养物DNA较少。在所有样品中均检测到细胞分裂素(cZ和iP衍生物),其浓度在最初24小时内升高。随后大幅增加,尤其是在第二个光照期,细胞分裂素浓度增加了4倍。持续处于黑暗条件下的培养物中细胞分裂素浓度未增加。采用体内氘标记技术测定极小绿藻在黑暗期和光照期的细胞分裂素生物合成速率,结果显示光照期生物合成速率最高。这些结果表明光、细胞分裂和细胞分裂素之间存在关联。

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