Guo Weihua, Ye Zhiqiang, Wang Guilan, Zhao Xiaoming, Yuan Jingli, Du Yuguang
Department of Biotechnology, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, PR China.
Talanta. 2009 May 15;78(3):977-82. doi: 10.1016/j.talanta.2009.01.020. Epub 2009 Jan 20.
The interaction of oligochitosan and tobacco cells has been investigated by fluorometric method using two Eu(3+) complexes as the probes in this work. Based on the reaction of tobacco cells with oligochitosan conjugated to a strongly fluorescent Eu(3+) complex 4,4'-bis(1'',1'',1'',2'',2'',3'',3''-heptafluoro-4'',6''-hexanedion-6''-yl)chlorosulfo-o-terphenyl-Eu(3+) (oligochitosan-BHHCT-Eu(3+) conjugate), the binding kinetic process of oligochitosan-tobacco cells was fluorescently imaged. The results indicate that oligochitosan can be specifically bound to the walls as well as the membranes of tobacco cells. A sensitive and selective Eu(3+) complex luminescence probe specific for singlet oxygen, [4'-(10-methyl-9-anthryl)-2,2':6',2''-terpyridine-6,6''-diyl]bis(methylenenitrilo)tetrakis (acetate)-Eu(3+), was used for developing a new time-resolved fluorescence assay method for the determinations of indole-3-acetic acid (IAA) and peroxidase produced in the cells during the interaction of oligochitosan and tobacco cells. The assays are sensitive with the detection limits of 32 nM for IAA, and 1.2 nM for peroxidase, respectively. The concentration changes of IAA and peroxidase induced by oligochitosan in tobacco cells reveal that oligochitosan can effectively induce the increase of IAA concentration, accompanied by the decrease of peroxidase concentration. These results give a primary and reliable evidence to explain the growth-promoting mechanism of oligochitosan on the plants at molecular level.
在本研究中,使用两种铕(III)配合物作为探针,通过荧光法研究了低聚壳聚糖与烟草细胞的相互作用。基于烟草细胞与偶联有强荧光铕(III)配合物4,4'-双(1'',1'',1'',2'',2'',3'',3''-七氟-4'',6''-己二酮-6''-基)氯磺基-邻三联苯-铕(III)(低聚壳聚糖-BHHCT-铕(III)共轭物)的低聚壳聚糖的反应,对低聚壳聚糖-烟草细胞的结合动力学过程进行了荧光成像。结果表明,低聚壳聚糖可以特异性地结合到烟草细胞的细胞壁和细胞膜上。一种对单线态氧具有特异性的灵敏且选择性的铕(III)配合物发光探针,[4'-(10-甲基-9-蒽基)-2,2':6',2''-三联吡啶-6,6''-二亚基]双(亚甲基腈)四(乙酸)-铕(III),被用于开发一种新的时间分辨荧光测定方法,用于测定低聚壳聚糖与烟草细胞相互作用过程中细胞内产生的吲哚-3-乙酸(IAA)和过氧化物酶。该测定方法灵敏,IAA的检测限为32 nM,过氧化物酶的检测限为1.2 nM。低聚壳聚糖诱导烟草细胞中IAA和过氧化物酶的浓度变化表明,低聚壳聚糖可以有效诱导IAA浓度增加,同时伴随着过氧化物酶浓度降低。这些结果为从分子水平解释低聚壳聚糖对植物的促生长机制提供了初步可靠的证据。