Kummerová Marie, Vánová Lucie, Krulová Jana, Zezulka Stepán
Department of Plant Physiology and Anatomy, Institute of Experimental Biology, Faculty of Science, Masaryk University, Kotlárská 2, 611 37 Brno, Czech Republic.
Chemosphere. 2008 May;71(11):2050-9. doi: 10.1016/j.chemosphere.2008.01.060. Epub 2008 Mar 11.
The influence of intact (FLT) and photomodified (phFLT) fluoranthene (0.05, 0.5 and 5 micromol l(-1)) and herbicide Basagran (5, 20, 35 and 50 nmol l(-1)) on the germination, growth of seedlings and photosynthetic processes in pea plants (Pisum sativum L., cv. Garde) was investigated. The germination was significantly inhibited already by the lowest concentration (0.05 micromol l(-1)) of FLT and phFLT, while Basagran caused inhibition only in higher concentrations (35 and 50 nmol l(-1)). The growth of roots was significantly inhibited by higher concentration 5 micromol l(-1) of both FLT and phFLT and the shoot of seedlings was significantly influenced only by photomodified form. The length of root and shoot was inhibited already by concentration 5 nmol l(-1) of Basagran. Organic compounds applied on chloroplasts suspension influenced primary photochemical processes of photosynthesis. In chlorophyll fluorescence parameters, the significant increase of F(0) values and the decrease of F(V)/F(M) and Phi(II) values by application of FLT (0.5 and 5 micromol l(-1)) and phFLT (0.05, 0.5 and 5 micromol l(-1)) was recorded. The maximum capacity of PSII (F(V)/F(M)) was influenced by the highest (50 nmol l(-1)) and the effective quantum yield of PSII (Phi(II)) already by the lowest (5 nmol l(-1)) concentration of Basagran. Hill reaction activity decreased and was significantly inhibited by higher concentration (0.5 and 5 micromol l(-1)) of FLT and phFLT and already by the lowest concentration (5 nmol l(-1)) of Basagran.
研究了完整的(FLT)和光改性的(phFLT)荧蒽(0.05、0.5和5微摩尔/升)以及除草剂百速顿(5、20、35和50纳摩尔/升)对豌豆植株(Pisum sativum L.,品种Garde)种子萌发、幼苗生长和光合过程的影响。最低浓度(0.05微摩尔/升)的FLT和phFLT就已显著抑制种子萌发,而百速顿仅在较高浓度(35和50纳摩尔/升)时才会导致抑制。较高浓度5微摩尔/升的FLT和phFLT均显著抑制根系生长,且仅光改性形式对幼苗地上部分有显著影响。百速顿浓度为5纳摩尔/升时就已抑制根和地上部分的长度。施加于叶绿体悬浮液的有机化合物影响光合作用的初级光化学过程。在叶绿素荧光参数方面,记录到施加FLT(0.5和5微摩尔/升)和phFLT(0.05、0.5和5微摩尔/升)后F(0)值显著增加,F(V)/F(M)和Phi(II)值降低。PSII的最大能力(F(V)/F(M))受百速顿最高浓度(50纳摩尔/升)影响,而PSII的有效量子产率(Phi(II))在百速顿最低浓度(5纳摩尔/升)时就已受到影响。希尔反应活性降低,较高浓度(0.5和5微摩尔/升)的FLT和phFLT以及百速顿最低浓度(5纳摩尔/升)就已对其产生显著抑制。