NUK - logo
E-viri
Celotno besedilo
Recenzirano
  • Bisphenol A effects on the ...
    Jiao, Liya; Ding, Hezhou; Wang, Lihong; Zhou, Qing; Huang, Xiaohua

    Environmental pollution (1987), 04/2017, Letnik: 223
    Journal Article

    Bisphenol A (BPA), a suspected endocrine disruptor, can modify normal plant growth and development. Photosynthesis provides material and energy for the growth and development of plants, in which chlorophyll (Chl) plays a significant role. Many studies have shown that the growth and metabolism of plants vary at different growth stages. Thus the sensitivity of plant's responses to environmental pollution is correspondingly different. We studied the effects of BPA on the Chl contents of soybean (Glycine Max L.) at different growth stages (seedling, flowering and podding, seed-filling and maturation) by measuring the contents of essential intermediates (5-aminolevulinic acid, porphobilinogen, protoporphyrin IX, magnesium protoporphyrin and protochlorophyll) and the activities of key enzymes (5-aminolaevulinic acid dehydratase, porphobilinogen deaminase, uroporphyrinogen III synthase, magnesium chelatase) in chlorophyll synthesis. Low-dose (1.5 mg/L) BPA exposure increased the activities of key enzymes in addition to the contents of intermediates in Chl synthesis at different growth stages, resulting in increases in Chl contents and net photosynthetic rate. In contrast, medium and high-dose (17.2, 50.0 mg/L) BPA exposure produced inhibitory effects on the indices. Following the withdrawal of BPA exposure, the indices recovered to a degree that was related to the plant growth stage. The effect level (high to low) of BPA on these indices at different growth stages was: seedling stage > maturation stage > flowering and podding stage > seed-filling stage. The reverse effect was observed following the withdrawal of BPA exposure. The responses of key enzymes in plant Chl synthesis to BPA illustrate how BPA affects Chl contents. The effects of BPA show clear differences at different plant growth stages. Display omitted •BPA affected Chl contents by regulating key enzymes in the Chl synthesis process.•Low/high-dose BPA promoted/inhibited key enzymes in a dose-dependent manner.•Effects of BPA on key enzymes in Chl synthesis varied at different growth stages. BPA affected Chl contents by regulating the key enzymes in Chl synthesis and the effects showed differences at different plant growth stages.