首页> 外文学位 >Acute and chronic effects of copper and cadmium on the growth and ultrastructure of Dunaliella minuta, Dunaliella salina and Chlamydomonas bullosa.
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Acute and chronic effects of copper and cadmium on the growth and ultrastructure of Dunaliella minuta, Dunaliella salina and Chlamydomonas bullosa.

机译:铜和镉对杜氏盐藻,盐藻和大衣藻生长和超微结构的急性和慢性影响。

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摘要

The effective copper and cadmium concentrations that limited the growth of three chlorophytes by 50%, EC(50), in 96 hour static experiments were determined. EC(50)s were 7.57 uM copper and 0.34 uM cadmium for Dunaliella minuta, 5.94 uM copper and 4.55 uM cadmium for Dunaliella salina, and 0.78 uM copper and 0.025 uM cadmium for Chlamydomonas bullosa. The relationship of the two cations was antagonistic towards the growth of the first species but synergistic for the latter two. At the ultrastructural level the relationship varied depending on the cellular component examined.; Exposure to 4.9 {dollar}times{dollar} 10{dollar}sp{lcub}-4{rcub}{dollar} uM copper or 4.5 {dollar}times{dollar} 10{dollar}sp{lcub}-6{rcub}{dollar} uM cadmium for eight months increased the tolerance of D. minuta towards its established Cu and Cd EC(50)s by 34% and 19% respectively, and the co-tolerance of Cu-treated cultures by 26%. Cd-treated D. salina was 50% more tolerant towards this cation, whereas Cu-treated cultures showed extreme sensitivity towards copper and "co-sensitivity" towards cadmium. Cu and Cd-treated C. bullosa cultures were 29% and 26% more sensitive towards copper and cadmium respectively. No changes in co-tolerance were observed.; At the ultrastructural level cadmium was shown to be more toxic than copper. Exposure to copper and/or cadmium affected a variety of cellular structures including chloroplast, pyrenoid, nucleus, starch granules, polyphosphate bodies, lipids, vacuoles, cell wall and periplasmalemmal space. In light of the observed ultrastructural changes several mechanisms of toxicity, as well as possible detoxifying mechanisms are discussed.; Rachlin et al. (1982c) proposed that toxicological responses could reflect phylogenetic relationships and thus can be ordered within a taxonomic framework. The validity of the phylogenetic hypothesis was tested using the growth responses of the three chlorophytes to metal stress. Analysis of covariance of the cadmium generated regression lines indicated that the responses of all three chlorophytes were significantly different. Analysis of the growth data under copper stress showed, contrary to expectations, that the two non-related species, C. bullosa and D. minuta, responded to the cation in similar fashion, whereas the responses of D. salina and D. minuta were significantly different. It is concluded that the phylogenetic hypothesis does not hold true for the lower levels of taxonomic organization.
机译:确定了有效的铜和镉浓度,该浓度在96小时静态实验中将三种叶绿素的生长限制为50%EC(50)。 EC(50)的杜氏藻(Dunaliella minuta)为7.57 uM铜和0.34 uM镉,杜氏盐藻(Dunaliella salina)为5.94 uM铜和4.55 uM镉,而衣藻(Chlamydomonas bullosa)为0.78 uM铜和0.025 uM镉。两种阳离子的关系对第一种物种的生长具有拮抗作用,但对后两种物种具有协同作用。在超微结构水平,这种关系随所检查的细胞成分而变化。暴露于4.9 {dollar}倍{dollar} 10 {dollar} sp {lcub} -4 {rcub} {dollar} uM铜或4.5 {dollar}倍{dollar} 10 {dollar} sp {lcub} -6 {rcub} {美元}八个月的镉使D. minuta对已建立的Cu和Cd EC(50)的耐受性分别提高了34%和19%,对Cu处理的培养物的共耐受性提高了26%。镉处理的D. salina对这种阳离子的耐受性高50%,而铜处理的培养物对铜表现出极大的敏感性,对镉表现出“共敏感性”。铜和镉处理的大叶念珠菌培养物对铜和镉的敏感性分别提高29%和26%。没有观察到协同耐受的变化。在超微结构水平上,镉的毒性比铜高。暴露于铜和/或镉会影响多种细胞结构,包括叶绿体,类胡萝卜素,细胞核,淀粉颗粒,多磷酸盐体,脂质,液泡,细胞壁和周质间隙。根据观察到的超微结构变化,讨论了几种毒性机制以及可能的解毒机制。 Rachlin等。 (1982c)提出,毒理学反应可以反映系统发育关系,因此可以在分类框架内进行排序。系统发育假说的有效性使用三种叶绿素对金属胁迫的生长反应进行了测试。镉产生的回归线的协方差分析表明,所有三种叶绿素的响应均显着不同。对铜胁迫下生长数据的分析表明,与预期相反,两个不相关的物种C. Bullosa和D. minuta对阳离子的响应方式相似,而D. salina和D. minuta的响应分别为明显不同。结论是,对于较低级别的分类组织,系统发育假设不成立。

著录项

  • 作者

    Visviki, Ioanna.;

  • 作者单位

    City University of New York.;

  • 授予单位 City University of New York.;
  • 学科 Environmental Sciences.; Biology Microbiology.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;微生物学;
  • 关键词

  • 入库时间 2022-08-17 11:50:12

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