铜离子胁迫对两种地衣细胞结构的影响
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国家自然科学基金委资助项目(31160052)


Effect of Cu2+ Stress to the Cell Structure of Two Lichen Species
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    摘要:

    采用光学显微镜徒手切片技术和透射电子显微镜超薄切片制备技术,以两种叶状地衣即中国树花(Ramalina sinensis)和地卷(Peltigera rufescens)为实验材料,研究了不同浓度CuSO4(0、1、2、3、4 mmol/L)处理24 h后地衣体细胞的存活率以及Cu2+胁迫对细胞超微结构的影响。结果显示:(1)光学显微镜下可初步确定,Cu2+浓度越大中国树花共生藻细胞存活率越小,而同样处理条件下地卷共生藻细胞的存活率则基本保持不变。(2)低浓度Cu2+(<1 mmol/L)对中国树花细胞结构基本无影响,细胞壁、细胞膜及细胞内的线粒体、叶绿体完整;随着Cu2+浓度增加,当处理Cu2+浓度为2 mmol/L时,细胞壁无损,但细胞膜开始破坏形成小空泡,线粒体嵴变凌乱,叶绿体也出现皱缩,类囊体膨胀,基粒排列紊乱;当Cu2+处理浓度大于2 mmol/L时,共生藻的细胞膜和细胞器出现不同程度的损伤;当Cu2+浓度为3 mmol/L时,细胞壁变薄,细胞膜形成的空泡变大,细胞内部结构变松散,蛋白核消失,叶绿体与细胞质混在一起,基粒片层扭曲,分布混乱,线粒体变形;当Cu2+浓度达4 mmol/L时,细胞结构完全受到破坏。(3)不同浓度Cu2+处理对地卷共生藻细胞结构无明显的影响,在所有处理条件下地卷共生藻细胞壁、细胞膜都完整,且大多数共生藻细胞处于分裂状态。研究认为,中国树花对Cu2+ 胁迫较敏感,Cu2+耐受在1~2 mmol/L 之间,Cu2+浓度与中国树花细胞结构的损伤程度存在着明显的剂量效应关系,Cu2+浓度越高,其属于共球藻的真核共生藻细胞受损程度越大;地卷对Cu2+胁迫具有一定的耐性,Cu2+胁迫下地卷属于蓝藻的原核共生藻细胞仍能繁殖分裂产生子代细胞。

    Abstract:

    The vitality and cell structural changes of the lichen samples treated with different concentrations of CuSO4 (0,1,2,3,4 mmol/L) after 24 h were studied by using light microscopy and ultrathin sections of transmission electron microscope,respectively,to find out the effects of Cu2+stress to the cell structure.Results showed that:(1)The vitality of Ramalina sinensis photobionts was decreased with the upgrade of the treated Cu2+ concentration,but the photobionts vitality of Peltigera rufescens seems to be remain stable.(2)No obvious changes in the cell wall,cell membrane,mitochondria and chloroplast were detected in Ramalina sinensis symbiont under low Cu2+ concentration(<1 mmol/L) treatment group.Distinct damages,especially to cell membrane and organelles such as mitochondria and chloroplasts were observed in upgraded Cu2+ concentrations(>2 mmol/L).It is clear from the results that higher the concentrations,stronger the damages.(3)In the other studied lichen species,P.rufescens which were treated with Cu2+ completely same as R.sinensis,no any damages can be detected even in the higher treatment group.In contrast,numerous of the dividing cells were observed,that suggest Nostoc photobionts of P.rufescens seems to be more tolerant than Trebouxia photobionts of R.sinensis to higher concentration Cu2+ treatment.

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热依拉·热合曼,帕提姑·依明,阿不都拉·阿巴斯,等.铜离子胁迫对两种地衣细胞结构的影响[J].西北植物学报,2015,35(1):57-64

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  • 在线发布日期: 2015-02-09
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