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天然磷灰石对藻类生长和形态的影响。

Effect of naturally occurring apatites on growth and morphology of algae.

作者信息

Smith E A, Mayfield C I, Wong P T, Silverberg B A

出版信息

Can J Microbiol. 1977 Sep;23(9):1188-96. doi: 10.1139/m77-179.

Abstract

Crystals (30--100 micrometer) of selected naturally occurring apatite (Ca10 (PO4)6(OH, F)2) samples were added to P-free (less than 0.001 microgram/ml total P) Bristol's medium (1-1000 microgram/ml of apatite) as the sole source of ortho-PO43-. The media were inoculated with washed, non-axenic cells of three chlorophycean algal species cultivated under PO43--deficient conditions. Phase-contrast and scanning electron microscopy revealed that at low slurry densities (1-10 microgram/ml of apatite), Ankistrodesmus braunii (ATCC 2744) cells were morphologically distorted. At concentrations of 100 and 1000 microgram/ml of apatite, more than 85% of the cells had undergone autospore formation within 7--10 days of incubation at 20 degrees C. Most autospores formed failed to germinate under high nutrient conditions. Scenedesmus longus (No. 1236) formed colonies when cultivated in Bristol's medium but daughter cells displayed a Chodatella-like unicellular morphology when grown in apatite media. Test algal species (Chlamydomonas dysosmos, S. longus, A. braunii) showed a marked preference for growth on apatite crystals over non-nutritive surfaces. Unialgal and mixed-algal cultures produced an extensive matrix of extracellular fibrous material in response to growth on crystals at concentrations greater than 10 microgram/ml of apatite.

摘要

将选定的天然磷灰石(Ca10(PO4)6(OH,F)2)样品的晶体(30 - 100微米)添加到无磷(总磷含量低于0.001微克/毫升)的布里斯托尔培养基(磷灰石含量为1 - 1000微克/毫升)中,作为正磷酸根离子(ortho-PO43-)的唯一来源。用在磷酸根离子(PO43-)缺乏条件下培养的三种绿藻纲藻类的洗涤过的非无菌细胞接种培养基。相差显微镜和扫描电子显微镜显示,在低浆液密度(磷灰石含量为1 - 10微克/毫升)下,布朗栅藻(Ankistrodesmus braunii,ATCC 2744)细胞在形态上发生了扭曲。在磷灰石浓度为100和1000微克/毫升时,超过85%的细胞在20℃培养7 - 10天内形成了自体孢子。在高营养条件下,大多数形成的自体孢子未能萌发。长链藻(Scenedesmus longus,编号1236)在布里斯托尔培养基中培养时形成菌落,但在磷灰石培养基中生长时,子细胞呈现出类似乔达藻(Chodatella)的单细胞形态。受试藻类物种( dysosmos衣藻、长链藻、布朗栅藻)在磷灰石晶体上生长的偏好明显高于非营养表面。单种和混合藻类培养物在磷灰石浓度大于10微克/毫升的晶体上生长时,会产生大量细胞外纤维物质基质。

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