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首页> 外文期刊>Journal of Applied Phycology >Biological crust of Nostoc flagelliforme (cyanobacteria) on sand bed materials
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Biological crust of Nostoc flagelliforme (cyanobacteria) on sand bed materials

机译:砂床材料上的发鞭毛生物壳(蓝细菌)

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Nostoc flagelliforme in liquid culture was cultivated on sand bed materials as inoculum and formed a biological crust. The biological crust had no common appearance of wild N. flagelliforme thallus in naked eye observation, but it had natural morphology of wild N. flagelliforme thallus in microscopic observation. By examining the photosynthetic activity, N. flagelliforme cells on sand were found to be heat resistant. The sand grain size had some influence on N. flagelliforme growth, and the growth rate on fine sand was higher than on coarse sand. It is necessary to consider the characteristics of sand particle size to prevent desertification. N. flagelliforme cells could form the algal biological crust, which indicates that the biological crust haspotential application in soil desertification and was extremely important to improve desertification.
机译:将液态培养的鞭毛状菌在沙床材料上作为接种物进行培养,并形成生物外壳。在裸眼观察中,该生物结皮没有野生鞭毛状all的常见外观,但是在显微镜观察中,它具有野生鞭毛状all的自然形态。通过检查光合作用活性,发现沙丘上的鞭毛猪笼草细胞具有耐热性。沙粒大小对鞭毛猪笼草的生长有一定影响,细砂的生长速率高于粗砂。为了防止荒漠化,有必要考虑沙粒大小的特征。鞭毛猪笼草细胞可以形成藻类生物结皮,表明该生物结皮在土壤荒漠化中具有潜在的应用价值,对改善荒漠化具有极其重要的意义。

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