首页> 外文OA文献 >ESA experiment BIOPAN-6-Germination and Growth Capacity of Lichen Symbiont Cells and Ascospores After Space Exposure
【2h】

ESA experiment BIOPAN-6-Germination and Growth Capacity of Lichen Symbiont Cells and Ascospores After Space Exposure

机译:Esa实验BIOpaN-6-空间暴露后地衣共生细胞和子囊孢子的萌发和生长能力

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

In the context of Lithopanspermia investigations have been performed to investigate the ability of different organisms to resist scenarios of the natural interplanetary transfer of life from a donor planet (host planet) to an acceptor planet. Whereas the main focus of previous studies was on the resistance of bacteria and their colony forming capacity after space exposure, only a few experiments on eukaryotic microorganisms and especially on symbiotic organization forms such as lichens, have been performed in space (de la Torre et. al. 2007, Sancho et al. 2007). These experiments have concentrated on photosynthesis analysis as a first step to understand the maintenance of physiologic activity of eukaryotic organisms after exposure to space conditions. As a next step, physiologic activity, reproduction capacity and “healthy” cell structures as essential parts of vitality check were analyzed after the last ESA experiment on BIOPAN-6 on Foton M3. Besides the examination of photosynthetic activity determination by use of chlorophyll a-fluorescence, CLSM analysis by the use of LIVE/DEAD staining dyes and culture experiments for verification of germination and growth capacity of both of the lichen symbionts (alga and fungi), were performed. In this case, new results are now clearly emphasizing quantitatively the high survival capacity and maintenance of germination and growth capacity of both of the investigated symbionts which form the epilithic lichen species of and , although they were exposed to harsh space conditions with an exposure time of 10 days. About 80% to 90% of ascospores of both of the analyzed lichens were able to germinate and to grow into well-developed mycelia. In detail: results of germination and growth capacity analysis of ascospores of the lichen have shown no damage on growth behavior, if compared to the control analysis, differing only in the starting point of germination, which is about 1 to 2 days earlier than under control conditions (1 to 2 days after sporulation instead of 2 to 4 days). Results of analysis on ascospores of indicate an important role of desiccation for successful germination. Without the vacuum treatment in space, the control samples were not able to germinate. This implicates the necessity of very dry conditions for the break down of ascosporic cell walls to foster the ability of germination, what can be expected also in natural habitats (high mountain regions). Analyses on the growth multiplication factor of photobiont cells (alga) are indicating a higher degree of space influence on . Photobiont cells of maintained their doubling rate of about 12 days compared to control conditions, whereas the doubling rate of photobiont cells of was seriously affected after space exposure, showing a severe retardation (control conditions: doubling rate (d)=7 days, after space exposure: d=12 days).
机译:在紫精症的背景下,已经进行了调查,以研究不同生物抵抗生命从供体行星(宿主行星)到受体行星的自然行星际转移情景的能力。以往研究的主要重点是暴露于空间后细菌的抗性及其形成菌落的能力,但在太空中仅进行了一些关于真核微生物特别是共生组织形式(例如地衣)的实验(de la Torre等。 (2007年,Sancho等人,2007年)。这些实验集中在光合作用分析上,作为了解真核生物暴露于空间条件后维持其生理活性的第一步。下一步,在最后一次ESA在福田M3上的BIOPAN-6上进行ESA实验之后,分析了生理活性,繁殖能力和“健康”的细胞结构,作为生命力检查的重要组成部分。除了使用叶绿素a荧光测定光合作用活性外,还使用LIVE / DEAD染色染料进行CLSM分析,并通过培养实验验证了两种地衣共生体(藻类和真菌)的发芽和生长能力。 。在这种情况下,新的结果现在明确地在数量上强调了两个被研究的共生体的高存活能力以及维持发芽和生长的能力,尽管它们暴露于苛刻的空间条件下且暴露时间为,但它们形成了和的上石器质地衣物种。 10天。两种分析的地衣中约有80%至90%的子囊孢子能够发芽并成长为发育良好的菌丝体。详细信息:如果与对照分析相比,地衣子孢子的发芽和生长能力分析结果表明对生长行为没有损害,仅在发芽起始点有所不同,即比对照早约1至2天条件(孢子形成后1至2天,而不是2至4天)。子囊孢子的分析结果表明,干燥对于成功发芽具有重要作用。如果不进行空间真空处理,则对照样品将无法发芽。这暗示了非常必要的干燥条件才能使子囊孢子壁破裂以增强发芽能力,这在自然栖息地(高山地区)中也是可以预期的。对光生物细胞(藻类)的生长倍增因子的分析表明,空间对的影响更大。与对照条件相比,光生物素细胞的倍增速率保持在约12天左右,而空间暴露后,光生物素细胞的倍增速率受到严重影响,显示出严重的迟滞(对照条件:空间后倍增速率(d)= 7天)暴露:d = 12天)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号