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An integrated systems approach to plateau ecosystem management-a scientific application in Qinghai and Tibet plateau

机译:高原生态系统综合管理系统方法-在青藏高原的科学应用

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摘要

There is a global trend of the shortage of nature resources, such as water and wildlife, which have suffered dramatic losses due to over-use, pollution, habitat loss, and, increasingly, changes caused by global warming. To make the planet more sustainable, abundant data has to be collected and analyzed from ecosystems for scientific decision-making, restoring and preserving natural resources. In this paper, an integrated systems approach has been proposed for the data acquisition and analysis in information management of an ecosystem; it is a direct extension of an agriculture ecosystem enterprise information system (AEEIS) developed by Xu et al. (Genomics Proteomics Bioinformatics 3:5-17, 2008). The challenges in system development have been discussed, and the significance of the developed system has been illustrated through a thorough discussion and a case study on the genetic coding and expression of antelopes. In the case study, an IoT-based enterprise information system (EIS) has been applied to investigate the effects of the signal transducer and activator of transcription 3 (STAT3) on the adaptation mechanism to high altitude hypoxia. Two remarkable conclusions are (i) the levels of the STAT3 mRNA and protein vary from one tissue to another, and the highest level is in the lung tissue, and (ii) Tibetan antelope's expression of STAT3 mRNA and protein are higher than that from plain sheep. Based on the fact that a Tibetan antelope has a higher adaptability to hypoxia; it has illustrated that the hypoxic STAT3-specific expression is one of the molecular bases of high altitude hypoxia adaptation in Tibetan antelope.
机译:全球存在自然资源短缺的趋势,例如水和野生动植物,由于过度使用,污染,栖息地丧失以及全球变暖引起的变化而遭受巨大损失。为了使地球更具可持续性,必须从生态系统中收集和分析大量数据,以进行科学决策,恢复和保护自然资源。本文提出了一种集成系统方法,用于生态系统信息管理中的数据获取和分析。它是Xu等人开发的农业生态系统企业信息系统(AEEIS)的直接扩展。 (基因组蛋白质组学生物信息学3:5-17,2008)。讨论了系统开发中的挑战,并通过深入讨论和关于羚羊的遗传编码和表达的案例研究,阐明了所开发系统的重要性。在案例研究中,基于物联网的企业信息系统(EIS)已被用于研究信号转导和转录激活因子3(STAT3)对高原低氧适应机制的影响。两个显着的结论是:(i)STAT3 mRNA和蛋白的水平在一个组织之间有所不同,并且最高水平在肺组织中;(ii)藏羚羊STAT3 mRNA和蛋白的表达高于普通羚羊。羊。基于藏羚羊对缺氧的适应性较高的事实;这说明STAT3的低氧表达是藏羚羊高原低氧适应的分子基础之一。

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