Introduction
Microbial ecology can be defined as the study of the interactions of microorganisms. The study of microbial ecology can be extended to its interaction with the environment, plant and animal factors. It is a broad area that consists of the analysis of symbioses and biogeochemical cycles. It also includes the interaction of microbes with anthropogenic factors like pollution and climate change. Cho (12) in the human bacteria discusses the role played by microbes in human health. Cho explores the need to use technologies to investigate complex microbial issues. Simon Lax et.al, (17) also interrogates whether the bacteria can influence a patient's health and help him heal faster. He also studies whether the diversity of the bacterial aspects can help with the research on potential pathogens in human health. Both articles attempt to examine the relationship and interactions between microbes in an ecological system. This paper
The Relationship Between the Hospitals ‘Built Environment’ and Human Health
The indoor setting is becoming a single ecosystem for many inhabitants in developed communities. There's a secure connection between human skin and microbial communities in the indoor environments. Increased occurrence of immunological illnesses like allergies and asthma can be linked to the microbial diversity of the indoor environment as compared to the outside environment. Therefore the possible connection between hospital-acquired infection and hospital-associated microbial communities demand more investigation
When people arrive in a hospital, they usually come in various health complaints. It depends on the type of treatment they will be administered depending on the complexity of the microbial assemblages. Even though understanding the manner in which the microbes interact becomes a vital factor in this study, interpreting the harmful ones is another significant aspect of the study. In this study, a description map showing the interaction of microbes is analyzed to the core. Despite the survey offering information regarding the interaction of bacteria in the human health study, a verified knowledge is recommended for observational theory. The use of 16S rather than culture-based or shotgun metagenomic sequencing methods does not provide a comprehensive broadcast result that is predictable. Despite the exploration, further examination is required to justify the interaction of the microbe community and the factors that contribute o their effects. However, this research sums up the vital aspect and view of the ecology concerning the skin of the patient. The knowledge can also be related to the fundamental factor that includes the hospital surface, which can be intertwined to provide credible evidence.
Tools for Studying Microbial Ecology
When the technologies continue to be adjusted to meet a specific requirement, scientific factors will consist of an elucidation that occupies a particular human aspect while dictating the differences between all microbial hosts. As the model of this scientific goal, Cho, et, al, 22 applied new techniques to understand the interhost metagenomic difference concerning phenotypes. Categorizing the metagenomic factors based on the health aspect creates a metabolic network. It's very important to know the methods in which phenotypes are shaped to give room for the therapeutic process arranged by the microbial communities. One of the phenotypes that are common in the study of microbes is diabetes. Diabetes offers a more comfortable research and understanding of the way the microbial communities interact in the human health category.
The approaches that can provide an exhaustive concentration of the microbial communities include the metagenome analysis, which requires that one assigns the unarranged sequences generated by shotgun KEGG (Genomes) databases17, Orthologous NCBI non-redundant Groups or the Kyoto Genes Encyclopedia. It is a method that can be used to ascertain the interaction of the microbes within the ecological aspect.
The Role of Microbial Ecology in Understanding of Human Health
Various technologies for exploring the bioinformatics and microbe gene sequencing continue to evolve. The scientific evolvement of these technologies will enable one to assign the right microbes in their corresponding hosts. It can be summarized by understanding the microbiomes that fill the population required for the super-rich niches in an ecological aspect. All the elements of microbiomes are standard factors that interact as usual during the aging period and growth. The knowledge regarding their interaction can be used to substantially eliminate any further doubts regarding the similar nature of the justification stage.
Microbes and Health Consequences
One wonders how the microbes affect the human health. The current studies have identified that microbe population to influence the treatment of various diseases. The phenotype diseases such as diabetes have a variant microbe population that makes it easier for the community to interact freely in human health. For many settings, the mission is to discover out whether there is a connection between disease pathology and microbiome variations.
The complexities involved in the study might, however, cause panic due to the interaction of the harmful microbiomes. Their destructive nature might prolong the life of a phenotype disease such as diabetes in human health. Instead of a single community movement in the ecological era being associated with disease, some types (like metagenomic functionality and composition) may be more practical. The characteristics of pathogens and host interactions with might also have the same features. It is a case scenario that might create a new field and a selection criterion for the unassigned sequences.
The healthy human microbiome is imminent and depends on the community health interactions that occur among the microbes. The proposed extinction of the early organisms might force an alternative plan that can restore the original proceedings of the community interaction in the ecology. Two types of restoration have been identified to meet the threshold that would return the new microbes to its earlier stage. The first method involves the recovery of the bacterium to its original host. Restoring it to its original host would help identify the ancient interaction methods that occurred in the community while attempting to understand the ecological concept. The second restoration method is considered to be therapeutic as compared to the first one. The second method requires that the extinction is balanced to its original host to prevent any form of imbalances that might occur. An imbalance might be witnessed when the host does not interact with the community in its right way.
The technical problem that might be witnessed while restoring the organism to its original host might be associated with some problems in the ecological system. Understanding the implications of metagenome and macrobiotic aspects of human health might also help one to gain the vital knowledge of the human health and some phenotype disease such as diabetes. The approaches that are used to support a patient understand the condition in question would also depend on him having the perceived knowledge regarding his health and the tenacity of the immune system. Despite this, new approaches have been advocated for to ascertain the original existence of the complexity that is created by the metadata.
Works Cited
"Cho, I. and M.J. Blaser. 2012. The human microbiome: at the interface of health and disease. Nature Reviews Genetics 13: doi: 10.1038/nrg3182."
Lax, S., N. Sangwan, D. Smith, P. Larsen, K. M. Handley, M. Richardson, K. Guyton, M. Krezalek, B. D. Shogan, J. Defazio, I. Flemming, B. Shakhsheer, S. Weber, E. Landon, S. Garcia-Houchins, J. Siegel, J. Alverdy, R. Knight, B. Stephens and J. A. Gilbert. 2017. Bacterial colonization and succession in a newly opened hospital. Science Translational Medicine 9:DOI: 10.1126/scitranslmed.aah6500.
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