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How is a symbiotic relationship useful to an ecosystem?

A symbiotic relationship is the same as a mutualistic relationship, where both organisms benefit- For example, lions hunting for food- this enables a vast group of organisms to benefit and means that resources can be shared


What are examples of symbiotic competitive relationships?

Examples of symbiotic competitive relationships include the interactions between predator and prey species, where predators compete with each other for limited prey resources. In mutualistic relationships, species may compete with each other for shared resources, such as plants competing for sunlight in a forest canopy. Additionally, in some symbiotic relationships, organisms may compete for the same host or habitat space, such as different species of parasites coexisting on a single host organism.


What are the symbiotic relationship envirolment?

any relationship shared between 2 organisms that is mutually beneficial for the both concerned is called a symbiotic relationship environment. Like a relationship between the Egret bird and the crocodile. The bird helps the animal with cleaning of his teeth and in return gets food.


How does DNA percentage work in determining genetic relationships between individuals?

DNA percentage is used to determine genetic relationships between individuals by comparing the amount of shared DNA. The higher the percentage of shared DNA between two individuals, the closer their genetic relationship is likely to be. This can help determine how closely related individuals are, such as siblings or cousins.


What are the most common barriers in relationships?

shared genetics


How is cladistics used to reveal evolutionary relationships between organisms?

Cladistics analyzes shared characteristics in organisms to group them into evolutionary related categories called clades. By identifying shared derived characteristics among species, cladistics can reveal the evolutionary relationships and common ancestry between organisms. This method helps to construct evolutionary trees that show the branching patterns of species over time.


What is the significance of shared centimorgans in determining genetic relationships between individuals?

Shared centimorgans are a measure of genetic similarity between individuals, indicating the amount of DNA they have in common. The more shared centimorgans two individuals have, the closer their genetic relationship is likely to be. This information is important in determining the degree of relatedness between individuals, such as identifying relatives or understanding inherited traits.


How are the words cladistics and cladogram related?

Cladistics is a method in biology for determining the evolutionary relationships between organisms based on shared characteristics. A cladogram is a visual representation of these relationships, showing how different organisms are grouped together based on their shared derived characteristics. Essentially, cladistics is the method used to create a cladogram.


What is the significance of a family tree diagram in understanding the relationships between cousins?

A family tree diagram is important for understanding the relationships between cousins because it visually shows how individuals are related through their shared ancestors. By looking at the diagram, one can easily see the connections and degrees of separation between cousins, helping to clarify the complex web of familial relationships.


What taxonomy does not involve?

Taxonomy does not involve the study of the evolutionary history or relationships between different organisms. It focuses more on the classification and naming of organisms based on their shared characteristics.


What is valence electrons shared between atoms?

In a covalent bond electrons are shared between two electrons.


Is a cladogram the same as a taxonomic scheme?

A cladogram is a diagram used in cladistics to show evolutionary relationships between species, based on shared characteristics. It is not the same as a taxonomic scheme, which is a formal system for classifying and naming organisms into a hierarchical structure based on shared ancestry and evolutionary history.