When disturbance is rare or mild, established organisms have more time to grow, reproduce, and occupy available resources. Strong competitors may then exclude species with slower growth or narrower tolerances. In this way, reduced disturbance can lower diversity not by directly removing organisms, but by allowing competitive dominance to shape community composition over time.
Frequency and intensity influence communities through different pressures. Frequent events may repeatedly remove organisms before recovery, while intense events can eliminate more individuals during each occurrence. Their combined effects determine whether colonization and recovery keep pace with losses. Consequently, the same frequency may produce different diversity patterns depending on how strongly each disturbance alters the community.
Disturbance can create variation among locations by opening some areas while leaving others relatively intact. This heterogeneity provides multiple opportunities for survival, colonization, and recovery, allowing species with different requirements to persist together. It can also prevent one competitor from controlling every part of the habitat, strengthening the conditions that support coexistence.
Researchers can compare communities exposed to different disturbance frequencies or intensities and measure the number or composition of species in each treatment or site. They would examine whether diversity is lower under minimal and severe disturbance but higher at an intermediate level. Comparisons should also consider recovery and colonization, because disturbance effects depend on community responses over time.
The hypothesis can help managers evaluate whether suppressing all disturbance or allowing severe, repeated disturbance may reduce biodiversity. Management may instead consider disturbance regimes that maintain opportunities for colonization while allowing communities to recover. Because predictions vary among ecosystems and taxa, conservation decisions should be based on the responses of the organisms and habitats being managed.
It provides a framework for examining how disturbance influences the sequence by which communities develop and which species become established. Disturbance may alter the balance between surviving residents, new colonists, and dominant competitors. Researchers can therefore use the hypothesis to connect disturbance history with observed patterns of species composition, recovery, and biodiversity.