Posts tonen met het label evolution. Alle posts tonen
Posts tonen met het label evolution. Alle posts tonen

woensdag 9 april 2014

Surtsey and the tomato as weed

The island Surtsey arose from the sea, south of Iceland, in a volcanic eruption that took from 1963 to 1967 to complete. Like Krakatau it has been extensively monitored by ecologists and biologists studying biological succession.

Here is how John McPhee writes about in The Control of Nature (1990):
From Surtsey's inception, scientists of many disciplines have carefully observed the island, taking advantage of any number of exceptional opportunities - for example, to observe the very beginnings of the process of forest succession, as seeds from who knows where invade and colonize freshly forming soil. For many months, they watched intently for the first green shoot to make its appearance in the black grit. This could offer insight so deep it might extend illumination even as far as the Silurian world. At last, a leaf appeared, unfurled, and was followed by a vine - a tomato plant.
The first plant to arrive was actually sea rocket, but the story of the vagrant tomato is well known. Introduced by human defecation (it was well manured, yes) and removed. 

If you want to know history, know the plants.

woensdag 21 maart 2012

Disturbance and diversity in grass

Romanian field with 43 species in 0.1 square meter.

A reader with no name left a link to a news article on a study on comparative plant biodiversity between ecosystems. The paper claims to be looking at biodiversity world records but that is really not that interesting; rainforests are the biodiversity hotspots of the world, what is fascinating is that when the size of the area researched shrinks grasslands rise to the fore with a spectacular number of species crammed in a tiny space. Examples: a 49-square-meter patch of Czech grassland contained 131 plant species, a patch of Argentine grassland of 1 square meter contained 89 species,  0.1 square meter of Romanian grassland contained 43 species.
 Even more fascinating is the reason for this diversity: human disturbance, read: 10.000 years of mowing. Citing 'Plant species richness: the world records'
The co-existence of large numbers of species is also of theoretical importance as a challenge to the ‘Paradox of the Plankton’. The principle of Gause states that two species occupying the same niche cannot co-exist long term, so how do 942 plant species co-exist in 1 ha of tropical rain forest? Can there be 942 niches?
...

The difference in vegetation type at which record richnesses are known parallels the size of the plants – grass tillers vs rain forest trees – but may also reflect intrinsic differences in the community. The high-richness short grasslands are all subject to repeated disturbance – mowing, grazing or fire – and this leads to more symmetric competition, and hence slower competitive exclusion. The most common management of these grasslands has been by mowing, practiced regularly for many years. For one of these extraordinarily rich, semi-dry grasslands, that in the Czech part of the White Carpathians, which holds the record at five spatial scales, continuity as a managed grassland since Neolithic times has been suggested, giving thousands of years for the immigration and sorting of species and for evolution to occur. Tropical rain forests have a more stable environment, the disturbances being mainly occasional windthrow. Their richness has been explained in many ways, including continuous speciation in a ‘stable’ ecosystem and high energy input. Wright (2002) highlighted niche differentiation, pest pressure and lifehistory differences.