More than 50 years ago on the shoreline of a rocky tide pool, the US ecologist Robert Paine found out that the removal of a single species from an ecosystem could dramatically alter its structure and function. He had discovered that starfish act as a keystone species in that their presence and role as a top predator maintained the coexistence of diverse species in the rocky intertidal zone.
A team of ecologists and geneticists have now found that a mutation at a single gene can also dramatically alter the structure and function of an ecosystem. The study, published in Science, suggests that a gene not only encodes information that determines an organism’s fitness, but can also influence the persistence of interacting species in an ecological community. The discovery of the team was made using an experimental ecosystem in the lab with a predator (a parasitic wasp), two herbivores (aphids), and the plant Arabidopsis thaliana – a genetic model organism.
The researchers tested the effect of three plant genes that control the plant’s natural arsenal of chemical defenses against herbivores. They found that the herbivores and predator in their experimental community were more likely to survive on plants with a mutation at a single gene called AOP2. “This natural mutation at AOP2 not only affected the plant’s chemistry, but also made the plant grow faster, which in turn helped the herbivores and predator coexist, thereby preventing the ecosystem from collapsing,” the first author explains. Similar to a keystone species such as the starfish, AOP2 acts as a “keystone gene” that is critical to the survival of the experimental ecosystem.
The discovery of a keystone gene is likely to have implications on how to conserve biodiversity in a changing world. In particular, knowledge from genetics and ecological networks should be included when it comes to predicting the consequences of genetic change for the persistence of biodiversity across scales. Individuals with different variants of a gene or even genetically modified organisms could be added to existing populations to foster more diverse and resilient ecosystems. However, a seemingly small genetic change could unleash a cascade of unintended consequences for ecosystems if not studied in detail first.
“We’re only just beginning to understand the implications of genetic change on how species interact and coexist. Our findings show that the current loss of genetic diversity may have cascading effects that lead to abrupt and catastrophic shifts in the persistence and functioning of terrestrial ecosystems,” says the author.
https://www.science.org/doi/10.1126/science.abf2232
A single gene controls species diversity in an ecosystem
- 1,394 views
- Added
Latest News
Citrullination is a key pla…
By newseditor
Posted 14 Sep
Senolytic therapy clinical…
By newseditor
Posted 14 Sep
Genetic tools probe microbi…
By newseditor
Posted 13 Sep
A secret passage for mutant…
By newseditor
Posted 11 Sep
Specialized T cells in the…
By newseditor
Posted 10 Sep
Other Top Stories
Disrupted sleep protects the brain
Read more
Brain damage continues even after alcohol consumption stopped
Read more
Why certain PTSD patients unresponsive to behavioral therapy
Read more
Dopamine cells influence higher order cognition of prefrontal corte…
Read more
Hepatitis C-infected hearts and lungs safely transplanted
Read more
Protocols
Genetic manipulation of Pat…
By newseditor
Posted 13 Sep
Single-nucleus RNA sequenci…
By newseditor
Posted 08 Sep
Engineering RNA export for…
By newseditor
Posted 25 Aug
ATP production from electri…
By newseditor
Posted 21 Aug
Labeling PIEZO2 activity in…
By newseditor
Posted 20 Aug
Publications
Timing of lifespan influenc…
By newseditor
Posted 16 Sep
Transformer-based biomarker…
By newseditor
Posted 16 Sep
Somatic variants of MAP3K3…
By newseditor
Posted 16 Sep
The NLRP3 inflammasome and…
By newseditor
Posted 15 Sep
Targeting the metabolism of…
By newseditor
Posted 15 Sep
Presentations
Hydrogels in Drug Delivery
By newseditor
Posted 12 Apr
Lipids
By newseditor
Posted 31 Dec
Cell biology of carbohydrat…
By newseditor
Posted 29 Nov
RNA interference (RNAi)
By newseditor
Posted 23 Oct
RNA structure and functions
By newseditor
Posted 19 Oct
Posters
A chemical biology/modular…
By newseditor
Posted 22 Aug
Single-molecule covalent ma…
By newseditor
Posted 04 Jul
ASCO-2020-HEALTH SERVICES R…
By newseditor
Posted 23 Mar
ASCO-2020-HEAD AND NECK CANCER
By newseditor
Posted 23 Mar
ASCO-2020-GENITOURINARY CAN…
By newseditor
Posted 23 Mar