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October 10, 2024

Increasing plant diversity in agriculture can promote soil carbon sequestration

TwinWin field experiment and sampling design. Credit: Nature Communications (2024). DOI: 10.1038/s41467-024-52449-5
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TwinWin field experiment and sampling design. Credit: Nature Communications (2024). DOI: 10.1038/s41467-024-52449-5

A study carried out at the University of Helsinki demonstrates that boosting plant diversity in agriculture can increase plant biomass and improve plant–microbe interactions, both of which promote the storage of carbon in the soil.

The study, in Nature Communications, investigated whether increasing through the use of undersown species in field ecosystems can affect the structure and functioning of to promote soil health and . Specifically, the study examined how the growth, community structure, and carbon use efficiency of root microbes respond to plant species.

"Our findings indicate that promoting plant diversity in agriculture could be an effective strategy for improving carbon sequestration of agricultural soils. This finding provides much needed evidence-based support for developing sustainable agricultural policy in the European Union," says project lead and Professor Anna-Liisa Laine from the Faculty of Biological and Environmental Sciences of the University of Helsinki.

According to the researchers, the expansion of agricultural land has caused a reduction in soil carbon, a problem whose resolution is central to curbing climate change.

"In practice, even a small improvement in the carbon retention capacity of fields can be significant, as a large share of land area globally has been harnessed for food production," Laine says.

The study was carried out in an exceptionally extensive biodiversity experiment with as the experimental cereal. The researchers investigated how companion species to barley, such as red clover (Trifolium pratense), alfalfa (Medicago sativa) and chicory (Cichorium intybus), affect barley yields, as the crop must not be compromised at the expense of sustainability in agroecosystems. Barley was grown in test plots either on its own or with one, two, four or eight undersown species.

In ecology, a positive relationship has already been demonstrated experimentally between the number of plant species and ecosystem functions, such as soil carbon retention. However, field ecosystems differ considerably from experiments emulating wild plant communities, as the former contain a single dominant species. The researchers were surprised by how quickly microbes responded positively to plant diversity, even though barley was the dominant in the test plots.

More information: Luiz A. Domeignoz-Horta et al, Plant diversity drives positive microbial associations in the rhizosphere enhancing carbon use efficiency in agricultural soils, Nature Communications (2024).

Journal information: Nature Communications

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