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Wim van der Putten
Is soil biodiversity a nature-based
solution?
Soil biodiversity a solution for what?
Everything that we eat, drink, breath, clothes that we wear, and materials that
we use pass through soil and soil biodiversity over and over again.
So: soil biodiversity a solution for sustainability?
Half of all sustainable development goals (sdg’s) depend on soil (blue marks)
Global soil biodiversity assessment in progress
A hand full of soil: over 5,000 ‘species’ of microbes,
more individuals than humans on earth.
Bardgett and van der Putten Nature 2014
The main players: microbes, invertebrates, small vertebrates: 0.000 002 – 0.2 m
Is soil biodiversity a solution for sustainability,
and can we learn from nature?
Take home message: yes, but
1. We have to think beyond numbers only
2. Restoring soil biodiversity requires thinking
about ecosystem management
http://images.google.com/imgres?imgurl=http://www.sare.org/publications/explore/images/scenewide2.jpg
Contribute to
biodiversity
Suppress
pests (IPM)
Build soil
structure
Remove pesticides and
nutrients in buffer strips
Support plant
and
animals via
mutualism
Control and cycle
plant nutrients
Source/sink
of Green-
house gases
Biodegrade
pesticides
in field
Breakdown
wastes, make
compost
Develop antibiotic
resistence (or not)
Fix nitrogen
Build soil
organic matter
Sequester
carbon
Support farmer’s
digestion and immunity
Control parasitic
nematodes
Thanks to Kate Scow
Soil biodiversity is
multi-functional, contributing
to many ecosystem services;
Soil biota differ in activities,
across space,
and across time
Van den Hoogen, Geisen et al. Nature 2019Global nematode survey
Loss of soil biodiversity in Europe
owing to
intensification of agriculture
Tsiafouli et al.2014 Global Change Biology,973-985
Countries:
SE Sweden
UK United Kingdom
CZ Czech Republic
GR Greece
G=grassland
E=extensive agriculture
I=intensive agriculture
Morriën, Hannula, Snoek, & EcoFinders
Nature Communications (2017)
Hannula, Morriën et al. ISMEJ (2017)
Correlation-based networks in three phases of land abandonment: roughly 5, 15 and 30 years ago:
Network interaction strengths increased with time
Dense networks were more efficient in carbon and nitrogen uptake,
and they had fewer soil-borne pathogens
Soil biodiversity network
interaction strength increases
What can we do in agriculture?
Reduced tillage, soil organic matter, cover crops, less pesticides, etc.
Nature: early succession  Mid/later succession
less efficient soils more efficient soils
more pathogens more mutualistic symbionts
Soil biodiversity network
The problem: a sustainable soil biodiversity network ‘needs’ slow-growing
plant species to get the nutrients out
Nature:
early succession
fast growth
Nature:
mid/late succession:
slow growth
Nature-based agriculture:
increasing soil biodiversity
and network interaction strength
The point: increasing soil biodiversity also requires attention for crop traits
Intensive
agriculture
The challenge for
nature-based
Outlook:
There are currently several lines being explored for crops making better
use of enhanced soil biodiversity:
- going back to wild crop relatives: how do they make use of
microbiomes and can those traits be restored in current crops
- studying wild plant species along successional gradients to unravel
how plants may be productive in high-diversity soils
Conclusions:
• Considering soil biodiversity also requires considering traits,
interactions, and network structure (so, not only numbers)
• Soil biodiversity as a nature-based solution to enhance sustainability
is possible, but it takes two to tango: a nature-based soil biodiversity
also requires crops that can handle these soils
https://nioo.knaw.nl/en/calendar/soil-animal-days-2020
https://www.globalsoilbiodiversity.org/ http://www.fao.org/global-soil-partnership/resources/highlights/detail/en/c/1196842/
Thank you for your attention!
Taxon Diversity per amount
soil or area (taxonomic
units indicated below)
Abundance
(approximate)
Prokaryotesa
100-9,000·cm-3
4-20·109
·cm-3
Fungib
200 m.g-1*
100 m.g-1
AMF (species) c
10-20 m-2
81-111 m.cm-3
Protistsd
150-1,200 (0.25 g)-1**
104
-107
·m-2
Nematodes (genera)e
10-100 m-2
2-90·105
m-2
Enchytraeidsf
1-15 ha-1
12,000-311,000 m-2
Tardigradesg
? ?
Collembolag
20·m-2
1-5 104
m-2
Mites (Oribatida) h
100-150 m-2
1-10 104
· m-2
Isopodag
10 ·100 m-2
10 · m-2
Diplopodag
10 ·2,500 m-2
110 · m-2
Earthworms (Oligochaeta)i
10-15 ha-1
300 · m-2
Estimated diversity and abundance of soil taxa according to
published literature, supported by expert judgment.
Bardgett and van der Putten Nature 2014

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KEYNOTE PRESENTATION - Is soil biodiversity a nature-based solution? Mr Wim van der Putten, Netherlands Institute of Ecology, The Netherlands

  • 1. Wim van der Putten Is soil biodiversity a nature-based solution?
  • 2. Soil biodiversity a solution for what? Everything that we eat, drink, breath, clothes that we wear, and materials that we use pass through soil and soil biodiversity over and over again. So: soil biodiversity a solution for sustainability?
  • 3. Half of all sustainable development goals (sdg’s) depend on soil (blue marks) Global soil biodiversity assessment in progress
  • 4. A hand full of soil: over 5,000 ‘species’ of microbes, more individuals than humans on earth.
  • 5. Bardgett and van der Putten Nature 2014 The main players: microbes, invertebrates, small vertebrates: 0.000 002 – 0.2 m
  • 6. Is soil biodiversity a solution for sustainability, and can we learn from nature? Take home message: yes, but 1. We have to think beyond numbers only 2. Restoring soil biodiversity requires thinking about ecosystem management
  • 7. http://images.google.com/imgres?imgurl=http://www.sare.org/publications/explore/images/scenewide2.jpg Contribute to biodiversity Suppress pests (IPM) Build soil structure Remove pesticides and nutrients in buffer strips Support plant and animals via mutualism Control and cycle plant nutrients Source/sink of Green- house gases Biodegrade pesticides in field Breakdown wastes, make compost Develop antibiotic resistence (or not) Fix nitrogen Build soil organic matter Sequester carbon Support farmer’s digestion and immunity Control parasitic nematodes Thanks to Kate Scow Soil biodiversity is multi-functional, contributing to many ecosystem services; Soil biota differ in activities, across space, and across time
  • 8. Van den Hoogen, Geisen et al. Nature 2019Global nematode survey
  • 9. Loss of soil biodiversity in Europe owing to intensification of agriculture Tsiafouli et al.2014 Global Change Biology,973-985 Countries: SE Sweden UK United Kingdom CZ Czech Republic GR Greece G=grassland E=extensive agriculture I=intensive agriculture
  • 10. Morriën, Hannula, Snoek, & EcoFinders Nature Communications (2017) Hannula, Morriën et al. ISMEJ (2017) Correlation-based networks in three phases of land abandonment: roughly 5, 15 and 30 years ago: Network interaction strengths increased with time Dense networks were more efficient in carbon and nitrogen uptake, and they had fewer soil-borne pathogens
  • 11. Soil biodiversity network interaction strength increases What can we do in agriculture? Reduced tillage, soil organic matter, cover crops, less pesticides, etc. Nature: early succession  Mid/later succession less efficient soils more efficient soils more pathogens more mutualistic symbionts
  • 12. Soil biodiversity network The problem: a sustainable soil biodiversity network ‘needs’ slow-growing plant species to get the nutrients out Nature: early succession fast growth Nature: mid/late succession: slow growth
  • 13. Nature-based agriculture: increasing soil biodiversity and network interaction strength The point: increasing soil biodiversity also requires attention for crop traits Intensive agriculture The challenge for nature-based
  • 14. Outlook: There are currently several lines being explored for crops making better use of enhanced soil biodiversity: - going back to wild crop relatives: how do they make use of microbiomes and can those traits be restored in current crops - studying wild plant species along successional gradients to unravel how plants may be productive in high-diversity soils
  • 15. Conclusions: • Considering soil biodiversity also requires considering traits, interactions, and network structure (so, not only numbers) • Soil biodiversity as a nature-based solution to enhance sustainability is possible, but it takes two to tango: a nature-based soil biodiversity also requires crops that can handle these soils
  • 17. Thank you for your attention!
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  • 19. Taxon Diversity per amount soil or area (taxonomic units indicated below) Abundance (approximate) Prokaryotesa 100-9,000·cm-3 4-20·109 ·cm-3 Fungib 200 m.g-1* 100 m.g-1 AMF (species) c 10-20 m-2 81-111 m.cm-3 Protistsd 150-1,200 (0.25 g)-1** 104 -107 ·m-2 Nematodes (genera)e 10-100 m-2 2-90·105 m-2 Enchytraeidsf 1-15 ha-1 12,000-311,000 m-2 Tardigradesg ? ? Collembolag 20·m-2 1-5 104 m-2 Mites (Oribatida) h 100-150 m-2 1-10 104 · m-2 Isopodag 10 ·100 m-2 10 · m-2 Diplopodag 10 ·2,500 m-2 110 · m-2 Earthworms (Oligochaeta)i 10-15 ha-1 300 · m-2 Estimated diversity and abundance of soil taxa according to published literature, supported by expert judgment. Bardgett and van der Putten Nature 2014