Accumulation in nutrient acquisition strategies of arbuscular mycorrhizal fungi and plant roots in poor and heterogeneous soils of karst shrub ecosystems.
Creators
- 1. Key Laboratory of Karst Dynamics, Ministry of Natural and Resources & Guangxi Zhuangzu Autonomy Region, Institute of Karst Geology, Chinese Academy of Geological Sciences, No.50 Qixing Road, Qixing District, Guilin, 541004, Guangxi, China.
- 2. Guangxi Key Laboratory of Theory and Technology for Environmental Pollution Control, College of Environmental Science and Engineering, Guilin University of Technology, No.12 Jiangan Road, Qixing District, Guilin, 541004, Guangxi, China. panfujing@glut.edu.cn.
- 3. Key Laboratory of Karst Dynamics, Ministry of Natural and Resources & Guangxi Zhuangzu Autonomy Region, Institute of Karst Geology, Chinese Academy of Geological Sciences, No.50 Qixing Road, Qixing District, Guilin, 541004, Guangxi, China. glqiangli@hotmail.com.
- 4. International Research Center On Karst Under the Auspices of UNESCO, No.50 Qixing Road, Qixing District, Guilin, 541004, Guangxi, China. glqiangli@hotmail.com.
- 5. Huanjiang Observation and Research Station for Karst Eco-Systems, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Huanjiang, 547100, China.
- 6. Chinese Academy of Sciences
Description
Arbuscular mycorrhizal (AM) fungi and roots play important roles in plant nutrient acquisition, especially in nutrient poor and heterogeneous soils. However, whether an accumulation strategy of AM fungi and root exists in such soils of karst shrubland ecosystems remains unclear. Root traits related to nutrient acquisition (root biomass, AM colonisation, root acid phosphatase activity and N2 fixation) were measured in two N2-fixing plants (i.e. Albizia odoratissima (Linn. f.) Benth. and Cajanus cajan (Linn.) Millsp.) that were grown in heterogeneous or homogeneous nutrient (ammonium) soil with and without AM fungi inoculation.
Both of these plants had higher AM colonisation, root biomass and relative growth rate (RGR), but lower N2 fixation and root acid phosphatase activity in the rhizosphere in the heterogeneous soil environment, than that in the homogeneous soil environment. Plants grown in the AM fungi-inoculated heterogeneous soil environment had increased root biomass and root acid phosphatase activity compared with those grown in soil without inoculation. AM colonisation was negatively correlated with the N2 fixation rate of A. odoratissima, while it was not significantly correlated with the root phosphatase activity.
Our results indicated that enhanced AM symbiosis and root biomass increased the absorptive surfaces for nutrient acquisition, highlighting the accumulation strategies of AM and root traits for plant nutrient acquisition in nutrient poor and heterogeneous soils of the karst shrubland ecosystem.
© 2022. The Author(s).
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Publication Details
Journal article
Journal:
BMC plant biology
Publisher:
Springer Science and Business Media LLC
ISSN:
14712229
Volume:
22
Pages:
188
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Funding
Financial Support
the Foundation of Karst Dynamics Laboratory, MNR and GZAR
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National Natural Science Foundation of China
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the National Natural Science Foundation of China
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the National Natural Science Foundation of China
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the Natural Science Foundation of Guangxi
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the Guangxi Innovation Driven Development Special Fund Project of China
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Innovative Research Group Project of the National Natural Science Foundation of China
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the Opening Project of Guangxi Key Laboratory of Karst Dynamics
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the Opening Project of Guangxi Key Laboratory of Karst Dynamics
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References
Kembel SW, De Kroon H, Cahill JF, Mommer L. Improving the scale and precision of...
Read more
Hoeksema JD, Chaudhary VB, Gehring C, Johnson NC, Karst J, Koide RT, Pringle A, ...
Read more
Zhang W, Zhao J, Pan F, Li D, Chen H, Wang K. Changes in nitrogen and phosphorus...
Read more
Zhang H, Qin Z, Chu Y, Li X, Christie P, Zhang J, Gai J. Interactions between ar...
Read more
Guo D, Xia M, Wei X, Chang W, Liu Y, Wang Z. Anatomical traits associated with a...
Read more
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