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Bo Tang
ORCID
Publication Activity (10 Years)
Years Active: 2023-2024
Publications (10 Years): 9
Top Topics
Randomized Controlled Trial
Heat Stress
Candida Albicans
Plant Growth
Top Venues
Global change biology
Ecology letters
The New phytologist
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This page only lists publications with an associated author ORCID identifier.
Publications
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Bo Tang
,
Jing Man
,
Ferran Romero
,
Joana Bergmann
,
Anika Lehmann
,
Matthias C Rillig
Mycorrhization enhances plant growth and stabilizes biomass allocation under drought.
Global change biology
30 (7) (2024)
Bo Tang
,
Jing Man
,
Anika Lehmann
,
Matthias C Rillig
Arbuscular mycorrhizal fungi attenuate negative impact of drought on soil functions.
Global change biology
30 (7) (2024)
Bo Tang
,
Jing Man
,
Anika Lehmann
,
Matthias C Rillig
Arbuscular mycorrhizal fungi attenuate negative impact of drought on soil functions.
Global change biology
30 (7) (2024)
Bo Tang
,
Katherine S Rocci
,
Anika Lehmann
,
Matthias C Rillig
Nitrogen increases soil organic carbon accrual and alters its functionality.
Global change biology
29 (7) (2023)
Bo Tang
,
Jing Man
,
Anika Lehmann
,
Matthias C Rillig
Arbuscular mycorrhizal fungi benefit plants in response to major global change factors.
Ecology letters
(2023)
Wanjie Chen
,
Lin Jiang
,
Ruoyu Jia
,
Bo Tang
,
Hongzhi Jiang
,
Yang Wang
,
Xiaoming Lu
,
Jishuai Su
,
Yongfei Bai
Plant litter loss exacerbates drought influences on grasslands.
The New phytologist
(2023)
Bo Tang
,
Katherine S Rocci
,
Anika Lehmann
,
Matthias C Rillig
Nitrogen increases soil organic carbon accrual and alters its functionality.
Global change biology
(2023)
Bo Tang
,
Katherine S Rocci
,
Anika Lehmann
,
Matthias C Rillig
Nitrogen increases soil organic carbon accrual and alters its functionality.
Global change biology
(2023)
Bo Tang
,
Katherine S Rocci
,
Anika Lehmann
,
Matthias C Rillig
Nitrogen increases soil organic carbon accrual and alters its functionality.
Global change biology
29 (7) (2023)