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Root-derived inputs are major contributors to soil carbon in temperate forests, but vary by mycorrhizal type [期刊论文]
Ecology Letters, 2021-01-01, 24 (4
Keller A.B.;  Brzostek E.R.;  Craig M.E.;  Fisher J.B.;  Phillips R.P.
View/Download:7/0
 
Tree mycorrhizal type predicts within-site variability in the storage and distribution of soil organic matter [期刊论文]
Global Change Biology, 2018-01-01, 24 (8
Craig M.E.;  Turner B.L.;  Liang C.;  Clay K.;  Johnson D.J.;  Phillips R.P.
View/Download:35/0
 
Soil carbon cycling proxies: Understanding their critical role in predicting climate change feedbacks [期刊论文]
Global Change Biology, 2018-01-01, 24 (3
Bailey V.L.;  Bond-Lamberty B.;  DeAngelis K.;  Grandy A.S.;  Hawkes C.V.;  Heckman K.;  Lajtha K.;  Phillips R.P.;  Sulman B.N.;  Todd-Brown K.E.O.;  Wallenstein M.D.
View/Download:32/0
 
Faster turnover of new soil carbon inputs under increased atmospheric CO2 [期刊论文]
Global Change Biology, 2017-01-01, 23 (10
van Groenigen K.J.;  Osenberg C.W.;  Terrer C.;  Carrillo Y.;  Dijkstra F.A.;  Heath J.;  Nie M.;  Pendall E.;  Phillips R.P.;  Hungate B.A.
View/Download:39/0
 
Feedbacks between plant N demand and rhizosphere priming depend on type of mycorrhizal association [期刊论文]
Ecology Letters, 2017-01-01, 20 (8
Sulman B.N.;  Brzostek E.R.;  Medici C.;  Shevliakova E.;  Menge D.N.L.;  Phillips R.P.
View/Download:35/0
 

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