supported by the National Natural Science Foundation of China(No.41473068);supported by China Postdoctoral Science Foundation(No.2022M722667)。
Fertilization or atmospheric deposition of nitrogen(N)and phosphorus(P)to terrestrial ecosystems can alter soil N(P)availability and the nature of nutrient limitation for plant growth.Changing the allocation of leaf P...
supported by National Natural Science Foundation of China (42001305);Guangdong Basic and Applied Basic Research Foundation (2022A1515011459);GDAS'Special Project of Science and Technology Development (2020GDASYL-20200102001);Guangzhou Basic and Applied Basic Research Foundation (2023A04J1534) to Z.W.;the US National Science Foundation (NSF) Macrosystems Biology and NEON-Enabled Science grant 1638720 to P.A.T.,and E.L.K.;NSF Biology Integration Institute award ASCEND,DBI-2021898 to P.A.T.
Characterizing foliar trait variation in sun and shade leaves can provide insights into inter-and intra-species resource use strategies and plant response to environmental change.However,datasets with records of multi...
supported by the Lorraine University of Excellence via the DEEPSURF project(ANR 70315-IDEX-04-LUE)。
The increase in the frequency and intensity of drought events expected in the coming decades in Western Europe may disturb forest biogeochemical cycles and create nutrient deficiencies in trees.One possible origin of ...