Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis

DR Zak, KS Pregitzer, JS King, WE Holmes - The New Phytologist, 2000 - cambridge.org
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO2 accumulates in the Earth's atmosphere. We summarized data from 47 …

[引用][C] Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis

DR ZAK, KS PREGITZER, JS KING… - New …, 2000 - pascal-francis.inist.fr
Elevated atmospheric CO2, fine roots and the response of soil microorganisms : a review
and hypothesis CNRS Inist Pascal-Francis CNRS Pascal and Francis Bibliographic …

[PDF][PDF] Elevated atmospheric CO 2, fine roots and the response of soil microorganisms: a review and hypothesis

DR Zak, KS Pregitzer, JS King, WE Holmes - 2000 - deepblue.lib.umich.edu
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO# accumulates in the Earth's atmosphere. We summarized data from 47 …

Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis

DR ZAK, KS PREGITZER, JS KING… - New …, 2000 - Wiley Online Library
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO2 accumulates in the Earth's atmosphere. We summarized data from 47 …

Research Review: Elevated Atmospheric CO2, Fine Roots and the Response of Soil Microorganisms: A Review and Hypothesis

DR Zak, KS Pregitzer, JS King, WE Holmes - New Phytologist, 2000 - JSTOR
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO2 accumulates in the Earth's atmosphere. We summarized data from 47 …

Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis

DR Zak, KS Pregitzer, JS King, WE Holmes - New Phytologist, 2000 - hero.epa.gov
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO 2 accumulates in the Earth's atmosphere. We summarized data from 47 …

Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis.

DR ZAK, KS PREGITZER, JS KING… - New …, 2000 - search.ebscohost.com
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO< sub> 2 accumulates in the Earth's atmosphere. We summarized data …

Elevated atmospheric CO2, fine roots and the response of soil microorganisms: a review and hypothesis.

DR Zak, KS Pregitzer, JS King, WE Holmes - 2000 - cabidigitallibrary.org
There is considerable uncertainty about how rates of soil carbon (C) and nitrogen (N) cycling
will change as CO2 accumulates in the Earth's atmosphere. We summarized data from 47 …

[PDF][PDF] Elevated atmospheric CO#, fine roots and the response of soil microorganisms: a review and hypothesis

DR ZAK, KS PREGITZER, JS KING, WE HOLMES - academia.edu
in an attempt to generalize whether rates will increase, decrease, or not change. Our
synthesis centres on changes in soil respiration, microbial respiration, microbial biomass …