In contrast, the application of organic C and N to soil in the form of glycine led to marked and highly significant increases in the concentration of P. roseus DNA in soil, with main effects of the substrate being recorded across all samplings and in individual years except 2011 (Table 1 ; Figure 4a–e ).
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Inhibitory effects of climate change on the growth and extracellular enzyme activities of a widespread Antarctic soil fungus.
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Two‐way ANOVA indicated marginally significant effects of OTCs on water potentials in glycine‐amended soils at the samplings in 2009 and 2010, when OTCs increased soil water potential from −6.8 to −2.6 and −3.8 to −1.7 MPa, respectively ( F 1,12 = 3.78 and 4.03, p = 0.076 and 0.068, respectively; Figure 3c,d ). 3.2 Q‐PCR analyses Quantitative