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Fine roots only contained seven different FAs, with the most abundant being 18:2��6,9 (36��4 �� 3��6%), 16:0 (25��8?��?3��5%), 18:1��9 (12��3?��?3��4%) and 18:3��3,6,9 (12��1?��?4��8%). For details on FA composition of basal resources, see Fig. S1 (Supporting Information). ��13C signatures of leaf litter FAs differed significantly between the four treatments as follows (i) leaf litter and roots labelled, (ii) only leaf litter labelled, (iii) only roots labelled and (iv) unlabelled control (DFA after multidimensional scaling; F15,11?=?3��6, P? http://www.selleck.cn/products/Imatinib(STI571).html analysis could be performed because of insufficient number of replicates for the treatment with only leaf litter labelled. However, ��13C signatures of FAs were depleted by 2��2�� (SD?=?1��1) and 2��1�� (SD?=?0��7), respectively, in treatments where soil and leaf litter and where only soil was labelled. When only leaf litter was labelled, soil FAs http://www.selleckchem.com/products/AZD6244.html were not depleted compared to the unlabelled treatment (mean difference 0��2��?��?0��5; Fig.?2b). ��13C signatures of FAs of fine roots differed significantly between the four treatments (DFA; F15,11?=?3��7, P? http://www.selleckchem.com/products/SP600125.html The investigated oribatid mites, except Hypochthonius rufulus C.L. Koch, had a similar FA composition, with the highest amounts of plant- and fungal-specific FAs (18:1��9, 18:2��6,9, 18:3��3,6,9) of all investigated animals (up to c. 80% of total FAs; Table?2). In Achipteria coleoptrata (Linnaeus), Steganacarus magnus (Nicolet) and Platynothrus peltifer (C.L. Koch), the ratio between the relative plant (18:1��9) and fungal marker FA (18:2��6,9) was high, whereas this ratio was low in Euzetes globulus (Nicolet; Table?2). Bacterial FAs, including specific bacterial markers and vaccenic type FAs (16:1��7 and 18:1��7), made up 5��3�C10��5% of total FAs in oribatid mites (excluding H.?rufulus; Table?2). The Collembola species Lepidocyrtus lanuginosus (Gmelin) had similar amounts of bacterial FAs as oribatid mites and a similar ratio between the relative plant (18:1��9) and fungal marker FA (18:2��6,9). However, L.