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The aim of the study was to compare different parts (leaves, fruits, seeds) of three Rosaceae species (Rosa canina, Crataegus orientalis and Crataegus monogyna) in terms of nutrient composition and in vitro ruminal fermentation parameters. The in vitro total gas production levels of the leaves of all Rosaceae species were similar (P > 0.05). The in vitro total gas production of R. canina fruits and seeds was lower compared with those of C. orientalis and C. monogyna fruits (P = 0.001) and seeds (P = 0.008). The in vitro methane production of R. canina seeds was lower (13.66%) than that of the Crataegus seeds (16.50%–16.80%; P < 0.01). The methane production of the leaves and fruits of all three Rosaceae species was similar (P > 0.05). There were no differences among the in vitro short-chain fatty acid (SCFA), organic matter digestibility (OMD), metabolizable energy (ME) and net energy lactation (NEL) levels of leaves of the three Rosaceae species. The ME, NEL, SCFA and OMD levels of Rosaceae fruits and seeds differed significantly (P < 0.01). The Rosaceae fruits and seeds could be ordered as C. orientalis > C. monogyna > R. canina in terms of ME, NEL, SCFA and OMD. The leaves of the Crataegus species, when compared in terms of roughage source for grazing animals in scrublands, contain a moderate level of crude protein and fibre, but the crude protein level in the leaves of R. canina was rather low. The leaves and fruits of all tested Rosaceae species and the seeds of R. canina can be used as rumen modulators with an anti-methanogenic effect. These results suggest that Crataegus leaves have the advantage of maintaining their nutritive value for ruminants throughout the dry season (especially in late summer) when grasses dry up
The aim of this study was to investigate the effect of dietary supplementation of Thymbra spicata L. var. spicata (TS) essential oil (10 or 15 µl · kg−1 live weight (LW)) on growth performance (LW, LW gain, feed intake) and rumen parameters (volatile fatty acids (VFA)) and ammonia levels, and pH) in lambs. The experiment lasted 56 days, including 14 days of adaptation and 42 of experimental period. The TS essential oil was extracted from the leaves harvested at the beginning of plant flowering and contained: 66.86% carvacrol, 12.18% p-cymene, 10.73% γ-terpinene and 2.77% thymol. The addition of TS essential oil to concentrate feed did not affect final LW, LW gain, feed intake or feed conversion ratio (P > 0.05). Molar concentrations (mmol · l−1) of total VFA and acetic (A), butyric (B) and propionic (P) acids, and levels of pH and ammonia-nitrogen (NH3 -N) in rumen fluid were also not affected by TS essential oil inclusion (P > 0.05). However, the proportion of A and (A+B):P ratio in rumen fluid VFA increased linearly (P < 0.01) with increasing TS essential oil doses, whereas the P proportion decreased linearly (P = 0.008). So, it could be suggested that TS essential oil enhanced the concentration of selected VFA in rumen fluid through a positive effect on feed digestion in the rumen. In particular, the linear increase in A and (A+B):P ratio could have enhanced fibrolytic effect in the rumen ecosystem. It was concluded that different doses and longer terms of use of TS essential oil should be further investigated in in vivo studies.
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