Accès ouvert
2026
article
OpenAlex
Chengrui Zhang, Xin Du, Dingkun Fan, J Zhang et autres
Additional file 1: Table S1. Ingredients and nutritional level of diets (dry matter basis, %). Table S2. Electronic nose aroma characteristics of Arbas cashmere goat meat under different feeding patterns. Table S3. Qualitative and quantitative results of volatile compounds in Arbas cashmere …
cn
(code pays fourni par la source)
Accès ouvert
2026
article
OpenAlex
Chengrui Zhang, Xin Du, Dingkun Fan, J Zhang et autres
Additional file 1: Table S1. Ingredients and nutritional level of diets (dry matter basis, %). Table S2. Electronic nose aroma characteristics of Arbas cashmere goat meat under different feeding patterns. Table S3. Qualitative and quantitative results of volatile compounds in Arbas cashmere …
cn
(code pays fourni par la source)
Accès ouvert
2026
other
OpenAlex
Chengrui Zhang, Xin Du, Dingkun Fan, J Zhang et autres
Abstract Background Feeding patterns significantly influence goat meat aroma profiles, which are closely related to muscle lipid composition. This relationship is especially significant for indigenous breeds like the Arbas cashmere goat, whose distinctive meat aroma has been traditionally recognized. Despite the known …
cn
(code pays fourni par la source)
Accès ouvert
2026
other
OpenAlex
Chengrui Zhang, Xin Du, Dingkun Fan, J Zhang et autres
Abstract Background Feeding patterns significantly influence goat meat aroma profiles, which are closely related to muscle lipid composition. This relationship is especially significant for indigenous breeds like the Arbas cashmere goat, whose distinctive meat aroma has been traditionally recognized. Despite the known …
cn
(code pays fourni par la source)
Accès ouvert
2026
dataset
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 1: Table S1. Rumen microbial taxa identified in the metagenomes. Table S2. Enzymes involved in the methane metabolism pathway in cows. Table S3. Genes involved in the methane metabolism pathway in cows. Table S4. The alpha-diversity of rumen microbial community. …
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 4: Fig. S3. Co‑occurrence of rumen bacteria in cows with low and high methane production.
Accès ouvert
2026
dataset
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 1: Table S1. Rumen microbial taxa identified in the metagenomes. Table S2. Enzymes involved in the methane metabolism pathway in cows. Table S3. Genes involved in the methane metabolism pathway in cows. Table S4. The alpha-diversity of rumen microbial community. …
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 3: Fig. S2. Differential CAZyme functions between cows with low and high methane production.
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 2: Fig. S1. Comparison of microbial domains between cows with low and high methane production.
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 4: Fig. S3. Co‑occurrence of rumen bacteria in cows with low and high methane production.
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Abstract Background Methane (CH4) is a metabolic by-product of rumen microbial fermentation, contributing significantly to global warming and dietary energy loss. Elucidating the mechanisms underlying natural variation in rumen methanogenesis is essential for the development of effective CH4 mitigation strategies. Here, we …
Accès ouvert
2026
other
OpenAlex
Peng Jia, Lifeng Dong, Tao Ma, Yanliang Bi et autres
Additional file 5: Fig. S4. Relative abundances of bacterial and archaeal communities involved in methane metabolism at the genus level.