论文标题

堆肥作为鱼类,鸡肉,猪和牛的普遍保护替代品的新型可持续作用,并通过结构方程建模进行估算

A novel sustainable role of compost as a universal protective substitute for fish, chicken, pig, and cattle, and its estimation by structural equation modeling

论文作者

Miyamoto, Hirokuni, Suda, Wataru, Kodama, Hiroaki, Takahashi, Hideyuki, Nakanishi, Yumiko, Moriya, Shigeharu, Adachi, Kana, Kiriyama, Nao, Wada, Masaya, Sudo, Daisuke, Ito, Shunsuke, Ito, Shunsuke, Shibata, Minami, Wada, Shinji, Murano, Takako, Taguchi, Hitoshi, Shindo, Chie, Tsuboi, Arisa, Tsuji, Naoko, Matsuura, Makiko, Ishii, Chitose, Nakaguma, Teruno, Ito, Toshiyuki, Okada, Toru, Matsushita, Teruo, Satoh, Takashi, Kato, Tamotsu, Kurotani, Atsushi, Shima, Hideaki, Inabu, Yudai, Tashiro, Yukihiro, Sakai, Kenji, Mori, Kenichi, Satoh, Takashi, Suzuki, Kenta, Miura, Takeshi, Morita, Hidetoshi, Fukuda, Shinji, Kikuchi, Jun, Miyamoto, Hisashi, Hattori, Masahira, Yamamoto, Naoki, Ohno, Hiroshi

论文摘要

有机物的自然分解在食品系统中至关重要,堆肥被用作有机发酵肥料。但是,作为生态系统的特征,其对动物的影响知之甚少。在这里,我们表明,口服堆肥和/或其衍生的嗜热芽孢杆菌,即Caldibacillus Hisashii和Weizmannia coagulans,可以调节各种工业动物的预防性活性。调节过程中的粪便法分析表明,趋势取决于动物物种,环境条件和给药。但是,结构方程模型(SEM)估计细菌和代谢物的分组候选物是动物物种以外的标准关键成分。特别是,SEM模型意味着部分消化的粪便氨基酸之间存在牢固的关系,增加了乳乳杆菌作为居民有益细菌和参与盐丁酰生物的2-氨基异丁酸的关系。这些结果突出了堆肥在农业,渔业和牲畜行业中堆肥在可持续保护性控制中的潜在作用。

Natural decomposition of organic matter is essential in food systems, and compost is used worldwide as an organic fermented fertilizer. However, as a feature of the ecosystem, its effects on the animals are poorly understood. Here we show that oral administration of compost and/or its derived thermophilic Bacillaceae, i.e., Caldibacillus hisashii and Weizmannia coagulans, can modulate the prophylactic activities of various industrial animals. The fecal omics analyses in the modulatory process showed an improving trend dependent upon animal species, environmental conditions, and administration. However, structural equation modeling (SEM) estimated the grouping candidates of bacteria and metabolites as standard key components beyond the animal species. In particular, the SEM model implied a strong relationship among partly digesting fecal amino acids, increasing genus Lactobacillus as inhabitant beneficial bacteria and 2-aminoisobutyric acid involved in lantibiotics. These results highlight the potential role of compost for sustainable protective control in agriculture, fishery, and livestock industries.

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