Literature DB >> 31848832

Histomorphometric changes of the fore-stomach of lambs fed with diets containing spineless cactus genotypes resistant to Dactylopius sp.

Tomás Guilherme Pereira da Silva1, Ângela Maria Vieira Batista2, Adriana Guim2, Valdemiro Amaro da Silva3, Francisco Fernando Ramos de Carvalho2, Maria Edna Gomes de Barros4, Daurivane Rodrigues de Sousa2, Suellen Maria Costa da Silva2.   

Abstract

The histomorphometric parameters of the fore-stomach epithelium of lambs fed with spineless cactus genotypes resistant to Dactylopius sp. were evaluated. Thirty-two lambs (23.0 ± 2.06 kg body weight) were distributed in a completely randomized design with four treatments and eight replications. The treatments consisted of the base diet and diets in which part of the elephant grass hay and all ground corn was replaced by the Miúda, IPA-Sertânia, or Orelha de Elefante Mexicana (OEM) spineless cacti. The keratin layers of the ruminal epithelium of the animals consuming the spineless cacti Miúda and OEM presented greater thickening relative to the control diet: 47.31, 41.30, and 25.81 μm, respectively. The heights of the ruminal papillae were higher in the animals that were fed with the OEM spineless cactus. The Miúda spineless cactus caused an enlargement in the keratinized layer of the reticulum epithelium, as well as a decrease in the thickness of the non-keratinized layers. The diet containing OEM spineless cactus resulted in greater thickening of the keratin layer of the omasal epithelium and decreased thickness of the non-keratinized layers. The spineless cacti Miúda and OEM changed the morphology of the fore-stomach epithelium and increased the dry matter intake and weight gain of lambs.

Entities:  

Keywords:  Cactaceae; Digestive system; Keratin; Oxalates; Rumen papillae; Small ruminants

Mesh:

Year:  2019        PMID: 31848832     DOI: 10.1007/s11250-019-02129-0

Source DB:  PubMed          Journal:  Trop Anim Health Prod        ISSN: 0049-4747            Impact factor:   1.559


  1 in total

1.  Multi-Omics Reveals That the Rumen Transcriptome, Microbiome, and Its Metabolome Co-regulate Cold Season Adaptability of Tibetan Sheep.

Authors:  Xiu Liu; Yuzhu Sha; Weibing Lv; Guizhong Cao; Xinyu Guo; Xiaoning Pu; Jiqing Wang; Shaobin Li; Jiang Hu; Yuzhu Luo
Journal:  Front Microbiol       Date:  2022-04-13       Impact factor: 5.640

  1 in total

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