首页> 外文期刊>Scientific reports. >The relationship between oxidant levels and gut physiology in a litter-feeding termite
【24h】

The relationship between oxidant levels and gut physiology in a litter-feeding termite

机译:饲喂白蚁的氧化剂水平与肠道生理之间的关系

获取原文
           

摘要

The termite gut is an efficient decomposer of polyphenol-rich diets, such as lignocellulosic biomasses, and it has been proposed that non-enzymatic oxidative mechanisms could be involved with the digestive process in these animals. However, oxidant levels are completely unknown in termites, as well as protective mechanisms against oxidative damage to the termite gut and its microbiota. As the first step in investigating the role oxidants plays in termite gut physiology, this work presents oxidant levels, antioxidant enzymatic defenses, cell renewal and microbiota abundance along the litter-feeding termite Cornitermes cumulans gut compartments (foregut, midgut, mixed segment and hindgut p1, p3, p4, and p5 segments) and salivary glands. The results show variable levels of oxidants along the C. cumulans gut, the production of antioxidant enzymes, gut cell renewal as potential defenses against oxidative injuries and the profile of microbiota distribution (being predominantly inverse to oxidant levels). In this fashion, the oxidative challenges imposed by polyphenol-rich diet seem to be circumvented by the C. cumulans gut, ensuring efficiency of the digestive process together with preservation of tissue homoeostasis and microbiota growth. These results present new insights into the physicochemical properties of the gut in a litter-feeding termite, expanding our view in relation to termites' digestive physiology.
机译:白蚁肠是富含多酚的食物(例如木质纤维素生物质)的有效分解剂,并且有人提出,这些动物的消化过程可能涉及非酶氧化机制。但是,白蚁中的氧化剂水平以及针对白蚁肠及其微生物群的氧化损伤的保护机制是完全未知的。作为研究氧化剂在白蚁肠道生理中的作用的第一步,这项工作介绍了沿垫料喂养的白蚁Cornitermes cumulans肠道隔室(前肠,中肠,混合段和后肠p1)的氧化剂水平,抗氧化剂酶防御,细胞更新和微生物群丰度。 ,p3,p4和p5段)和唾液腺。结果显示,沿丘陵肠线虫的氧化剂水平变化,抗氧化酶的产生,肠细胞更新(作为抵抗氧化损伤的潜在防御力)和微生物群分布的特征(主要与氧化剂含量成反比)。以这种方式,富含多酚的饮食所施加的氧化挑战似乎已被C. cumulans肠道所规避,从而确保了消化过程的效率以及组织同质性和微生物群的生长。这些结果提供了对饲喂白蚁的肠道的理化性质的新见解,扩大了我们对白蚁消化生理学的看法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号