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裸鼹鼠长骨组织形态发生:组织多样性与种内变异

Long bone histomorphogenesis of the naked mole-rat: Histodiversity and intraspecific variation.

作者信息

Montoya-Sanhueza Germán, Bennett Nigel C, Oosthuizen Maria K, Dengler-Crish Christine M, Chinsamy Anusuya

机构信息

Department of Biological Sciences, University of Cape Town, Cape Town, South Africa.

Department of Zoology, Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.

出版信息

J Anat. 2021 Jun;238(6):1259-1283. doi: 10.1111/joa.13381. Epub 2020 Dec 11.

Abstract

Lacking fur, living in eusocial colonies and having the longest lifespan of any rodent, makes naked mole-rats (NMRs) rather peculiar mammals. Although they exhibit a high degree of polymorphism, skeletal plasticity and are considered a novel model to assess the effects of delayed puberty on the skeletal system, scarce information on their morphogenesis exists. Here, we examined a large ontogenetic sample (n = 76) of subordinate individuals to assess the pattern of bone growth and bone microstructure of fore- and hindlimb bones by using histomorphological techniques. Over 290 undecalcified thin cross-sections from the midshaft of the humerus, ulna, femur, and tibia from pups, juveniles and adults were analyzed with polarized light microscopy. Similar to other fossorial mammals, NMRs exhibited a systematic cortical thickening of their long bones, which clearly indicates a conserved functional adaptation to withstand the mechanical strains imposed during digging, regardless of their chisel-tooth predominance. We describe a high histodiversity of bone matrices and the formation of secondary osteons in NMRs. The bones of pups are extremely thin-walled and grow by periosteal bone formation coupled with considerable expansion of the medullary cavity, a process probably tightly regulated and adapted to optimize the amount of minerals destined for skeletal development, to thus allow the female breeder to produce a higher number of pups, as well as several litters. Subsequent cortical thickening in juveniles involves high amounts of endosteal bone apposition, which contrasts with the bone modeling of other mammals where a periosteal predominance exists. Adults have bone matrices predominantly consisting of parallel-fibered bone and lamellar bone, which indicate intermediate to slow rates of osteogenesis, as well as the development of poorly vascularized lamellar-zonal tissues separated by lines of arrested growth (LAGs) and annuli. These features reflect the low metabolism, low body temperature and slow growth rates reported for this species, as well as indicate a cyclical pattern of osteogenesis. The presence of LAGs in captive individuals was striking and indicates that postnatal osteogenesis and its consequent cortical stratification most likely represents a plesiomorphic thermometabolic strategy among endotherms which has been suggested to be regulated by endogenous rhythms. However, the generalized presence of LAGs in this and other subterranean taxa in the wild, as well as recent investigations on variability of environmental conditions in burrow systems, supports the hypothesis that underground environments experience seasonal fluctuations that may influence the postnatal osteogenesis of animals by limiting the extension of burrow systems during the unfavorable dry seasons and therefore the finding of food resources. Additionally, the intraspecific variation found in the formation of bone tissue matrices and vascularization suggested a high degree of developmental plasticity in NMRs, which may help explaining the polymorphism reported for this species. The results obtained here represent a valuable contribution to understanding the relationship of several aspects involved in the morphogenesis of the skeletal system of a mammal with extraordinary adaptations.

摘要

裸鼹鼠没有毛发,生活在群居的社群中,且是所有啮齿动物中寿命最长的,这些特点使它们成为相当独特的哺乳动物。尽管它们表现出高度的多态性、骨骼可塑性,并且被认为是评估青春期延迟对骨骼系统影响的新型模型,但关于它们形态发生的信息却很稀少。在这里,我们检查了大量处于从属地位个体的个体发育样本(n = 76),通过组织形态学技术评估前肢和后肢骨骼的骨生长模式和骨微结构。对来自幼崽、幼年和成年个体的肱骨、尺骨、股骨和胫骨中轴的290多个未脱钙薄切片进行了偏光显微镜分析。与其他穴居哺乳动物类似,裸鼹鼠的长骨表现出系统性的皮质增厚,这清楚地表明了一种保守的功能适应性,以承受挖掘过程中施加的机械应变,无论它们是否以凿齿为主。我们描述了裸鼹鼠骨基质的高度组织多样性以及继发性骨单位的形成。幼崽的骨骼壁极薄,通过骨膜骨形成以及髓腔的显著扩张来生长,这一过程可能受到严格调控并进行了适应性调整,以优化用于骨骼发育的矿物质数量,从而使雌性繁殖个体能够产下更多幼崽以及多窝幼崽。随后幼年个体的皮质增厚涉及大量的骨内膜骨沉积,这与其他以骨膜为主的哺乳动物的骨建模形成对比。成年个体的骨基质主要由平行纤维骨和板层骨组成,这表明成骨速率处于中等至缓慢水平,同时还存在由生长停滞线(LAGs)和年轮分隔的血管化程度较低的板层带组织的发育。这些特征反映了该物种所报道的低代谢、低体温和缓慢生长速率,也表明了成骨的周期性模式。圈养个体中LAGs的存在很显著,这表明出生后的成骨及其随之而来的皮质分层很可能代表了恒温动物中的一种原始热代谢策略,有人认为这是由内源性节律调节的。然而,在野外的这种和其他地下类群中普遍存在LAGs,以及最近对洞穴系统中环境条件变异性的研究,支持了这样一种假设,即地下环境经历季节性波动,这可能通过在不利的旱季限制洞穴系统的扩展以及因此限制食物资源的获取来影响动物的出生后成骨。此外,在骨组织基质形成和血管化方面发现的种内变异表明裸鼹鼠具有高度的发育可塑性,这可能有助于解释该物种所报道的多态性。这里获得的结果对于理解具有非凡适应性的哺乳动物骨骼系统形态发生所涉及的几个方面之间的关系做出了有价值的贡献。

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