New reports on the association between eggs and sclerotium-forming fungi in Neotropical termites with insights into this mutualistic interaction

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-02-21 DOI:10.1093/biolinnean/blae010
Ana Maria Costa-Leonardo, Vanelize Janei, Iago Bueno da Silva
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Abstract

Over many years of co-evolution, termites and fungi have developed varied interactions. Sclerotia, termed termite balls, are fungal resting structures often mixed with termite eggs, with many reports in temperate areas. Here, we show that this interaction is more widespread than suggested, by reporting the occurrence of fungal sclerotia harboured in the nests of four Neotropical termitids: Cornitermes cumulans, Silvestritermes euamignathus (Syntermitinae), Velocitermes heteropterus, and Nasutitermes corniger (Nasutitermitinae). We performed termite–fungus recognition bioassays and carried out morphometrical, histological, and histochemical analyses on the sclerotia, assuming that they vary in their stored materials according to the maturation stage. Morphometrical and morphological features varied among the sclerotia associated with the different termite species. Moreover, workers preferentially carried related sclerotia, suggesting a species-specific interaction, and did not mistake them for eggs. Immature and mature sclerotia varied in the concentration of stored proteins, polysaccharides, and melanin. This facultative mutualism is advantageous for the sclerotia because they are kept in a competitor-free environment and, in turn, are likely to serve as an additional source of termite digestive enzymes. We provide new findings concerning the geographical distribution, termite species, and nesting habits related to this termite–fungus association, reinforcing its parallel evolution.
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关于新热带白蚁卵与硬壳菌形成真菌之间关系的新报告,以及对这种互利互动关系的见解
经过多年的共同进化,白蚁和真菌之间形成了多种多样的相互作用。被称为 "白蚁球 "的硬菌是一种经常与白蚁卵混合在一起的真菌休息结构,在温带地区有很多报道。在这里,我们通过报告四种新热带白蚁的巢中藏有真菌硬菌的情况,证明这种相互作用比想象的更为普遍:它们是:Cornitermes cumulans、Silvestritermes euamignathus(Syntermitinae)、Velocitermes heteropterus 和 Nasutitermes corniger(Nasutitermitinae)。我们进行了白蚁-真菌识别生物测定,并对硬菌进行了形态学、组织学和组织化学分析,假定它们根据成熟阶段的不同而在储存材料上有所不同。不同种类白蚁的硬菌在形态计量和形态特征上各不相同。此外,白蚁工蚁会优先携带相关的硬壳虫,这表明白蚁工蚁之间存在着物种特异性相互作用,它们不会将硬壳虫误认为是虫卵。未成熟和成熟的硬菌在储存的蛋白质、多糖和黑色素的浓度上存在差异。这种兼性互利关系对硬核菌是有利的,因为硬核菌被保存在一个没有竞争者的环境中,反过来又可能成为白蚁消化酶的额外来源。我们提供了有关这种白蚁-真菌关联的地理分布、白蚁种类和筑巢习性的新发现,加强了这种关联的平行进化。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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