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Mosaicism may explain the evolution of social characters in haplodiploid Hymenoptera with female workers

机译:马赛克可能解释了女工单倍体膜翅目中社会性格的演变

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The role of haplodiploidy in the evolution of eusocial insects and why in Hymenoptera males do not perform any work is presently unknown. We show here that within-colony conflict caused by the coexistence of individuals of the same caste expressing the same character in different ways can be fundamental in the evolution of social characters in species that have already reached the eusocial condition. Mosaic colonies, composed by individuals expressing either the wild-type or a mutant phenotype, inevitably occurs during the evolution of advantageous social traits in insects. We simulated the evolution of an advantageous social trait increasing colony fitness in haplodiploid and diplodiploid species considering all possible conditions, i.e. dominance/recessivity of the allele determining the new social character, sex of the castes, and influence of mosaicism on the colony fitness. When mosaicism lowered colony fitness below that of the colony homogeneous for the wild type allele, the fixation of an advantageous social character was possible only in haplodiploids with female castes. When mosaicism caused smaller reductions in colony fitness, reaching frequencies of 90% was much faster in haplodiploids with female castes and dominant mutations. Our results suggest that the evolution of social characters is easier in haplodiploid than in diplodiploid species, provided that workers are females.
机译:单倍体在真社会昆虫进化中的作用以及为什么在膜翅目昆虫中雄性不起作用的原因目前未知。我们在这里表明,由同一种姓以不同方式表达同一性格的个体共存所引起的殖民地内部冲突,对于已经达到共社会状态的物种的社会性格演变可能是根本的。由表达野生型或突变表型的个体组成的镶嵌菌落不可避免地发生在昆虫有利的社会性状演变过程中。我们考虑了所有可能的条件(即等位基因的优势/隐性决定了新的社会特征,种姓的性别以及镶嵌对殖民地适应性的影响),模拟了有利于增加单倍体和双倍体物种菌落适应性的社会性状的进化。当镶嵌降低集落适应度低于野生型等位基因的同质集落适应力时,只有在具有雌性种姓的单倍体中才能固定有利的社会特性。当镶嵌现象导致菌落适应性降低程度较小时,具有雌性种姓和显性突变的单倍体达到90%的频率要快得多。我们的研究结果表明,如果工人是女性,则单倍体的社会性状进化要比双倍体的物种容易。

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