Data from: Experimental demonstration of the benefits of somatic fusion and the consequences for allorecognition
收藏资源简介:
Allorecognition, the ability to distinguish ‘self’ from ‘non-self’ based on allelic differences at allorecognition loci, is common in all domains of life. Allorecognition restricts the opportunities for social parasitism, and is therefore crucial for the evolution of cooperation. However, the maintenance of allorecognition diversity provides a paradox. If allorecognition is costly relative to cooperation, common alleles will be favored. Thus, the cost of allorecognition may reduce the genetic variation upon which allorecognition crucially relies, a prediction now known as ‘Crozier's paradox’. We establish the relative costs of allorecognition, and their consequences for the short-term evolution of recognition labels theoretically predicted by Crozier. We use fusion among colonies of the fungus Neurospora crassa, regulated by highly variable allorecognition genes, as an experimental model system. We demonstrate that fusion among colonies is mutually beneficial, relative to absence of fusion upon allorecognition. This benefit is due not only to absence of mutual antagonism, which occurs upon allorecognition, but also to an increase in colony size per se. We then experimentally demonstrate that the benefit of fusion selects against allorecognition diversity, as predicted by Crozier. We discuss what maintains allorecognition diversity.
同种异体识别(allorecognition)指基于同种异体识别基因座的等位基因差异区分“自身”与“非自身”的能力,广泛分布于所有生命域中。同种异体识别可抑制社会寄生现象的发生,因此对合作演化至关重要。然而,同种异体识别多样性的维持却存在一个悖论:若同种异体识别相较于合作行为存在适应性代价,常见等位基因将受到选择青睐。由此,同种异体识别的代价可能会削弱其赖以存在的核心遗传变异——这一理论预测即被称为“克罗泽悖论(Crozier's paradox)”。本研究明确了同种异体识别的相对代价,以及其对克罗泽理论所预测的识别标签短期演化的影响。我们以受高度可变的同种异体识别基因调控的粗糙脉孢菌(Neurospora crassa)菌落融合为实验模型系统。研究表明,相较于同种异体识别引发的融合受阻状态,菌落间的融合行为对双方均为互利。该互利效应不仅源于同种异体识别不会引发相互拮抗,还源自菌落自身尺寸的增大。随后我们通过实验证实,融合带来的益处会对同种异体识别多样性产生负选择压力,正如克罗泽悖论所预测的那样。最后我们探讨了维持同种异体识别多样性的潜在机制。



