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Biology subjects

Zakharko, T.

Publications and source records attributed to Zakharko, T..

3 recordsLinked to original sources

Linguistic evolution minimizes the amount of syntactic hierarchy in grammar

A core characteristic of language is the capacity for hierarchical syntax, but it remains debated to what extent languages favor hierarchical structure in their grammars, that is, the extent to which they favor hierarchical structures like "When driving, look ahead!" over concatenations like "You drive, you look ahead!". Through phylogenetic modeling of the grammars of clause combining in three extensive language families (Tupi-Guarani, Sino-Tibetan, and Indo-European), we find an overall bias towards minimizing hierarchy, with significant cultural variation. Our findings suggest that the computational and representational benefits of hierarchical structure tend not to be universally exploited in clause combinations, likely because they come with additional costs for learning. In consequence, the amount of hierarchy in language might differ from what is found in animal communication in a more graded way than commonly assumed.

evolutionary biology↗

Writing does not Impact the Evolution of Syntax

The acquisition of writing has a lasting effect on how languages are processed in the brain, raising the possibility that it also affects how they are used and evolve over time. A popular hypothesis is that writing specifically leads to increased use and evolution of complex hierarchical structures in language. While most case studies on individual languages have supported this, it remains unclear whether results scale to larger and more diverse sets of languages. Here we test the prediction for language use by modeling hierarchy depth and sentence length in Universal Dependencies corpora from 30 languages, and the prediction for language evolution by modeling the phylogenetic dynamics of structural asymmetry in clause combinations of 59 languages from three families. We found no effect of writing in either analysis. Hierarchy depth and sentence length do not demonstrably differ between spoken and written use of language, and the introduction of writing had no discernible effect on the evolution of clause combining in grammar. There is weak evidence for a decrease in variance after the introduction of writing in one family, possibly reflecting the impact of increased normativity. In conclusion, our findings challenge popular beliefs about hierarchy and suggest that the evolution of syntax is more driven by culturally variable ideas about style in linguistic expression than by the evolution of writing.

evolutionary biology↗

An inverse correlation between linguistic and genetic diversity

Human population history, as traced by our genome, has shaped the distribution of languages around the world. While case studies suggest that population history can also affect specific structures of languages, such as patterns in their sound systems and grammars, results are conflicting, and it remains unknown whether such effects hold globally. Here we show that, adjusting for geography, phylogeny, and environment, genetic diversity is inversely correlated with diversity in linguistic structures. Low genetic diversity (i.e. excess homozygosity) results from relative isolation, and this promotes diversification in language. High genetic diversity results from contact and migration, and this promotes homogenization in language. These effects are particularly pronounced in Asia and, under some conditions, also in a few other areas, suggesting sociocultural factors contributing to differences in how strongly isolation favors linguistic diversity and how strongly contact promotes linguistic homogenization. Our results suggest that present-day hotspots of linguistic diversity, which are characterized by relative isolation, may provide a privileged window on the dynamics of linguistic evolution as they are less affected by the vast demographic expansions, migrations, and extinctions that characterize the Neolithic age.

evolutionary biology↗