Genomic and Morphological Insights Into the Adaptive Evolution of Honeybees in Rocky Desertification Habitats
Yinglong Yu, Xiangyou Tang, Daoyin Chen, Ying Li, Dan Yao, Man Liu, Jinshan Xu, Xiaoping WeiABSTRACT
Unlike traditional desertification, rocky desertification is a distinct form of land degradation characterized by low vegetation coverage and a high proportion of rock exposure. Honeybees are crucial pollinators and ecological restorers and have coevolved closely with plants as their primary habitat and food resource to naturally inhabit rocky desertification habitats. In this study, classical morphological analyses showed that under mild desertification conditions, honeybee body size increases, while in severely degraded habitats, their morphology resembles that of normal individuals. Whole‐genome resequencing revealed clear selection effects on 19 genes, including
GBE
,
CerS, Schlank
,
ADO
,
Bicaudal,
and
Tim29
, which are potentially associated with glycogen and fatty acid metabolism for starvation resistance, substance transportation, and resistance. In addition, a genome‐wide association study (GWAS) identified 421 single nucleotide polymorphisms (SNPs) associated with 30 morphological traits in