Whole genome sequencing of 358 brown planthoppers uncovers the landscape of their migration and dispersal worldwide
Hu, Q.-L.; Zhuo, J.-C.; Ye, Y.-X.; Li, D.-T.; Lou, Y.-H.; Zhang, X.-Y.; Chen, X.; Wang, S.-L.; Wang, Z.-C.; Lu, J.-B.; Mizlan, N.; Nguyen, H. C.; Oo, S. S.; Thet, T.; Sharma, P. N.; Jauharlina, J.; Rahman, S. M. M.; Ansari, N. A.; Chen, A.-D.; Zhu, Z.-R.; Heong, K. L.; Cheng, J.-A.; Zhan, S.; Zhang, C.-X.
Show abstract
The brown planthopper (BPH), Nilaparvata lugens, is a serious migratory rice pest, which is distributed in the broad area of the tropical and temperate Asian-Pacific region. However, we know little about key aspects regarding its evolution such as how they diverged and dispersed worldwide. By resequencing and analyzing 358 BPH genomes from 92 populations across the world, we uncover the genetic relationships among their worldwide populations and the history of their global dispersal. We recovered five genetic groups representing the major population structures. Of these, Australian BPHs were shown large genetic divergence with Asian BPHs; two distinct groups have formed in South and Southeast/East Asia that show strong genetic admixture in the southwest border regions of China and west Thailand with Myanmar; two local populations in Bangladesh and Fujian province of China, respectively, unexpectedly separated with surrounding populations. We also find the genetic similarity and closely phylogenetic relationships between majority of East Asian BPHs and Indo-china peninsula BPHs, indicating that Southeast Asia mainland is the major insect sources and overwintering sites for East Asia. Our study provides important molecular evidence to address BPH evolution and other key aspects of its biology such as insecticides resistance and rice varieties virulence.
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