Author:
Ishii Takayoshi,Juranić Martina,Maheshwari Shamoni,de Oliveira Bustamante Fernanda,Vogt Maximilian Moritz,Salinas-Gamboa Rigel,Dreissig Steven,Gursanscky Nial,How Tracy,Fuchs Joerg,Schubert Veit,Spriggs Andrew,Vielle-Calzada Jean-Philippe,Comai Luca,Koltunow Anna M. G.,Houben Andreas
Abstract
AbstractThe legume cowpea (Vigna unguiculata, 2n=2x=22) has significant tolerance to drought and heat stress. Here we analysed and manipulated cowpea centromere-specific histone H3 (CENH3) genes, aiming to establish a centromere-based doubled-haploid method for use in genetic improvement of this dryland crop in future. Cowpea encodes two functional CENH3 variants (CENH3.1 and CENH3.2) and two CENH3 pseudogenes. Phylogenetic analysis suggests that gene duplication of CENH3 occurred independently during the speciation ofV. unguiculataand the relatedV. mungowithout a genome duplication event. Both functional cowpeaCENH3variants are transcribed, and the corresponding proteins are intermingled in subdomains of different types of centromere sequences in a tissue-specific manner together with the outer kinetochore protein CENPC. CENH3.2 is removed from the generative cell of mature pollen, while CENH3.1 persists. Differences between both CENH3 paralogs are restricted to the N-terminus. The complete CRISPR/Cas9-based inactivation ofCENH3.1resulted in delayed vegetative growth and sterility, indicating that this variant is needed for plant development and reproduction. By contrast,CENH3.2knockout individuals did not show obvious defects during vegetative and reproductive development, suggesting that the gene is an early stage of subfunctionalization or pseudogenization.One-sentence summaryThe two paralogous centromeric histones (CENH3) of cowpea contribute unequal to the function of the centromere.
Publisher
Cold Spring Harbor Laboratory
Cited by
4 articles.
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