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Genetics, Vol. 159, 1259-1269, November 2001, Copyright © 2001

The Distribution of Early Recombination Nodules on Zygotene Bivalents From Plants

Lorinda K. Andersona, Kristina D. Hookera, and Stephen M. Stacka,b
a Department of Biology, Colorado State University, Fort Collins, Colorado 80523
b Cell and Molecular Biology Program, Colorado State University, Fort Collins, Colorado 80523

Corresponding author: Lorinda K. Anderson, Department of Biology, Colorado State University, Fort Collins, CO 80523., lorrie{at}lamar.colostate.edu (E-mail)

Communicating editor: R. S. HAWLEY

Early recombination nodules (ENs) are protein complexes ~100 nm in diameter that are associated with forming synaptonemal complexes (SCs) during leptotene and zygotene of meiosis. Although their functions are not yet clear, ENs may have roles in synapsis and recombination. Here we report on the frequency and distribution of ENs in zygotene SC spreads from six plant species that include one lower vascular plant, two dicots, and three monocots. For each species, the number of ENs per unit length is higher for SC segments than for (asynapsed) axial elements (AEs). In addition, EN number is strongly correlated with SC segment length. There are statistically significant differences in EN frequencies on SCs between species, but these differences are not related to genome size, number of chromosomes, or phylogenetic class. There is no difference in the frequency of ENs per unit length of SC from early to late zygotene. The distribution of distances between adjacent ENs on SC segments is random for all six species, but ENs are found at synaptic forks more often than expected for a random distribution of ENs on SCs. From these observations, we conclude that in plants: (1) some ENs bind to AEs prior to synapsis, (2) most ENs bind to forming SCs at synaptic forks, and (3) ENs do not bind to already formed SCs.





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