High-Resolution Crossover Maps for Each Bivalent of Zea mays Using Recombination Nodules

Author:

Anderson Lorinda K1,Doyle Gregory G2,Brigham Brian1,Carter Jenna1,Hooker Kristina D1,Lai Ann1,Rice Mindy1,Stack Stephen M1

Affiliation:

1. Department of Biology, Colorado State University, Fort Collins, Colorado 80523

2. Department of Agronomy, University of Missouri, Columbia, Missouri 65211

Abstract

Abstract Recombination nodules (RNs) are closely correlated with crossing over, and, because they are observed by electron microscopy of synaptonemal complexes (SCs) in extended pachytene chromosomes, RNs provide the highest-resolution cytological marker currently available for defining the frequency and distribution of crossovers along the length of chromosomes. Using the maize inbred line KYS, we prepared an SC karyotype in which each SC was identified by relative length and arm ratio and related to the proper linkage group using inversion heterozygotes. We mapped 4267 RNs on 2080 identified SCs to produce high-resolution maps of RN frequency and distribution on each bivalent. RN frequencies are closely correlated with both chiasma frequencies and SC length. The total length of the RN recombination map is about twofold shorter than that of most maize linkage maps, but there is good correspondence between the relative lengths of the different maps when individual bivalents are considered. Each bivalent has a unique distribution of crossing over, but all bivalents share a high frequency of distal RNs and a severe reduction of RNs at and near kinetochores. The frequency of RNs at knobs is either similar to or higher than the average frequency of RNs along the SCs. These RN maps represent an independent measure of crossing over along maize bivalents.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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