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茄科植物联会复合体的二维展开图。VI. 番茄(番茄)的高分辨率重组节图谱。

Two-dimensional spreads of synaptonemal complexes from solanaceous plants. VI. High-resolution recombination nodule map for tomato (Lycopersicon esculentum).

作者信息

Sherman J D, Stack S M

机构信息

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

出版信息

Genetics. 1995 Oct;141(2):683-708. doi: 10.1093/genetics/141.2.683.

Abstract

We have produced a high-resolution physical recombination map for tomato chromosomes by determining the frequency and distribution of recombination nodules (RNs) on tomato synaptonemal complexes (SCs). We present evidence that there is a 1:1 relationship between RNs and chiasmata. Every SC has at least one RN. There are no RNs at the ends of SCs, in kinetochores, or in the heterochromatic short arm of SC 2 that carries the nucleolus organizer. RNs are more common per unit length of SC in euchromatin compared with SC in heterochromatin . The average number of RNs per SC and the average number of RNs per SC arm are directly correlated with the length of SC in euchromatin. When SCs have only one RN, that RN occurs on the long arm more frequently than predicted based on SC arm length. Patterns of multiple Rns on SCs indicate RN (crossover) interference. Rns probably can occur anywhere on SCs in euchromatin, but RNs are not distributed randomly along SCs in euchromatin or in heterochromatin. The lengths of tomato's physical recombination (RN) map, classical genetic linkage map, and molecular linkage map all differ from each other for a variety of reasons.

摘要

我们通过确定番茄联会复合体(SCs)上重组结节(RNs)的频率和分布,构建了番茄染色体的高分辨率物理重组图谱。我们提供的证据表明,RNs与交叉点之间存在1:1的关系。每个SCs至少有一个RNs。在SCs的末端、着丝粒或携带核仁组织区的SCs 2的异染色质短臂中没有RNs。与异染色质中的SCs相比,常染色质中SCs每单位长度的RNs更为常见。每个SCs的RNs平均数和每个SCs臂的RNs平均数与常染色质中SCs的长度直接相关。当SCs只有一个RN时,该RN出现在长臂上的频率高于基于SCs臂长度的预测。SCs上多个Rns的模式表明存在RN(交叉)干扰。Rns可能出现在常染色质中SCs的任何位置,但在常染色质或异染色质中,RNs并非随机分布在SCs上。由于多种原因,番茄的物理重组(RN)图谱、经典遗传连锁图谱和分子连锁图谱的长度各不相同。

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