Department of Agronomy, Iowa State University, Agronomy Hall, Ames, IA, USA.
BMC Bioinformatics. 2012 Jun 7;13:125. doi: 10.1186/1471-2105-13-125.
Self-incompatibility (SI) is a biological mechanism to avoid inbreeding in allogamous plants. In grasses, this mechanism is controlled by a two-locus system (S-Z). Calculation of male and female gamete frequencies is complex for tetraploid species. We are not aware of any software available for predicting pollen haplotype frequencies and pollen compatibility in tetraploid species.
PollenCALC is a software tool written in C++ programming language that can predict pollen compatibility percentages for polyploid species with a two-locus (S, Z) self-incompatibility system. The program predicts pollen genotypes and frequencies based on defined meiotic parameters for allo- or autotetraploid species with a gametophytic S-Z SI system. These predictions can be used to obtain expected values for for diploid and for (allo- or autotetraploidy SI grasses.
The information provided by this calculator can be used to predict compatibility of pair-crosses in plant breeding applications, to analyze segregation distortion for S and Z genes, as well as linked markers in mapping populations, hypothesis testing of the number of S and Z alleles in a pair cross, and the underlying genetic model.
自交不亲和性(SI)是一种避免异花授粉植物自交的生物学机制。在禾本科植物中,这种机制由两个基因座(S-Z)控制。对于四倍体物种,计算雌雄配子频率非常复杂。我们不知道有任何软件可用于预测四倍体物种的花粉单倍型频率和花粉可育性。
PollenCALC 是一个用 C++编程语言编写的软件工具,可用于预测具有双基因座(S、Z)自交不亲和系统的多倍体物种的花粉可育性百分比。该程序基于定义的减数分裂参数,预测具有配子体型 S-Z SI 系统的异源或同源四倍体物种的花粉基因型和频率。这些预测可用于获得二倍体和(异源或同源四倍体 SI 禾本科植物的预期值。
该计算器提供的信息可用于预测植物育种应用中的杂交组合的可育性,分析 S 和 Z 基因以及连锁标记在作图群体中的分离失真,对一对杂交中 S 和 Z 等位基因的数量进行假设检验,以及潜在的遗传模型。