表型可塑性对玉米杂交性能影响的建模。

IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ran Fu, Xiangfeng Wang
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引用次数: 0

摘要

表型可塑性,即个体根据环境变化改变其表型的能力,已被提出作为培育具有高环境适应性的作物品种的目标。本研究利用来自玉米(Zea mays L.)多个群体的表型和基因型数据,建立了自交系和杂交系对环境响应的表型可塑性(PPRE)数学模型。PPRE可以简单地用一个线性模型来描述,其中两个主要参数,截距a和斜率b,反映了协调植物发育的两类基因对内源(a类)和外源(b类)信号的响应。A类和B类基因共同促成了个体对环境的表型可塑性。我们还利用同一母系与30个不同玉米杂种群体的父系杂交产生的30个F1杂交群体,研究了表型可塑性与杂交性能或产量一般配合力(GCA)之间的关系。结果表明,两个亲本的参数a和b必须一致,才能达到F1产量的理想GCA。我们假设F1杂交基因组中两类基因的协调调节是高GCA的基础。在此基础上,建立了不同杂种优势群体亲本间GCA的预测模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Modeling the influence of phenotypic plasticity on maize hybrid performance.

Modeling the influence of phenotypic plasticity on maize hybrid performance.

Modeling the influence of phenotypic plasticity on maize hybrid performance.

Modeling the influence of phenotypic plasticity on maize hybrid performance.

Phenotypic plasticity, the ability of an individual to alter its phenotype in response to changes in the environment, has been proposed as a target for breeding crop varieties with high environmental fitness. Here, we used phenotypic and genotypic data from multiple maize (Zea mays L.) populations to mathematically model phenotypic plasticity in response to the environment (PPRE) in inbred and hybrid lines. PPRE can be simply described by a linear model in which the two main parameters, intercept a and slope b, reflect two classes of genes responsive to endogenous (class A) and exogenous (class B) signals that coordinate plant development. Together, class A and class B genes contribute to the phenotypic plasticity of an individual in response to the environment. We also made connections between phenotypic plasticity and hybrid performance or general combining ability (GCA) of yield using 30 F1 hybrid populations generated by crossing the same maternal line with 30 paternal lines from different maize heterotic groups. We show that the parameters a and b from two given parental lines must be concordant to reach an ideal GCA of F1 yield. We hypothesize that coordinated regulation of the two classes of genes in the F1 hybrid genome is the basis for high GCA. Based on this theory, we built a series of predictive models to evaluate GCA in silico between parental lines of different heterotic groups.

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来源期刊
Plant Communications
Plant Communications Agricultural and Biological Sciences-Plant Science
CiteScore
15.70
自引率
5.70%
发文量
105
审稿时长
6 weeks
期刊介绍: Plant Communications is an open access publishing platform that supports the global plant science community. It publishes original research, review articles, technical advances, and research resources in various areas of plant sciences. The scope of topics includes evolution, ecology, physiology, biochemistry, development, reproduction, metabolism, molecular and cellular biology, genetics, genomics, environmental interactions, biotechnology, breeding of higher and lower plants, and their interactions with other organisms. The goal of Plant Communications is to provide a high-quality platform for the dissemination of plant science research.
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