Literature DB >> 20736971

The quantitative-genetic and QTL architecture of trait integration and modularity in Brassica rapa across simulated seasonal settings.

C E Edwards1, C Weinig.   

Abstract

Within organisms, groups of traits with different functions are frequently modular, such that variation among modules is independent and variation within modules is tightly integrated, or correlated. Here, we investigated patterns of trait integration and modularity in Brassica rapa in response to three simulated seasonal temperature/photoperiod conditions. The goals of this research were to use trait correlations to understand patterns of trait integration and modularity within and among floral, vegetative and phenological traits of B. rapa in each of three treatments, to examine the QTL architecture underlying patterns of trait integration and modularity, and to quantify how variation in temperature and photoperiod affects the correlation structure and QTL architecture of traits. All floral organs of B. rapa were strongly correlated, and contrary to expectations, floral and vegetative traits were also correlated. Extensive QTL co-localization suggests that covariation of these traits is likely due to pleiotropy, although physically linked loci that independently affect individual traits cannot be ruled out. Across treatments, the structure of genotypic and QTL correlations was generally conserved. Any observed variation in genetic architecture arose from genotype × environment interactions (GEIs) and attendant QTL × E in response to temperature but not photoperiod.

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Year:  2010        PMID: 20736971      PMCID: PMC3183896          DOI: 10.1038/hdy.2010.103

Source DB:  PubMed          Journal:  Heredity (Edinb)        ISSN: 0018-067X            Impact factor:   3.821


  27 in total

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4.  Plasticity and environment-specific covariances: an investigation of floral-vegetative and within flower correlations.

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5.  Covariance and decoupling of floral and vegetative traits in nine Neotropical plants: a re-evaluation of Berg's correlation-pleiades concept.

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  16 in total

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3.  The genetic architecture of ecophysiological and circadian traits in Brassica rapa.

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Review 5.  Modularity and intra-floral integration in metameric organisms: plants are more than the sum of their parts.

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6.  The Circadian Clock Influences the Long-Term Water Use Efficiency of Arabidopsis.

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Review 7.  Accessibility, constraint, and repetition in adaptive floral evolution.

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8.  Analysis of gene expression profiles of two near-isogenic lines differing at a QTL region affecting oil content at high temperatures during seed maturation in oilseed rape (Brassica napus L.).

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