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Quantitative trait loci × environment interactions for plant morphology vary over ontogeny in B rassica rapa
Author(s) -
Dechaine Jennifer M.,
Brock Marcus T.,
IniguezLuy Federico L.,
Weinig Cynthia
Publication year - 2014
Publication title -
new phytologist
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.742
H-Index - 244
eISSN - 1469-8137
pISSN - 0028-646X
DOI - 10.1111/nph.12520
Subject(s) - ontogeny , biology , quantitative trait locus , genetic architecture , phenotypic plasticity , seedling , inbred strain , plant stem , botany , genetics , gene
Summary Growth in plants occurs via the addition of repeating modules, suggesting that the genetic architecture of similar subunits may vary between earlier‐ and later‐developing modules. These complex environment × ontogeny interactions are not well elucidated, as studies examining quantitative trait loci ( QTLs ) expression over ontogeny have not included multiple environments. Here, we characterized the genetic architecture of vegetative traits and onset of reproduction over ontogeny in recombinant inbred lines of B rassica rapa in the field and glasshouse. The magnitude of genetic variation in plasticity of seedling internodes was greater than in those produced later in ontogeny. We correspondingly detected that QTLs for seedling internode length were environment‐specific, whereas later in ontogeny the majority of QTLs affected internode lengths in all treatments. The relationship between internode traits and onset of reproduction varied with environment and ontogenetic stage. This relationship was observed only in the glasshouse environment and was largely attributable to one environment‐specific QTL . Our results provide the first evidence of a QTL  × environment × ontogeny interaction, and provide QTL resolution for differences between early‐ and later‐stage plasticity for stem elongation. These results also suggest potential constraints on morphological evolution in early vs later modules as a result of associations with reproductive timing.

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