Plant hybrids are extensively used in agriculture to deliver increases in yields, yet the molecular basis of their superior performance (heterosis) is not well understood. Our transcriptome analysis of a number of Arabidopsis F1 hybrids identified changes to defense and stress response gene expression consistent with a reduction in basal defense levels. Given the reported antagonism between plant immunity and growth, we suggest that these altered patterns of expression contribute to the greater growth of the hybrids. The altered patterns of expression in the hybrids indicate decreases to the salicylic acid (SA) biosynthesis pathway and increases in the auxin [indole-3-acetic acid (IAA)] biosynthesis pathway. SA and IAA are hormones known to...
Plants have evolved a sophisticated system to respond to various stresses. Fungal attack or infectio...
Hybrids between Arabidopsis thaliana accessions are important in revealing the consequences of epist...
Salicylic acid (SA) is an important plant hormone with a critical role in plant defense against path...
Plant hybrids are extensively used in agriculture to deliver increases in yields, yet the molecular ...
Heterosis, the phenotypic superiority of a hybrid over its parents, has been demonstrated for many t...
Heterosis, the phenotypic superiority of a hybrid over its parents, has been demonstrated for many t...
Heterosis,the phenotypic superiority of a hybrid over its parents,has been demonstrated for many tra...
Heterosis, the generally superior performance in hybrids compared to their inbred parents, is one of...
Heterosis is most frequently manifested by the substantially increased vigorous growth of hybrids co...
Heterosis-associated cellular and molecular processes were analyzed in seeds and seedlings of Arabid...
Arabidopsis thaliana shows hybrid vigor (heterosis) in progeny of crosses between Columbia-0 and C24...
Breeders are empirically exploiting the phenomenon of heterosis, also described as hybrid vigor, for...
Hybrids between A. thaliana accessions are important in revealing the consequences of epistatic inte...
To respond to pathogen attack, selection and associated evolution has led to the creation of plant i...
Little is known about how gene expression variation within a given species controls phenotypic varia...
Plants have evolved a sophisticated system to respond to various stresses. Fungal attack or infectio...
Hybrids between Arabidopsis thaliana accessions are important in revealing the consequences of epist...
Salicylic acid (SA) is an important plant hormone with a critical role in plant defense against path...
Plant hybrids are extensively used in agriculture to deliver increases in yields, yet the molecular ...
Heterosis, the phenotypic superiority of a hybrid over its parents, has been demonstrated for many t...
Heterosis, the phenotypic superiority of a hybrid over its parents, has been demonstrated for many t...
Heterosis,the phenotypic superiority of a hybrid over its parents,has been demonstrated for many tra...
Heterosis, the generally superior performance in hybrids compared to their inbred parents, is one of...
Heterosis is most frequently manifested by the substantially increased vigorous growth of hybrids co...
Heterosis-associated cellular and molecular processes were analyzed in seeds and seedlings of Arabid...
Arabidopsis thaliana shows hybrid vigor (heterosis) in progeny of crosses between Columbia-0 and C24...
Breeders are empirically exploiting the phenomenon of heterosis, also described as hybrid vigor, for...
Hybrids between A. thaliana accessions are important in revealing the consequences of epistatic inte...
To respond to pathogen attack, selection and associated evolution has led to the creation of plant i...
Little is known about how gene expression variation within a given species controls phenotypic varia...
Plants have evolved a sophisticated system to respond to various stresses. Fungal attack or infectio...
Hybrids between Arabidopsis thaliana accessions are important in revealing the consequences of epist...
Salicylic acid (SA) is an important plant hormone with a critical role in plant defense against path...