The pattern of development of the inflorescence is an important characteristic in ornamental plants, where the economic value is in the flower. The genetic determinism of inflorescence architecture is poorly understood, especially in woody perennial plants with long life cycles. Our objective was to study the genetic determinism of this characteristic in rose. The genetic architectures of 10 traits associated with the developmental timing and architecture of the inflorescence, and with flower production were investigated in a F 1 diploid garden rose population, based on intensive measurements of phenological and morphological traits in a field. There were substantial genetic variations in inflorescence development traits, with broad-sense h...
New microsatellites markers [simple sequence repeat (SSR)] have been isolated from rose and integrat...
Rose (Rosa spp.) is one of the most economically important ornamental species worldwide. Flower diam...
In rose, RoKSN, a TFL1 homologue, is a key regulator of continuous flowering. To study the function ...
Understanding the genetic basis of plant architecture is limited for woody plants due to the challen...
Rose is the ornamental species with the highest financial impact. Floral traits such as the number o...
Rose flowers have long delighted humans as ornamental plants. To improve the ornamental value of ros...
Roses (genus Rosa) are among the most popular ornamental plants. Traditional rose breeding is a slow...
The improvement of energy efficiency in the greenhouse production of cut rose and pot rose can be ac...
Cultivated for centuries, the varieties of rose have been selected based on a number of flower trait...
International audienceRose is the queen of flowers, holding great symbolic and cultural value. Roses...
Exhaustive studies on flowering control in annual plants have provided a framework for exploring thi...
We have constructed the first integrated consensus map (ICM) for rose, based on the information of f...
Plant shape, and thereby plant architecture, is a major component of the visual quality of ornamenta...
Rose is one of the most important ornamental and economic plants in the world. Modern rose cultivars...
The effect of genotype factors, year and their interaction was assessed on six architectural variabl...
New microsatellites markers [simple sequence repeat (SSR)] have been isolated from rose and integrat...
Rose (Rosa spp.) is one of the most economically important ornamental species worldwide. Flower diam...
In rose, RoKSN, a TFL1 homologue, is a key regulator of continuous flowering. To study the function ...
Understanding the genetic basis of plant architecture is limited for woody plants due to the challen...
Rose is the ornamental species with the highest financial impact. Floral traits such as the number o...
Rose flowers have long delighted humans as ornamental plants. To improve the ornamental value of ros...
Roses (genus Rosa) are among the most popular ornamental plants. Traditional rose breeding is a slow...
The improvement of energy efficiency in the greenhouse production of cut rose and pot rose can be ac...
Cultivated for centuries, the varieties of rose have been selected based on a number of flower trait...
International audienceRose is the queen of flowers, holding great symbolic and cultural value. Roses...
Exhaustive studies on flowering control in annual plants have provided a framework for exploring thi...
We have constructed the first integrated consensus map (ICM) for rose, based on the information of f...
Plant shape, and thereby plant architecture, is a major component of the visual quality of ornamenta...
Rose is one of the most important ornamental and economic plants in the world. Modern rose cultivars...
The effect of genotype factors, year and their interaction was assessed on six architectural variabl...
New microsatellites markers [simple sequence repeat (SSR)] have been isolated from rose and integrat...
Rose (Rosa spp.) is one of the most economically important ornamental species worldwide. Flower diam...
In rose, RoKSN, a TFL1 homologue, is a key regulator of continuous flowering. To study the function ...