نتایج جستجو برای: floral list

تعداد نتایج: 122652  

Journal: :Genetics 2010
Marcus T Brock Jennifer M Dechaine Federico L Iniguez-Luy Julin N Maloof John R Stinchcombe Cynthia Weinig

Genetic correlations are expected to be high among functionally related traits and lower between groups of traits with distinct functions (e.g., reproductive vs. resource-acquisition traits). Here, we explore the quantitative-genetic and QTL architecture of floral organ sizes, vegetative traits, and life history in a set of Brassica rapa recombinant inbred lines within and across field and gree...

Journal: :Development 1997
Z Liu M P Running E M Meyerowitz

We describe an Arabidopsis mutant, tso1, which develops callus-like tissues in place of floral organs. The tso1 floral meristem lacks properly organized three cell layers, and the nuclei of these cells are irregular in size and shape. Further analyses reveal partially formed cell walls and increased DNA ploidy in tso1 floral meristem cells, indicating defects in mitosis and cytokinesis. Our fin...

Journal: :The Plant cell 2009
Shinnosuke Ohmori Mayumi Kimizu Maiko Sugita Akio Miyao Hirohiko Hirochika Eiji Uchida Yasuo Nagato Hitoshi Yoshida

Floral organ identity and meristem determinacy in plants are controlled by combinations of activities mediated by MADS box genes. AGAMOUS-LIKE6 (AGL6)-like genes are MADS box genes expressed in floral tissues, but their biological functions are mostly unknown. Here, we describe an AGL6-like gene in rice (Oryza sativa), MOSAIC FLORAL ORGANS1 (MFO1/MADS6), that regulates floral organ identity and...

Journal: :The Plant cell 1999
S Sawa T Ito Y Shimura K Okada

Phenotypic analysis of single and multiple mutants as well as in situ localization analysis of the expression patterns of floral genes have revealed that the FIL AMENTOUS FLOWER (FIL) gene plays important roles in establishing the inflorescence in Arabidopsis. As previously reported, the fil mutant generates clusters of both filamentous structures and flowers with floral organs of altered numbe...

Journal: :Advanced Research in Life Sciences 2023

Abstract This work aims to better know the floral richness of Tell region (Saida, western Algeria) particular orchid flora. inventory was started in 2017-2022; It’s based on random samples, spring and autumn. The surveys directly targeted open areas (Northern Saida). revealed presence 11 orchids including 2 species, 6 subspecies varieties. taxa belong 5 genera: Anacamptis, Dactylorhiza, Himanth...

Journal: :The Plant cell 1995
M. D. Wilkinson G. W. Haughn

A novel gene that is involved in regulating flower initiation and development has been identified in Arabidopsis. This gene has been designated UNUSUAL FLORAL ORGANS (UFO), with five corresponding nuclear recessive alleles designated ufo[middot]1 to ufo[middot]5. Under short day-length conditions, ufo homozygotes generate more coflorescences than do the wild type, and coflorescences often appea...

Journal: :Plant physiology 1987
P W Morgan J R Quinby

Sorghum bicolor (L.) Moench lines with genetic differences in photoperiod requirement were planted in the field near Plainview, Texas (about 34 degrees northern latitude) around June 1 and treated with gibberellic acid (GA(3)) solutions applied in the apical leaf whorl. GA(3) hastened the date of floral differentiation (initiation). The greatest responses to GA(3) were by 90M and 100M, the late...

Journal: :Annals of botany 2011
Cesar Rodriguez-Saona Leonardo Parra Andrés Quiroz Rufus Isaacs

BACKGROUND AND AIMS Studies of the effects of pollination on floral scent and bee visitation remain rare, particularly in agricultural crops. To fill this gap, the hypothesis that bee visitation to flowers decreases after pollination through reduced floral volatile emissions in highbush blueberries, Vaccinium corymbosum, was tested. Other sources of variation in floral emissions and the role of...

Journal: :Development 2004
Takuya Suzaki Makoto Sato Motoyuki Ashikari Masahiro Miyoshi Yasuo Nagato Hiro-Yuki Hirano

The regulation of floral organ number is closely associated with floral meristem size. Mutations in the gene FLORAL ORGAN NUMBER1 (FON1) cause enlargement of the floral meristem in Oryza sativa (rice), resulting in an increase in the number of all floral organs. Ectopic floral organs develop in the whorl of each organ and/or in the additional whorls that form. Inner floral organs are more sever...

Journal: :Plant physiology 2011
Haifeng Li Wanqi Liang Changsong Yin Lu Zhu Dabing Zhang

Grass plants develop unique floral patterns that determine grain production. However, the molecular mechanism underlying the specification of floral organ identities and meristem determinacy, including the interaction among floral homeotic genes, remains largely unknown in grasses. Here, we report the interactions of rice (Oryza sativa) floral homeotic genes, OsMADS3 (a C-class gene), OsMADS13 ...

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