Results 61 to 70 of about 19,183,062 (174)
New components in genetic regulation of age‐dependent compound leaf architecture in pea
Compound leaf development in pea (Pisum sativum). Summary Pea (Pisum sativum L.) is a classic model for compound leaf development. Pea leaves typically consist of a proximal series of paired lateral leaflets substituted distally by filiform tendrils, and the number of lateral organ pairs increases with ontogeny.
Jacqueline K. Vander Schoor +7 more
wiley +1 more source
Carbon and nitrogen signaling regulate FLOWERING LOCUS C and impact flowering time in Arabidopsis [PDF]
The timing of flowering in plants is modulated by both carbon (C) and nitrogen (N) signaling pathways. In a previous study, we established a pivotal role of the sucrose-signaling trehalose 6-phosphate pathway in regulating flowering under N-limited short-
Ponnu, J. +5 more
core +3 more sources
Genetic and Epigenetic Understanding of the Seasonal Timing of Flowering
The developmental transition to flowering in many plants is timed by changing seasons, which enables plants to flower at a season that is favorable for seed production. Many plants grown at high latitudes perceive the seasonal cues of changing day length
Yuehui He, Tao Chen, Xiaolin Zeng
doaj +1 more source
Major flowering time gene, FLOWERING LOCUS C, regulates seed germination in Arabidopsis thaliana
FLOWERING LOCUS C (FLC) is a major regulator of flowering responses to seasonal environmental factors. Here, we document that FLC also regulates another major life-history transition-seed germination, and that natural variation at the FLC locus and in ...
Kramer, Elena +4 more
core +1 more source
ABSTRACT To ensure sustainable agricultural production under escalating environmental constraints such as drought and salinity, innovative strategies are urgently needed. Here, we reveal in foxtail millet (Setaria italica) that transcription factors TAF10 and ERF109 form a functional complex which co‐activates the expression of key flavonoid ...
Meng Zhang +15 more
wiley +1 more source
Mechanism of demethylation of histone H3 lysine 4 on FLC locus during vernalization depending on two JmjC-domain containing demethylases [PDF]
Flowering in plants is one of the crucial developmental events controlled by the multiple environmental stimuli. Vernalization is the response to the exposure to the prolonged cold to achieve the molecular competence for a subsequent floral transition ...
Park, Sung Rye
core +1 more source
Haplotypes and Machine Learning Improve Genomic Prediction in Brassica napus
ABSTRACT Genomic selection (GS) is a crop and livestock improvement method suited for predicting complex agronomical traits, while genomic prediction (GP) is the development of GS models prior to their practical use in breeding programs. One of the challenges in GP is accounting for how complex genomic interactions, such as epistasis, affect the ...
Tessa R. MacNish +4 more
wiley +1 more source
Overexpression of TCP8 delays Arabidopsis flowering through a FLOWERING LOCUS C-dependent pathway
Background Flowering is a key process in the life cycle of plants. The transition from vegetative to reproductive growth is thus under sophisticated regulation by endogenous and environmental signals.
Xiaoyan Wang +6 more
doaj +1 more source
Multiomics Insights Into AL Amyloidosis
ABSTRACT Light chain amyloidosis is a systemic or localized protein conformational disorder triggered by misfolded immunoglobulin light chains, leading to amyloid fibril deposition. The disease is characterized by multiorgan involvement and delayed diagnosis, contributing to poor prognosis and high mortality rates.
Zixuan Zhang +6 more
wiley +1 more source
Abstract Southern corn leaf blight (SCLB) is caused by the fungal pathogen Bipolaris maydis (syn. Cochliobolus heterostrophus Drechsler) and is a common disease of fall crops of sweet corn. Phenotyping for SCLB resistance is performed through visual scoring, which is subjective and may limit genetic gain for this quantitative trait.
Darlon V. Lantican +9 more
wiley +1 more source

