Results 21 to 30 of about 26,056 (208)

Selection on BrFLC1 Is Related to Intraspecific Diversity of Brassica rapa Vegetables

open access: yesHorticulturae, 2021
Flowering time is important for Brassica rapa vegetables because premature bolting before harvest can lower yield and quality. FLOWERING LOCUS C (FLC) acts as a key repressor of flowering. In this study, we identified a nonsynonymous mutation at the 58th
Jiahe Liu   +8 more
doaj   +1 more source

Cadmium induces early flowering in Arabidopsis

open access: yesBiologia Plantarum, 2012
We found that cadmium promoted flowering in Arabidopsis and suppressed nitric oxide accumulation in leaves. Supplementation with NO donor SNP delayed flowering, whereas application of NO scavenger cPTIO further promoted the transition from vegetative to ...
W. Y. Wang   +4 more
doaj   +1 more source

Brahma is required for proper expression of the floral repressor FLC in Arabidopsis. [PDF]

open access: yesPLoS ONE, 2011
BRAHMA (BRM) is a member of a family of ATPases of the SWI/SNF chromatin remodeling complexes from Arabidopsis. BRM has been previously shown to be crucial for vegetative and reproductive development.Here we carry out a detailed analysis of the flowering
Sara Farrona   +7 more
doaj   +1 more source

New Flowering and Architecture Traits Mediated by Multiplex CRISPR-Cas9 Gene Editing in Hexaploid Camelina sativa

open access: yesAgronomy, 2022
Adapting plants to sustainable cropping systems is a major challenge for facing climate change and promoting agroecological transition. Camelina sativa is an emerging oilseed crop species with climate-resilient properties that could be used in double ...
Yannick Bellec   +7 more
doaj   +1 more source

Arabidopsis RRP6L1 and RRP6L2 function in FLOWERING LOCUS C silencing via regulation of antisense RNA synthesis. [PDF]

open access: yesPLoS Genetics, 2014
The exosome complex functions in RNA metabolism and transcriptional gene silencing. Here, we report that mutations of two Arabidopsis genes encoding nuclear exosome components AtRRP6L1 and AtRRP6L2, cause de-repression of the main flowering repressor ...
Jun-Hye Shin, Julia A Chekanova
doaj   +1 more source

GmGBP1, a homolog of human ski interacting protein in soybean, regulates flowering and stress tolerance in Arabidopsis

open access: yesBMC Plant Biology, 2013
Background SKIP is a transcription cofactor in many eukaryotes. It can regulate plant stress tolerance in rice and Arabidopsis. But the homolog of SKIP protein in soybean has been not reported up to now.
Zhang Yanwei   +9 more
doaj   +1 more source

Investigating the Association between Flowering Time and Defense in the Arabidopsis thaliana-Fusarium oxysporum Interaction. [PDF]

open access: yesPLoS ONE, 2015
Plants respond to pathogens either by investing more resources into immunity which is costly to development, or by accelerating reproductive processes such as flowering time to ensure reproduction occurs before the plant succumbs to disease.
Rebecca Lyons   +5 more
doaj   +1 more source

Nitrilases NIT1/2/3 Positively Regulate Flowering by Inhibiting MAF4 Expression in Arabidopsis

open access: yesFrontiers in Plant Science, 2022
Three of the nitrilases (NITs), NIT1, NIT2, and NIT3, are ubiquitously existing in plant kingdom, which catalyze indole-3-acetonitrile into the most important auxin indole-3-acetic acid.
Shuang Yang   +5 more
doaj   +1 more source

RNA Splicing of FLC Modulates the Transition to Flowering

open access: yesFrontiers in Plant Science, 2019
Flowering is a critical stage of plant development and is closely correlated with seed production and crop yield. Flowering transition is regulated by complex genetic networks in response to endogenous and environmental signals.
Hao-Dong Qi   +5 more
doaj   +1 more source

Golgi enzymes are retrieved from the plasma membrane to the trans‐Golgi network

open access: yesFEBS Letters, EarlyView.
Golgi enzymes are traditionally considered resident proteins retained within the Golgi apparatus. Here, we demonstrate that a subset transiently reaches the cell surface and is subsequently retrieved to the trans‐Golgi network via retrograde transport. Using a nanobody‐based toolkit, we uncover a dynamic trafficking cycle of several Golgi enzymes.
Dominik P. Buser, Tina Junne
wiley   +1 more source

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