Results 141 to 150 of about 30,445 (234)

pseudo‐GhFAD2‐1 Is a lncRNA Involved in Regulating Cottonseed Oleic and Linoleic Acid Ratios and Seed Size in Gossypium hirsutum

open access: yesPlant Biotechnology Journal, EarlyView.
ABSTRACT Long non‐coding RNAs (lncRNAs), defined as transcripts > 200 nt without protein‐coding capacity, play crucial regulatory roles in plant growth and development. While numerous lncRNAs exist in plants including cotton (Gossypium spp.), few are functionally characterised. G. hirsutum serves as both a premier fibre crop and significant oil source,
Haihong Chen   +7 more
wiley   +1 more source

Classification of and detection techniques for RNAi-induced effects in GM plants. [PDF]

open access: yesFront Plant Sci
Diaz C   +6 more
europepmc   +1 more source

Factors determining chromosomal localization of transposable elements in plants

open access: yesPlant Biology, EarlyView.
We review transposon chromosomal niches, and the functional consequences of their specific chromosomal localization in plants. Abstract Transposable elements (TEs) constitute a significant part of plant genomes and shape their genomic landscape. While some TEs are ubiquitously dispersed, other elements specifically occupy discrete genomic loci.
E. Kejnovsky   +3 more
wiley   +1 more source

The RhoA guanine exchange factor ABR: a glucose‐sensitive mediator of actin reorganization in feto‐placental arterial endothelial cells altered by gestational diabetes mellitus

open access: yesThe Journal of Physiology, EarlyView.
Abstract figure legend Schematic representation of proposed relationship between hyperglycaemia, gestational diabetes mellitus (GDM), active BCR‐related (ABR), RhoA and actin organization of feto‐placental arterial endothelial cells (fpEC). Hyperglycaemia upregulates ABR, which in turn increases RhoA activation.
Silvija Tokic   +9 more
wiley   +1 more source

Failure of the Tomato Trans-Acting Short Interfering RNA Program to Regulate AUXIN RESPONSE FACTOR3 and ARF4 Underlies the Wiry Leaf Syndrome[C][W]

open access: yesThe Plant Cell, 2012
Tamar Yifhar   +9 more
semanticscholar   +1 more source

Models of cardiomyocyte–non‐myocyte electrical interactions

open access: yesThe Journal of Physiology, EarlyView.
Abstract figure legend Cardiomyocyte–non‐myocyte (CM–NM) electrotonic coupling. Left: conceptual contact‐based interactions between CM and other NM via connexin (Cx) proteins. Three basic scenarios are proposed: (i) ‘zero‐sided coupling’ where there are no electrical connections between CM and NM, (ii) ‘single‐sided coupling’ where NM are connected to ...
Ana Simon‐Chica   +2 more
wiley   +1 more source

14‐3‐3 proteins: Regulators of cardiac excitation–contraction coupling and stress responses

open access: yesThe Journal of Physiology, EarlyView.
Abstract figure legend 14‐3‐3 protein interactions in cardiac regulation. Schematic representation of 14‐3‐3 binding partners in excitation–contraction coupling, transcriptional regulation/development and stress response pathways. Asterisks indicate targets where the exact 14‐3‐3 binding site is unknown.
Heather C. Spooner, Rose E. Dixon
wiley   +1 more source

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