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The objective of this study was to examine the effect of the presence of a single or multiple embryo(s) on the transcriptome of the bovine oviduct. In Experiment 1, cyclic (non-bred, n = 6) and pregnant (artificially inseminated, n = 11) heifers were slaughtered on Day 3 after estrus, and the ampull...
ORGANISM(S): Bos taurus 
An increase in circulating progesterone (P4) concentrations is associated with increased pregnancy success in beef and dairy cattle. Our objective was to ascertain differential effects of elevated P4 concentrations following conception on endometrial gene expression in beef heifers on Days 5, 7, 13 ...
ORGANISM(S): Bos taurus 
AIM: 1. To identify genes that respond to N-deficiency and N-resupply and 2. To identify the subset of these genes that are under the (direct or indirect) regulatory influence of the ANR1 MADS-box gene and which may therefore participate in the nutritional regulation of root architecture. BACKGROUND...
ORGANISM(S): Arabidopsis thaliana 
2007-01-22 | GSE6824 | GEO
Cellular mechanisms that contribute to low estradiol concentrations produced by the preovulatory ovarian follicle in cattle with a compromised metabolic status (such as lactatino) are largely unknown. To gain insight into the main metabolic mechanisms affecting preovulatory follicle function RNAseq ...
ORGANISM(S): Bos taurus 
AIM:; 1. To identify genes that respond to N-deficiency and N-resupply and; 2. To identify the subset of these genes that are under the (direct or indirect) regulatory influence of the ANR1 MADS-box gene and which may therefore participate in the nutritional regulation of root architecture. BACKGROU...
ORGANISM(S): Arabidopsis thaliana 
The aims of this study were to 1) identify the earliest transcriptional response of the bovine endometrium to the presence of the conceptus (using RNAseq), 2) investigate if these genes are regulated by interferon tau (IFNT) in vivo, and 3) determine if they are predictive of the pregnancy status of...
ORGANISM(S): Bos taurus 
Background: The Arabidopsis ANR1 gene is a key regulator of root architecture (Zhang and Forde, 1998): when ANR1 is down-regulated (by antisense or co-suppression) the resulting lines are no longer able to proliferate their lateral roots in response to localised supplies of NO3- (Zhang and Forde, 19...
ORGANISM(S): Arabidopsis thaliana 
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