Meiotic drivers are genetic entities that increase their own probability of being transmitted to offspring, usually to the detriment of the rest of the organism, thus ‘selfishly’ increasing their fitness. In many meiotic drive systems, driver-carrying males are less successful in sperm competition, which occurs when females mate with multiple males in one oestrus cycle (polyandry). How do drivers respond to this selection? An observational study found that house mice carrying the t haplotype, a meiotic driver, are more likely to disperse from dense populations. This could help the t avoid detrimental sperm competition, because density is associated with the frequency of polyandry. However, no controlled experiments have been conducted to te...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
At first sight, biological organisms appear as harmonious entities, armed with features exquisitely ...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Background - With female multiple mating (polyandry), male-male competition extends to after copulat...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
At first sight, biological organisms appear as harmonious entities, armed with features exquisitely ...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are genetic entities that increase their own probability of being transmitted to off...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Background - With female multiple mating (polyandry), male-male competition extends to after copulat...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Meiotic drivers are selfish genetic elements that manipulate meiosis to increase their transmission ...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
Drive genes are genetic elements that manipulate the 50% ratio of Mendelian inheritance in their own...
At first sight, biological organisms appear as harmonious entities, armed with features exquisitely ...