Men over 45 have 31% more genetic mutations than those under 30

Historically we have heard that only women have to worry about their biological clock when it comes to having children, meaning that the sooner they get pregnant, the better. The classic biological argument was based on the finite ovarian reserve and the cellular aging of the oocytes. But the evidence has been warning for years that the clock is ticking for men. A new study presented by the IVI Foundation during the 42nd Annual Meeting of the European Society of Human Reproduction and Embryology has put a figure specific to male reproductive aging. This indicates that men over 45 years of age have 31% more mutations in their sperm compared to men under 30. A cell factory. Unlike oocytes, which are formed during female embryonic development and remain in a state of latency until ovulationsperm are produced continuously from puberty. This implies that the stem cells from which the sperm come are constantly dividing, causing even a seventy-year-old man to continue producing sperm. In cell biology, each division is an opportunity to make a copying error in DNA. And although cellular repair mechanisms are amazingly efficient, they are not perfect. Over the decades, errors accumulate and these genetic alterations that were not present in the parents but appear in the offspring are known as de novo mutations. They warn you. Science has been documenting this phenomenon for more than a decade and we have an example in an article published in Nature in 2012 that already established that approximately 80% of mutations of note They come from paternal genetics. Furthermore, the researchers estimated that the offspring’s genome acquires between 1 and 2 additional de novo mutations for each year that the father’s age increases. Now the new study confirms these data. Selection of sperm. The 31% increase in mutations is not solely due to a passive failure in DNA repair due to the simple wear and tear of age. This is where a fascinating, microscopic evolutionary mechanism operating in the testes called “selfish spermatogonial selection” comes in. In this case, some of the mutations that occur in sperm stem cells are not neutral, but rather confer a proliferative advantage to the cell itself. Specific mutations, such as those that occur in the gene FGFR3 or in the RAS signaling pathway, cause these mutated stem cells to divide faster and survive better than neighboring healthy cells. Over time, these mutated “clones” end up dominating large areas of the testicle, producing an increasing proportion of sperm carrying the mutation. Relative risk. The mutations de novo associated with advanced paternal age are strongly linked to the appearance of rare diseases of monogenic origin in offspring, such as achondroplasia, Apert syndrome or Costello syndrome, in addition to showing complex genetic correlations with neurodevelopmental disorders. However, the absolute risk of a father over 45 years of age conceiving a child with one of these severe pathologies remains statistically very low, specifically less than 0.5% in those over forty years of age. All of this means that the mutational increase is undeniable at the genomic level, but the probability that these mutations directly impact a critical gene and result in a congenital syndrome remains rare. Images | freepik In Xataka | Fertility rates have plummeted around the world. There is an unnoticed suspect: tobacco

Having many children sounds great as a way to preserve the species. Until you start passing genetic mutations

Men do not have a limit marked by nature in which a ‘stop’ is applied when it comes to having more offspring (such as if women have), although little by little it is becoming more complicated. But even if there is no such limit choosing to become parents at an older ageis not the most recommended due to the great risks it has, as pointed out a published study in Nature magazine recently. Risk age. The idea that the age of the mother It is a crucial factor for the baby’s health is deeply rooted in the collective consciousness and has been seen to Older age is associated with diseases such as Down syndrome. However, science has been accumulating evidence for years that the father’s age also plays a fundamental role. We already knew that about 80% of new genetic mutations (those not inherited from either parent) come from the paternal germline. What we didn’t know was the magnitude of the mechanism that accelerates it. Selfish sperm. The team of researchers from Wellcome Sanger Institute in the United Kingdomled by Raheleh Rahbari and Matthew Neville, has put a name and surname to the problem: selfish selection of spermatogonia. In simple terms, this means that certain genetic mutations not only alter a gene, but give a competitive advantage to the stem cells that produce sperm (spermatogonia). These mutated cells replicate faster and more efficiently than their healthy counterparts, so they will predominate ahead of the gametes that are suitable. As a result, as the years go by, the percentage of sperm carrying these “selfish” mutations increases exponentially, not linearly, and this results in a man in his early thirties having 1 sperm in every 50 with a disease-causing mutation. But when you reach the age of 70, this figure shoots up to 1 sperm in every 20. How it has been seen. To reach this conclusion, scientists needed highly precise technology, since right now standard sequencing methods have an error rate that can make it difficult to see a specific mutation. This is where a technique called duplex sequencing (NanoSeq). Its operation is very simple, since instead of reading a single strand of DNA, this method reads both strands of the double helix. If a mutation is detected on both strands in exactly the same place, it is virtually impossible for it to be a machine error. It is a real mutation. Thanks to this precision, they were able to analyze more than 35,000 mutations in the sperm of 81 men between 24 and 75 years old. In this case, the results identified more than 40 key genes where these selfish mutations tend to occur. Most are associated with serious neurodevelopmental disorders, such as autism itself or even increasing the probability of suffering from cancer throughout the offspring’s life. Genetic sanctuary. Interestingly, the study revealed a surprising fact when comparing the mutations in the sperm with those in the blood cells of the same men. In the blood, the impact of lifestyle was evident: men who smoked, drank alcohol excessively or were obese had a much higher mutation burden. However, no correlation with these factors was found in sperm. The mutations accumulated at a rate eight times slower and seemed immune to the individual’s habits. This suggests that the testicles function as a biological “sanctuary,” a protected niche that the body strives to keep safe from harmful environmental factors. Family planning. Logically, when making the decision to reproduce this changes many things, since to avoid this accumulation of mutations it would be interesting to do it the younger the better. Both in the case of men and women. But the reality we have in our society is that family conciliation has not yet been achieved, and this means that becoming mothers and fathers has to be delayed. In this way, the study points to the possibility of including sperm freezing at an earlier age if considering having children or considering genetic screening techniques for elderly parents. Although all this has a cost behind it. In Xataka | Someone thinks they know why fertility is plummeting around the world: men and women are doing “better” separately

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