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guro
scat
furry -rating:g

Artist

  • ? rivrider 14

Copyrights

  • ? mario (series) 30k
  • ? ↳ new super mario bros. u deluxe 6.0k
  • ? ↳ super mario 3d world 371
  • ? ↳ super mario odyssey 798

Characters

  • ? bowser 2.3k
  • ? bowsette 4.0k
  • ? luigi 3.2k
  • ? mario 6.2k
  • ? princess peach 8.4k

General

  • ? 2girls 1.4M
  • ? 3boys 102k
  • ? 4koma 115k
  • ? :d 826k
  • ? aqua eyes 248k
  • ? arm around another's waist 7.4k
  • ? armlet 62k
  • ? black collar 43k
  • ? black dress 363k
  • ? blonde hair 2.1M
  • ? blood 184k
  • ? blood from mouth 12k
  • ? bracelet 261k
  • ? breasts 4.8M
  • ? breath 63k
  • ? brown hair 2.0M
  • ? cherry 14k
  • ? clenched teeth 102k
  • ? clone 9.1k
  • ? closed mouth 1.9M
  • ? collar 269k
  • ? comic 710k
  • ? couple 97k
  • ? crown 96k
  • ? double cherry (mario) 27
  • ? dress 1.9M
  • ? dual persona 60k
  • ? earrings 824k
  • ? english text 391k
  • ? facial hair 164k
  • ? fang 440k
  • ? fangs 151k
  • ? fangs out 3.8k
  • ? flat color 13k
  • ? food 603k
  • ? forked eyebrows 8.6k
  • ? fruit 146k
  • ? gameplay mechanics 18k
  • ? genderswap 61k
  • ? genderswap (mtf) 46k
  • ? green hat 40k
  • ? hand on another's hip 6.5k
  • ? hand on another's shoulder 41k
  • ? hat 1.6M
  • ? heavy breathing 49k
  • ? hetero 773k
  • ? high ponytail 121k
  • ? holding 2.1M
  • ? holding crown 711
  • ? holding food 147k
  • ? holding fruit 20k
  • ? horns 663k
  • ? jewelry 1.5M
  • ? long hair 6.0M
  • ? multiple boys 671k
  • ? multiple girls 2.0M
  • ? mustache 39k
  • ? nervous sweating 24k
  • ? open mouth 3.4M
  • ? outstretched arm 91k
  • ? personification 45k
  • ? ponytail 935k
  • ? red hat 85k
  • ? red shirt 106k
  • ? selfcest 4.3k
  • ? shaded face 79k
  • ? sharp teeth 119k
  • ? shirt 2.8M
  • ? silent comic 27k
  • ? smile 4.0M
  • ? spiked armlet 3.6k
  • ? spiked bracelet 15k
  • ? spiked collar 18k
  • ? spiked shell 2.4k
  • ? spikes 64k
  • ? spitting 3.0k
  • ? spitting blood 333
  • ? strapless 230k
  • ? strapless dress 75k
  • ? super crown 6.0k
  • ? sweat 742k
  • ? teeth 744k
  • ? thick eyebrows 136k
  • ? thumbs up 19k
  • ? transformation 8.2k
  • ? turn pale 10k
  • ? v-shaped eyebrows 257k
  • ? varied reactions 1.1k
  • ? waving 39k

Meta

  • ? commentary 3.1M
  • ? english commentary 1.3M
  • ? highres 7.8M

Information

  • ID: 3262233
  • Uploader: Squishy »
  • Date: almost 8 years ago
  • Approver: NWSiaCB »
  • Size: 128 KB .png (1320x1386) »
  • Source: dabloons.tumblr.com/post/178316339193 »
  • Rating: Sensitive
  • Score: 69
  • Favorites: 111
  • Status: Active

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This post has 1 child (learn more) « hide
post #3262233
post #3268955
Resized to 64% of original (view original)
princess peach, mario, bowsette, luigi, and bowser (mario and 3 more) drawn by rivrider

Artist's commentary

  • Original
  • Inspired by @haniwahead‘s “Princess Bowser” comic. It’s surprisingly not trending as deep as it is on Twitter.

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    Squishy
    almost 8 years ago
    [hidden]

    Follow up scene

    4 Reply
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    MadGeneral
    almost 8 years ago
    [hidden]

    Use it.

    0 Reply
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    user 509926
    almost 8 years ago
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    "Now neither of us will be virgins"

    6 Reply
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    NegativeSoul
    almost 8 years ago
    [hidden]

    I wonder how they determined which would be the girl?

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    UserAccount
    almost 8 years ago
    [hidden]

    Squishy said:

    Follow up scene

    I did some research to determine just how messed-up a child born of two people of exactly identical DNA (that is, a person and their clone).

    The answer is, surprisingly, not very much. Yes, the kid would almost certainly have one or more genetic diseases (cystic fibrosis, for example), but only if the parent was a carrier for those diseases in the first place. It wouldn't be a total trainwreck like many (including me) imagined it'd be.

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    godgun213
    almost 8 years ago
    [hidden]

    UserAccount said:

    I did some research to determine just how messed-up a child born of two people of exactly identical DNA (that is, a person and their clone).

    The answer is, surprisingly, not very much. Yes, the kid would almost certainly have one or more genetic diseases (cystic fibrosis, for example), but only if the parent was a carrier for those diseases in the first place. It wouldn't be a total trainwreck like many (including me) imagined it'd be.

    well

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    NWSiaCB
    almost 8 years ago
    [hidden]

    UserAccount said:

    I did some research to determine just how messed-up a child born of two people of exactly identical DNA (that is, a person and their clone).

    The answer is, surprisingly, not very much. Yes, the kid would almost certainly have one or more genetic diseases (cystic fibrosis, for example), but only if the parent was a carrier for those diseases in the first place. It wouldn't be a total trainwreck like many (including me) imagined it'd be.

    The problem with that conclusion is that you're presuming the number of people who have some sort of potentially problematic genetic material are small, but nearly everyone has some. In fact, this is THE reason that inbreeding is dangerous to start with. (And self-fertilization is actually TWICE as bad as brother-sister incest on the inbreeding coefficient, since you only share roughly half your DNA with a sibling.)

    Let's take a well-known example of sickle cell anemia, for example. Using the typical Punnett Square setup of having SS be totally normal blood, Ss being a carrier of one sickle cell gene, and ss being a carrier of two sickle cell genes, then only the person with ss genes actually displays sickle cell anemia. By contrast, the Ss person may carry sickle cell genes, but not only doesn't suffer from sickle cell anemia, but actually gets a benefit in the form of resistance to malaria, which is why genetic material that can cause a serious disease was actually naturally selected to perpetuate instead of go extinct.

    Even in populations where sickle cell is relatively common, only about 10% of the population carries it, so it's still a relatively small percentage of the population that actually falls victim to sickle cell. In the case of self-fertilization (instead of a direct cloning), a Ss carrier of sickle cell genes, however, has a 25% chance of producing sickle cell anemic offspring.

    And that comes to the big problematic assumption you're making - that most people don't have any genes that can carry genetic diseases... which is just plain wrong, most people carry several different potential genetic diseases, because there are tons of different things like sickle cell just waiting to give people Hapsburg Jaws. It's just that keeping genetic diversity flowing by not intermarrying prevents most of these because every ethnicity has their own distinct set of potential genetic problems.

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    Moriyama
    almost 8 years ago
    [hidden]

    My thought is pointing at Bowser (and Mario) and why he's sweating so much...

    3 Reply
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    YouWillFearmyLaserNipple
    almost 8 years ago
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    Moriyama said:

    My thought is pointing at Bowser (and Mario) and why he's sweating so much...

    For the exact same reasons we are

    2 Reply
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    malus
    almost 8 years ago
    [hidden]

    NegativeSoul said:

    I wonder how they determined which would be the girl?

    They probably take turns wearing the crown

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    YuRanRan
    almost 8 years ago
    [hidden]

    NWSiaCB said:

    The problem with that conclusion is that you're presuming the number of people who have some sort of potentially problematic genetic material are small, but nearly everyone has some. In fact, this is THE reason that inbreeding is dangerous to start with. (And self-fertilization is actually TWICE as bad as brother-sister incest on the inbreeding coefficient, since you only share roughly half your DNA with a sibling.)

    Let's take a well-known example of sickle cell anemia, for example. Using the typical Punnett Square setup of having SS be totally normal blood, Ss being a carrier of one sickle cell gene, and ss being a carrier of two sickle cell genes, then only the person with ss genes actually displays sickle cell anemia. By contrast, the Ss person may carry sickle cell genes, but not only doesn't suffer from sickle cell anemia, but actually gets a benefit in the form of resistance to malaria, which is why genetic material that can cause a serious disease was actually naturally selected to perpetuate instead of go extinct.

    Even in populations where sickle cell is relatively common, only about 10% of the population carries it, so it's still a relatively small percentage of the population that actually falls victim to sickle cell. In the case of self-fertilization (instead of a direct cloning), a Ss carrier of sickle cell genes, however, has a 25% chance of producing sickle cell anemic offspring.

    And that comes to the big problematic assumption you're making - that most people don't have any genes that can carry genetic diseases... which is just plain wrong, most people carry several different potential genetic diseases, because there are tons of different things like sickle cell just waiting to give people Hapsburg Jaws. It's just that keeping genetic diversity flowing by not intermarrying prevents most of these because every ethnicity has their own distinct set of potential genetic problems.

    Prtty much everyone has alleles that can cause disease. There seems to also be lot of people who *should* display a disease phenotype based on gentypic analysis, but they don't. Last time I looked at a paper on this (the team was looking at a bunch of SNPs), it seems most people have 36 to 60 or so problematic recessive, disease inducing alleles. Even if you have both alleles only around 10% of people with that genotype (based on what the team was able to pick up on analysis) will actually have the syndrome or disease. So it's not as bad as most would make this issue out to be. Epigenetics and the like make this all very complex to say the least.

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