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Tuesday, June 12, 2012

Matthew 5:27-28: The Significance of the Greek Participle


Ἠκούσατε ὅτι ἐρρέθη· οὐ μοιχεύσεις. ἐγὼ δὲ λέγω ὑμῖν ὅτι πᾶς ὁ βλέπων γυναῖκα πρὸς τὸ ἐπιθυμῆσαι [αὐτὴν] ἤδη ἐμοίχευσεν αὐτὴν ἐν τῇ καρδίᾳ αὐτοῦ.
You have heard that it was said, 'Do not commit adultery.' But I say to you that everyone who looks at a woman in order to lust for her has already committed adultery with her in his heart.”
Matthew 5:27-28

In English, participles are special verbs that function either as adverbs or adjectives. They are easily identified by the ending, “ing.” If there were a room full of men and I wanted to identify a certain man, I might say, “Do you see the man
standing by the door?” The word, “standing” in this sentence is a participle. It's acting as an adjective describing which man I'm talking about – the man standing by the door. I'm not necessarily interested in what he is doing; I'm using the participle to identify who he is.

In Greek, participles act much the same way as they do in English. In Matthew 5:28, the word βλέπων (blepōn) is a participle acting as an adjective (technically, it's an adjective functioning substantively as a noun). ὁ βλέπων is most literally translated as “the one who is looking” but just as in English, the participle isn't necessarily concerned with what he is doing but is merely identifying who he is.

The use of a participle makes an important distinction. Later in Matthew (Matthew 7:16), Jesus said, “You will know them by their fruits.” You can see that a person isn't defined by his actions; rather, he is revealed by his actions. In the Matthew 5:27-28 passage, it's not “looking” at women that makes a man an adulterer. The passage is clear that he is already an adulterer. When he looks at a woman to lust for her, he is only doing what adulterers do.

By way of analogy, consider dogs: dogs aren't dogs because they bark; they bark because they're dogs. Likewise, adulterers look at women in order to lust for them. Proverbs 23:7 says, “For as he thinketh in his heart, so is he.” Who we are on the inside is revealed by what we do. In other words, adulterers lust, murderers hate, thieves envy, etc. We’re not sinners because of the sins we commit. We’re sinners and so we commit sins.

Some people think of themselves as basically “good” because they haven't committed any “major” sins. That's because they don't consider their lusts, envy, or hate to be a major sin. What they don't understand is that these are symptoms of who they really are. It doesn't matter how good these people think they are – the Bible makes it clear they are adulterous, thieving murderers who need a Savior.

Monday, June 11, 2012

Evolution Only Happens By Definition


How many times have you heard that we “observe” evolution happening? When I say that evolution doesn't happen, I'm ridiculed for denying the obvious. Some say evolution occurs before our very eyes. Really? Do you mean we can see dinosaurs changing into birds? No. They don't mean that kind of evolution happens before our eyes. They simply mean that populations change. It's all a matter of definition. Consider some of these definitions of “evolution” given on the popular, evolutionist site, TalkOrigins (TO).
"In the broadest sense, evolution is merely change, and so is all-pervasive; galaxies, languages, and political systems all evolve. Biological evolution ... is change in the properties of populations of organisms that transcend the lifetime of a single individual. The ontogeny of an individual is not considered evolution; individual organisms do not evolve. The changes in populations that are considered evolutionary are those that are inheritable via the genetic material from one generation to the next. Biological evolution may be slight or substantial; it embraces everything from slight changes in the proportion of different alleles within a population (such as those determining blood types) to the successive alterations that led from the earliest protoorganism to snails, bees, giraffes, and dandelions."

That’s a fairly lengthy way of saying, “evolution is change.” When we see any change in a population, they say we are seeing “evolution.” Note that there is no qualifier about the kind of change - that is, no consideration is given if the change is adding any novel features to the population. “Evolution is change; change is evolution.” That's the sum of it. The same article goes on to say:
"In fact, evolution can be precisely defined as any change in the frequency of alleles within a gene pool from one generation to the next."

This is, by far, the most commonly accepted definition of evolution by secular biologists. As far as utility, it’s not a bad definition. It’s certainly objective. The problem is that it’s still just a clinical way of “evolution is change.”

There is still another definition offered in the same TO article:
"evolution: The gradual process by which the present diversity of plant and animal life arose from the earliest and most primitive organisms, which is believed to have been continuing for the past 3000 million years."

As far as I'm concerned, this is more like it. When the average person hears the word, “evolution,” he usually has something like this in mind. In the creation v. evolution debate, this is the point of contention that we are debating. But TO doesn’t like this definition. In fact, they condemn it in the strongest way:
This is inexcusable for a dictionary of science. Not only does this definition exclude prokaryotes, protozoa, and fungi, but it specifically includes a term "gradual process" which should not be part of the definition. More importantly the definition seems to refer more to the history of evolution than to evolution itself. Using this definition it is possible to debate whether evolution is still occurring.” [bold added for emphasis]
We can see what’s going on. Evolutionists don’t like this definition because it makes it harder for them to claim evolution is still occurring. It's a glaring example of equivocation where evolutionists can point to one kind of “change” (which everyone will agree happens) and claim it's the same change that turns molecules into men (which no one has ever seen happen). They equivocate intentionally; they admit it here. They are glad for the overly broad meaning of the word because it allows them to use any example of change as evidence for their theory.

Evolutionists engage in a game of semantics and seek to define words in their favor. They often chide creationists for not using words the same way they've defined them but it's only because we refuse to participate in their lies. We seek to make the meaning of certain terms more clear and their sole objective is to cloud the issue.

I've read their examples of “evolution” and I agree it's “change.” It's still not the kind of change that could turn a fish into a frog or an ape into a man. Evolution does not occur anywhere. It's never observed in spite of their many claims to have seen it. Their cited examples only qualify as “evolution” because of their equivocal use of the word.

Evolution only happens by definition.

Thursday, June 7, 2012

Trait Adding Mutations? I'll Show You Why More is Sometimes Less

I recently discussed why genetic mutations appearing in organisms isn't enough to rescue the theory of evolution. For a population to “evolve,” mutations would have to add traits that don't already exist in the population. There have been occasions where we have observed mutations that convey a benefit to its host, but in most of these examples, it's easy to see how traits are still being removed from the population. When we look only for examples of “trait-adding” mutations, the list of possible candidates quickly narrows. In this post, so called “trait-adding” mutations will be considered.

Before we begin, let me make a qualifier. As I've said repeatedly, there must be some mechanism that adds traits to a population for evolution to even be possible. Perhaps such mutations exist. Yet even if a convincing example of a trait-adding mutation is found, it still isn't automatic evidence that evolution is true. Consider too that, in spite of our “advanced” knowledge, there's a lot about DNA that we have yet to discover and we've genetically examined only a tiny fraction of the millions of species that are known to exist. We can hardly be sure whether some observed new feature is truly the result of mutation or if it is even “new.” Perhaps it was already present in the creature's DNA. Furthermore, evolution requires an endless parade of novel features. Trait-adding mutations should be the rule or, at the very least, be ordinary. As it stands now, such mutations could only be described as “scarce” or “non-existent.” In summary, trait-adding mutations aren't a fatal blow to creation; if they exist, they only serve to keep evolution in the running as a possible (though still unlikely) alternative.

When considering mutations, it is frustratingly difficult to define “novel” features. I can appreciate how the lack of a clear meaning of words clouds a discussion and I wish I could produce a concrete, objective definition. I can't. Some creationists use the term, “new genetic information” but I've found that term clouds the discussion even further. “Information” has a technical meaning that, ironically, is too broad to be useful here. From a statistical perspective, simply rearranging the letters “JYIL” to “YLIJ” creates new information even though there are no new letters. If we applied that analogy to evolution, we would see that simply rearranging already existing letters does not explain the origin of the letters.

To determine if a mutation is “adding” anything to its host, I've found it best to examine how the mutation conveys a benefit. In my post about blind cave fish, fish being born without eyes is an obvious example of losing a trait. Along those same lines, there are elephants in Africa being born without tusks. Ivory poachers will shoot elephants for their tusks. Due to a mutation, some elephants are born without tusks and the poachers don't shoot them. Therefore, the tusk-less elephants live to reproduce and pass on the tusk-less trait. This is another obvious example of how a mutation can convey a benefit but still not add anything.

Sometimes, mutations cause a loss of function. A defining characteristic of mammals is that they nurse their young. New born mammals have an enzyme in their small intestines that helps them digest milk. About the time of weaning, the enzyme “turns off,” making most adult mammals lactose intolerant. In some instances, though, as seen in many humans, the enzyme fails to turn off which allows the person to continue drinking milk. So the ability for adult humans to continue drinking milk may be “novel” in one sense but it's still the result of the enzyme failing to turn off at the appropriate time. It is a loss of function.

Other mutations sometimes cited as examples of new features involve the duplication or overproduction of already existing traits. A widely known example of this is that sometimes people are born with six fingers on one hand. This may not convey any benefit but it is sometimes cited as an example of a trait-adding mutation. However, extra fingers on a creature that already has fingers doesn't explain the origin of fingers. I would be more impressed if I saw fingers evolve on a snake.

In 1884, Jo Jo the Dog Faced Boy joined to tour with PT Barnum. Jo Jo (his real name was Fedor Jeftichew) suffered from a medical condition known as hypertrichosis which causes the overproduction of hair. Sometimes, overproducing something could convey a benefit. The overproduction of something like pigment could make an animal darker and better camouflaged. However, it's still the overproduction of something that already exists in the animal. “More pigment” isn't novel in an animal that already has pigment.

When I ask evolutionists for examples of truly novel features added through mutation, I overwhelming hear the same three examples: 1) antibiotic resistant bacteria, 2) pesticide resistant insects, and 3) nylon digesting bacteria. Let's look at these in light of what we've already discussed.

In the case of the first two items (resistant bacteria and insects), one must first ask if the critters “acquired” resistance or were they already resistant? Scientists have recently discovered bacteria in a cave dated by evolutionists to be 4,000,000 years old. When tested, the bacteria were found to already be resistant to modern medicine! To quote the article:

The cave, which is coated in the ancient bacteria, has never encountered modern medicine. Amazingly, these bacteria can still fight off different kinds of antibiotics, including synthetic drugs.... 93 types of bacteria found in the cave were tested against 26 different antibiotics. Seventy percent were able to resist three or four kinds of antibiotics. Three anthrax-related bacteria resisted 14 different types of antibiotics. The results suggest that drug resistance is at least millions of years old and not a man-made phenomenon.”

Obviously, the bacteria are not “evolving” resistance to drugs but have always been resistant. How then could drug resistance be considered “novel”? And if drug resistance isn't necessarily novel in bacteria, perhaps the same thing is true for insects. Unfortunately, we cannot test the insects that lived (supposedly) millions of years ago to see if they were already pesticide resistant.

For the sake of argument, let's suppose that these creatures only recently “evolved” resistance. What has changed in them to accomplish this? Antibiotics work by binding with bacteria which disrupts the function of an important protein and prevents the bacteria from reproducing. It's possible for a mutation to prevent the antibiotic from binding with the bacteria, thus making the bacteria resistant. This doesn't necessarily mean there is a gain of features. Consider how handcuffs are used to subdue criminals. If, because of a mutation, a suspect had no arms, the police could not cuff him. So even though the suspect is “resistant” to handcuffs, it still represents a loss of traits.

Finally, there is the example of nylon digesting bacteria. As in the other examples, we cannot rule out the possibility that this feature isn't novel but has always existed – heretofore unobserved. Setting aside that possibility, we can again speculate about what mutation could introduce this “new” ability. In digestion, enzymes help us break down certain substances. We discussed above how infant mammals have an enzyme that allows them to digest milk. Enzymes are specialized and normally only work on specific substances. However, in the case of nylon digesting bacteria, a certain enzyme in the bacteria has lost its specificity and will break down other substances. Here's an analogy to help visualize this: imagine that I designed a machine that pulls weeds in my garden. It's only supposed to pull weeds but the machine becomes broken and no longer recognize weeds. Eventually it starts pulling my flowers too. Some could say the machine has acquired the ability to pull flowers but the reality is that the machine is broken and doesn't function as well as when it was built.

Let me pause here and remind you that feature-adding mutations must occur with some frequency for evolution to be possible. Three examples, no matter how often they are trumpeted, cannot be stretched to demonstrate that trait-adding change is commonplace.

I could say a lot more about each of these but this series has gone on long enough. We can quibble over whether a feature can be called “new” or not but, all in all, none of these oft-cited examples are convincing. In each case, we cannot be sure the traits are even novel. What's more, even if the traits are novel and even if they are the result of mutations, they still likely represent a loss of function. Thus we can see how “more” is really “less.” If these represent the best examples of observed trait-adding evolution, how can anyone be convinced that molecules to man evolution is even possible



Further reading:

Tuesday, June 5, 2012

“Mutations” Make a Creature More Evolved?


In my last post, I pointed out that many of the things closely associated with evolution really have little to do with evolution. Things like natural selection, variation, and millions of years cannot work together to turn an amoeba into an aardvark nor a bacterium into a basset hound. For evolution to be possible, there must be a mechanism that can add novel traits to a population. Just think how many features someone would have to add to a single cell in order to make it a cephalopod.

Many evolutionists fail to grasp the concept that evolution demands organisms to acquire novel traits. In the most cited example of evolution ever to haunt biology books – the famous “peppered moth evolution” - I've often asked evolutionists to clarify what evolution has occurred in the moths. The usual response is to repeat the observations: the ratio of light/dark moths changed over time. I then ask, “How long would birds have to eat one color of moth in order to make new colors appear?” At this point, evolutionists usually resort to mutations but in nearly every instance, the significance of my question is lost on them. The significance is this: birds eating one color of moth (natural selection) will never add new colors to the population no matter how long it continues. Even millions of years is not enough.

When evolutionists trot out examples of “change” (natural selection) and say that “change” continuing for millions of years will cause a population to evolve into something else, they have not spoken one word that should convince anyone of their theory. It's not enough that something changes. It is only when something new is added to the moth that it could possibly become something that is not a moth. One lie often spoken by evolutionists is that microevolution (i.e. “any change”) + time = macroevolution. They give no consideration to the type of change nor do they care if any new trait is added.

By way of definition, mutations have been likened to “copying errors” or “mistakes” in DNA. All creatures have mutations in their DNA. In sexual reproduction, the offspring inherits a combination of both parents' DNA (including the parents' mistakes). The offspring will also have mistakes in their own DNA. The vast majority of these mutations are not expressed – that is, there is no observable manifestation of the mutation in the host. That's because the “good” DNA in one parent will often mask the mutations in the DNA of the other.

Expressed mutations are sometimes called “birth defects” (though not all birth defects are due to mutation) and can range in severity from having no deleterious effect to its host to gross deformities that are not compatible with life.

Every once in a while, an expressed mutation will convey some benefit to its host. One oft-cited example of a beneficial mutation is the blind cave fish. Blind cave fish are eyeless fish that are descended from seeing fish. At some point in the past, a group of fish were separated from the rest of population and thrust into the new environment of a cave. In a dark cave, having sight is not an advantage. However, while swimming around in a dark cave, a seeing fish might run into a wall and scratch its eye leading to a dangerous infection. In that environment, being born without eyes actually gives the blind fish an advantage so the mutation of being born without eyes eventually spread to the entire population of cave dwellers.

It is upon these types of changes – beneficial mutations – that evolutionists' hope rests. One of the many definitions of evolution is “descent with modification.” Through continuous mutations, skin can become a fold in the skin, which can become a scale, which can become a feather, which can turn a dinosaur into a bird. Mutation is the magic potion that could turn a frog into a prince. It is the ingredient missing from the formula “micro + time = macro.”

There are other observed examples of beneficial mutations. I hesitate to say there are “many” examples because many is a subjective term and I don't mean to imply that beneficial mutations are especially frequent. I might write about some other examples in the future because they are interesting but in the blind fish example (as well as in the others), traits are still being removed from the population. Therefore, even in the case of the blind cave fish, I still refuse to identify the change as “evolution” (micro- or otherwise) since no traits are added to the population. Mutations that cause a fish to be born without eyes does not support the idea that a bacterium could evolve to be a bass or bluegill. I would be more apt to believe evolution if it theorized that fish lost their eyes, fins, scales, gills, etc., and eventually became bacteria!

What's also bad news for evolution is that the blind fish may be specialized and better adapted to the dark cave, but they could not convincingly be called “more fit” overall. It's not like a shrew-like, mammalian ancestor evolving to become a cunning leopard. These fish could not compete with seeing fish if they were reintroduced into a lighted environment.

Examples of beneficial mutations are not enough to rescue the theory of evolution. For the theory to have legs, there still needs to be examples of mutations that actually add novel traits to a population (observed examples, please; not the imaginary skin-scale-feather told in the dino to bird story). And if evolution happens all the time (which I have been told ad nauseum) then examples of trait-adding mutations should abound. Well, show them to me!

When I ask for observed examples of mutations adding new features (or novel traits), some evos try to pin me down for a rigorous definition of a “novel trait.” I concede in advance that it's hard to give a rigorous definition. I'm tempted to say that I would know one when I see it but, of course, that's hardly satisfactory. Let's see: something like hair appearing on a reptile would be impressive. A blue dog might also persuade me, as per my last post. These would be spectacular examples but I'd settle for anything. Why not just show me some examples and we can discuss them. Why is it when I ask for such examples, I hear only the same three continuously?
  1. Bacteria that become resistant to antibiotics
  2. Insects that become resistant to pesticides
  3. Nylon digesting bacteria
I'm going to deal with these three examples in my next post. If I were an apologist for evolution, I would spend all of my time talking about trait-adding mutations because without them, evolution isn't even plausible. I suspect the reason I hear these same three repeated so often is because even questionable examples of trait-adding mutations are frighteningly scarce. I had intended to address them long ago because I hear them so often that I get tired of writing responses. When some evo cleverly repeats one of these tired examples, it would save me time to have a written response to which I can simply link him.

The video, “What Every Creation Must DENY,” lists beneficial mutations as something that creationists must deny. It's a straw man. Beneficial mutations, though infrequent, are real. They just don't deserve the importance given them by evolutionists. Evolutionists seem to treat “mutations” with the same regard as any “change” in a population. Any beneficial mutation is trumpeted as “evolution” because it fits their technical definition of the term. To them, beneficial mutations is the fuel that drives the engine of natural selection and they don't care if the mutations actually add anything to the population. And just as before, I remind you that removing traits from a population will never amount to evolution.



Further reading: