1.9: Essential Elements for Life (2024)

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    • 1.9: Essential Elements for Life (1)
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    Of the approximately 115 elements known, only the 19 highlighted in purple in Figure \(\PageIndex{1}\) are absolutely required in the human diet. These elements—called essential elements—are restricted to the first four rows of the periodic table, with only two or three exceptions (molybdenum, iodine, and possibly tin in the fifth row). Some other elements are essential for specific organisms. For example, boron is required for the growth of certain plants, bromine is widely distributed in marine organisms, and tungsten is necessary for some microorganisms.

    1.9: Essential Elements for Life (2)

    What makes an element “essential”? By definition, an essential element is one that is required for life and whose absence results in death. Because of the experimental difficulties involved in producing deficiencies severe enough to cause death, especially for elements that are required in very low concentrations in the diet, a somewhat broader definition is generally used. An element is considered to be essential if a deficiency consistently causes abnormal development or functioning and if dietary supplementation of that element—and only that element—prevents this adverse effect. Scientists determine whether an element is essential by raising rats, chicks, and other animals on a synthetic diet that has been carefully analyzed and supplemented with acceptable levels of all elements except the element of interest (E). Ultraclean environments, in which plastic cages are used and dust from the air is carefully removed, minimize inadvertent contamination. If the animals grow normally on a diet that is as low as possible in E, then either E is not an essential element or the diet is not yet below the minimum required concentration. If the animals do not grow normally on a low-E diet, then their diets are supplemented with E until a level is reached at which the animals grow normally. This level is the minimum required intake of element E.

    Classification of the Essential Elements

    The approximate elemental composition of a healthy 70.0 kg (154 lb) adult human is listed in Table \(\PageIndex{1}\). Note that most living matter consists primarily of the so-called bulk elements: oxygen, carbon, hydrogen, nitrogen, and sulfur—the building blocks of the compounds that constitute our organs and muscles. These five elements also constitute the bulk of our diet; tens of grams per day are required for humans. Six other elements—sodium, magnesium, potassium, calcium, chlorine, and phosphorus—are often referred to as macrominerals because they provide essential ions in body fluids and form the major structural components of the body. In addition, phosphorus is a key constituent of both DNA and RNA: the genetic building blocks of living organisms. The six macrominerals are present in the body in somewhat smaller amounts than the bulk elements, so correspondingly lower levels are required in the diet. The remaining essential elements—called trace elements—are present in very small amounts, ranging from a few grams to a few milligrams in an adult human. Finally, measurable levels of some elements are found in humans but are not required for growth or good health. Examples are rubidium and strontium, whose chemistry is similar to that of the elements immediately above them in the periodic table (potassium and calcium, respectively, which are essential elements). Because the body’s mechanisms for extracting potassium and calcium from foods are not 100% selective, small amounts of rubidium and strontium, which have no known biological function, are absorbed.

    Table \(\PageIndex{1}\): Approximate Elemental Composition of a Typical 70 kg Human
    Bulk Elements (kg) Macrominerals (g)
    oxygen 44 calcium 1700
    carbon 12.6 phosphorus 680
    hydrogen 6.6 potassium 250
    nitrogen 1.8 chlorine 115
    sulfur 0.1 sodium 70
    magnesium 42
    Trace Elements (mg)
    iron 5000 lead 35
    silicon 3000 barium 21
    zinc 1750 molybdenum 14
    rubidium 360 boron 14
    copper 280 arsenic ~3
    strontium 280 cobalt ~3
    bromine 140 chromium ~3
    tin 140 nickel ~3
    manganese 70 selenium ~2
    iodine 70 lithium ~2
    aluminum 35 vanadium ~2

    The Trace Elements

    Because it is difficult to detect low levels of some essential elements, the trace elements were relatively slow to be recognized as essential. Iron was the first. In the 17th century, anemia was proved to be caused by an iron deficiency and often was cured by supplementing the diet with extracts of rusty nails. It was not until the 19th century, however, that trace amounts of iodine were found to eliminate goiter (an enlarged thyroid gland). This is why common table salt is “iodized”: a small amount of iodine is added. Copper was shown to be essential for humans in 1928, and manganese, zinc, and cobalt soon after that. Molybdenum was not known to be an essential element until 1953, and the need for chromium, selenium, vanadium, fluorine, and silicon was demonstrated only in the last 50 years. It seems likely that in the future other elements, possibly including tin, will be found to be essential at very low levels.

    Many compounds of trace elements, such as arsenic, selenium, and chromium, are toxic and can even cause cancer, yet these elements are identified as essential elements in Figure \(\PageIndex{1}\). In fact, there is some evidence that one bacterium has replaced phosphorus with arsenic, although the finding is controversial. This has opened up the possibility of a “shadow biosphere” on Earth in which life evolved from an as yet undetected common ancestor. How can elements toxic to life be essential? First, the toxicity of an element often depends on its chemical form—for example, only certain compounds of chromium are toxic, whereas others are used in mineral supplements. Second, as shown in Figure \(\PageIndex{2}\), every element has three possible levels of dietary intake: deficient, optimum, and toxic in order of increasing concentration in the diet. Very low intake levels lead to symptoms of deficiency. Over some range of higher intake levels, an organism is able to maintain its tissue concentrations of the element at a level that optimizes biological functions. Finally, at some higher intake level, the normal regulatory mechanisms are overloaded, causing toxic symptoms to appear. Each element has its own characteristic curve. Both the width of the plateau and the specific concentration corresponding to the center of the plateau region differ by as much as several orders of magnitude for different elements. In the adult human, for example, the recommended daily dietary intake is 10–18 mg of iron, 2–3 mg of copper, and less than 0.1 mg of chromium and selenium.

    1.9: Essential Elements for Life (3)

    Amplification

    How can elements that are present in such minuscule amounts have such large effects on an organism’s health? Our knowledge of the pathways by which each of the known trace elements affects health is far from complete, but certain general features are clear. The trace elements participate in an amplification mechanism; that is, they are essential components of larger biological molecules that are capable of interacting with or regulating the levels of relatively large amounts of other molecules. For example, vitamin B12 contains a single atom of cobalt, which is essential for its biological function. If the molecule whose level is controlled by the trace element can regulate the level of another molecule, and more and more molecules, then the potential exists for extreme amplification of small variations in the level of the trace element. One goal of modern chemical research is to elucidate in detail the roles of the essential elements. In subsequent chapters, we will introduce some results of this research to demonstrate the biological importance of many of the elements and their compounds.

    Summary

    About 19 of the approximately 115 known elements are essential for humans. An essential element is one whose absence results in abnormal biological function or development that is prevented by dietary supplementation with that element. Living organisms contain relatively large amounts of oxygen, carbon, hydrogen, nitrogen, and sulfur (these five elements are known as the bulk elements), along with sodium, magnesium, potassium, calcium, chlorine, and phosphorus (these six elements are known as macrominerals). The other essential elements are the trace elements, which are present in very small quantities. Dietary intakes of elements range from deficient to optimum to toxic with increasing quantities; the optimum levels differ greatly for the essential elements.

    1.9: Essential Elements for Life (2024)

    FAQs

    1.9: Essential Elements for Life? ›

    Living organisms contain relatively large amounts of oxygen, carbon, hydrogen, nitrogen, and sulfur (these five elements are known as the bulk elements), along with sodium, magnesium, potassium, calcium, chlorine, and phosphorus (these six elements are known as macrominerals).

    What 2 elements are necessary for life? ›

    Four of these elements (hydrogen, carbon, nitrogen, and oxygen) are essential to every living thing and collectively make up 99% of the mass of protoplasm. Phosphorus and sulfur are also common essential elements, essential to the structure of nucleic acids and amino acids, respectively.

    What is the number of elements essential for life? ›

    Scientists believe that about 25 of the known elements are essential to life. Just four of these – carbon (C), oxygen (O), hydrogen (H) and nitrogen (N) – make up about 96% of the human body. 25 elements are known to be essential to life.

    What are the 21 elements essential for life? ›

    2. What are the 21 elements essential for life? Calcium, carbon, chlorine, cobalt, copper, fluorine, hydrogen, iodine, iron, magnesium, manganese, molybdenum, nitrogen, oxygen, phosphorus, potassium, selenium, sodium, sulfur, and zinc are regarded as the 21 elements essential for life.

    What element is essential to life due to? ›

    Why is carbon so basic to life? The reason is carbon's ability to form stable bonds with many elements, including itself. This property allows carbon to form a huge variety of very large and complex molecules.

    What are the 5 major essential elements to life? ›

    1. Note that most living matter consists primarily of the so-called bulk elements: oxygen, carbon, hydrogen, nitrogen, and sulfur—the building blocks of the compounds that constitute our organs and muscles. These five elements also constitute the bulk of our diet; tens of grams per day are required for humans.

    What are the 7 main elements of life? ›

    The book covers what Grubbs refers to as "the seven elements of life." These include: physical, mental, family, financial, vocational, social, and spiritual health, which she believes can influence a person's quality of life.

    What is the most abundant element essential to life? ›

    Oxygen is the most abundant element contained within living organisms, composing about 65% of the whole-body mass. Oxygen's presence within the body is essentially stored in the form of water molecules, which is employed to supply the energy within the body needed to sustain life.

    What are the 4 most important elements for life? ›

    Elements of Life - Key takeaways

    All life forms are made up of matter, and all forms of matter are made up of varying combinations of elements. Four elements are common to all living things: carbon (C), hydrogen (H), oxygen (O), and nitrogen (N). These four elements alone make up approximately 96% of all living matter.

    What are the 4 basic elements of life? ›

    Elements of Life - Key takeaways

    Four elements are common to all living things: carbon (C), hydrogen (H), oxygen (O), and nitrogen (N). These four elements alone make up approximately 96% of all living matter.

    What are the spiritual elements? ›

    Central to this form of spiritual experience are the 5 elements — Earth, Fire, Air, Water and Spirit.

    What are the 5 elements of nature? ›

    Everything in nature is made up of five basic elements: earth, water, fire, air, and space. Knowledge of the five elements allows the yogi to understand the laws of nature and to use yoga to attain greater health, power, knowledge, wisdom and happiness. This arises out of deep intuition of how the universe operates.

    What is the most important element? ›

    Carbon is the most important element for living things. Since carbon has 4 valence electrons, it can form many bonds with itself and with other elements. These bonds create many molecules, many of which are used by living things.

    What are the 10 elements we use in our daily life? ›

    We use elements in everyday life. We are dependent on these elements for our survival. The most important examples of elements in everyday life are carbon, hydrogen, oxygen and apart from these chlorine, sulphur, calcium, iron, phosphorus, nitrogen, sodium, and potassium are also essential for everyday life.

    What are the six most essential elements for life? ›

    The six elements of life are Carbon, Hydrogen, Nitrogen, Oxygen, Phosphorus, and Sulfur. These elements are the six most common elements found in biomolecules or biological macromolecules.

    What is the most important thing to sustain life? ›

    1. Water. Almost all the processes that make up life on Earth can be broken down into chemical reactions - and most of those reactions require a liquid to break down substances so they can move and interact freely. Liquid water is an essential requirement for life on Earth because it functions as a solvent.

    What are the two most important elements? ›

    What are considered the earth's two most important elements are found in Group 4A. These are carbon (C) and silicon (Si). Carbon is the most essential chemical backbone that is found in all biologically significant molecules due to its unique ability to readily form bonds with other atoms.

    What are the 2 elements of Earth? ›

    The Periodic Table provides a framework in which to place the chemical elements so that their similarities are recognized. Look at the properties of Oxygen and Silicon - the two most abundant elements in the Earth's crust - by clicking on their symbols on the Periodic Table.

    What two elements sustain life on Earth? ›

    Answer and Explanation: The major elements from the periodic table that are needed to sustain life on Earth are carbon, oxygen, hydrogen and nitrogen.

    What are the 2 secondary elements of life? ›

    This allows life to take place and is why carbon is the most important bioelement. Other chemical elements are found in living things; however, they appear in smaller quantities. We refer to them as secondary bioelements. They are: calcium (Ca), sodium (Na), magnesium (Mg) and potassium (K).

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