Gymnosperms are Seed Plants
Gymnosperms have seeds but not fruits or flowers. Gymnos means naked, sperm means seed: thus the term gymnosperm = naked seeds. Gymnosperms developed during the Paleozoic Era and became the dominant seed plant group during the early Mesozoic Era, as shown in Figure 1. The ancestors of gymnosperms were some now-extinct type of heterosporous fern or related group. There are 700 living species of gymnosperms placed into four divisions: conifers (such as pines and spruce), cycads (such as the sago palm, Cycas revoluta), ginkgos (the maidenhair tree, Ginkgo biloba), and gnetophytes (such as Mormon tea, Ephedra).
Label: biological, divesity, plants, seed
BIOLOGICAL DIVERSITY: NONVASCULAR PLANTS AND NONSEED VASCULAR PLANTS
The plant kingdom contains multicellular phototrophs that usually live on land. The earliest plant fossils are from terrestrial deposits, although some plants have since returned to the water. All plant cells have a cell wall containing the carbohydrate cellulose, and often have plastids in their cytoplasm. The plant life cycle has an alternation between haploid (gametophyte) and diploid (sporophyte) generations. There are more than 300,000 living species of plants known, as well as an extensive fossil record.
Label: biological, diversity, nonvascular, plants, vascular
Biological Diversity and Classification
Taxonomy is that branch of biology dealing with the identification and naming of organisms. The ancient Greek philosopher Aristotle apparently began the discussion on taxonomy. British naturalist John Ray is credited with revising the concept of naming and describing organisms. During the 1700s, Swedish botanist Carolus Linneus classified all then-known organisms into two large groups: the kingdoms Plantae and Animalia. Robert Whittaker in 1969 proposed five kingdoms: Plantae, Animalia, Fungi, Protista, and Monera. Other schemes involving an even greater number of kingdoms have lately been proposed, however most biologists employ Whittaker's five kingdoms. Recent studies suggest that three domains be employed: Archaea, Bacteria, and Eukarya.
Label: animals, biological, classification, diversity, fungi, plantae, protista
The Nature of ATP
Adenosine triphosphate (ATP), the energy currency or coin of the cell pictured in Figfures 1 and 2, transfers energy from chemical bonds to endergonic (energy absorbing) reactions within the cell. Structurally, ATP consists of the adenine nucleotide (ribose sugar, adenine base, and phosphate group, PO4-2) plus two other phosphate groups.
Energy is stored in the covalent bonds between phosphates, with the greatest amount of energy (approximately 7 kcal/mole) in the bond between the second and third phosphate groups. This covalent bond is known as a pyrophosphate bond.
We can write the chemical reaction for the formation of ATP as:
a) in chemicalese: ADP + Pi + energy ----> ATP
b) in English: Adenosine diphosphate + inorganic Phosphate + energy produces Adenosine Triphosphate
The chemical formula for the expenditure/release of ATP energy can be written as:
a) in chemicalese: ATP ----> ADP + energy + Pi
b) in English Adenosine Triphosphate produces Adenosine diphosphate + energy + inorganic Phosphate
Label: ATP, biological, Energi, fosforilasi
BIOLOGICAL DIVERSITY: CLASSIFICATION
Taxonomy is that branch of biology dealing with the identification and naming of organisms. The ancient Greek philosopher Aristotle apparently began the discussion on taxonomy. British naturalist John Ray is credited with revising the concept of naming and describing organisms. During the 1700s, Swedish botanist Carolus Linneus classified all then-known organisms into two large groups: the kingdoms Plantae and Animalia. Robert Whittaker in 1969 proposed five kingdoms: Plantae, Animalia, Fungi, Protista, and Monera. Other schemes involving an even greater number of kingdoms have lately been proposed, however most biologists employ Whittaker's five kingdoms. Recent studies suggest that three domains be employed: Archaea, Bacteria, and Eukarya.
Linneus attempted to pigeon-hole (or classify) all known species of his time (1753). Linnean hierarchical classification was based on the premise that the species was the smallest unit, and that each species (or taxon) nested within a higher category.
Linneus also developed the concept of binomial nomenclature, whereby scientists speaking and writing different languages could communicate clearly. For example Man in English is Hombre in Spanish, Herr in German, Ren in Chinese, and Homo in Latin. Linneus settled on Latin, which was the language of learned men at that time. If a scientist refers today to Homo, all scientists know what organism/taxon he or she means.
Label: animals, biological, classification, diversity, fungi, linnaeus, monera, plantae, protista
