22–1 Introduction to Plants

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22–1 Introduction to Plants Photo Credit: © Terry Donnelly/Dembinsky Photo Associates Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall What Is a Plant? What Is a Plant? The oldest fossil evidence of plants dates from about 450 million years ago. Plants are multicellular eukaryotes that have cell walls made of cellulose. Plants develop from multicellular embryos and carry out photosynthesis using the green pigments chlorophyll a and b. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall What Is a Plant? Plants include trees, shrubs, and grasses, as well as other organisms, such as mosses and ferns. Most plants are autotrophs, although a few are parasites or saprobes that live on decaying materials. With few exceptions, plants do NOT gather food, move about freely, struggle directly with predators, run away from danger, or strike a blow in defense. They have been known as “stationary animals that eat sunlight.” Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall The Plant Life Cycle The Plant Life Cycle Plant life cycles have two alternating phases, a diploid (2N) phase and a haploid (N) phase, known as alternation of generations. During the two phases of the life cycle, mitosis and meiosis alternate to produce the two types of reproductive cells— gametes and spores. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall The Plant Life Cycle The diploid (2N) phase is called the sporophyte, or spore-producing plant. The haploid (N) phase is called the gametophyte, or gamete-producing plant. Plant spores are haploid (N) reproductive cells formed in the sporophyte by meiosis. The spores can grow into new organisms called gametophytes. A gamete is a reproductive cell produced by mitosis, and it can fuse with another gamete to produce the sporophyte. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall The Plant Life Cycle The earliest plants, mosses and ferns, require water to reproduce. Seed plants can carry out reproduction without water. Many plants also have forms of vegetative, or asexual, reproduction. Copyright Pearson Prentice Hall

What Plants Need to Survive sunlight water and minerals gas exchange transport of water and nutrients throughout the plant Copyright Pearson Prentice Hall

What Plants Need to Survive Sunlight Plants use energy from sunlight to carry out photosynthesis. Every plant displays adaptations shaped by the need to gather sunlight. Photosynthetic organs such as leaves are broad and flat to maximize light absorption. Copyright Pearson Prentice Hall

What Plants Need to Survive Water and Minerals All cells require a constant supply of water. Water is used up quickly when the sun is shining as it is one of the raw materials used in photosynthesis. As a result, plants have structures that limit water loss. As plants absorb water, they also absorb minerals. Minerals are nutrients in the soil that are needed for plant growth. Copyright Pearson Prentice Hall

What Plants Need to Survive Gas Exchange Plants require oxygen to support cellular respiration as well as carbon dioxide to carry out photosynthesis. They must exchange these gases with the atmosphere without losing excessive amounts of water through evaporation. Copyright Pearson Prentice Hall

What Plants Need to Survive Movement of Water and Nutrients Plants take up water and minerals through their roots, but they make food in their leaves. Most plants have specialized tissues that carry water and nutrients from the soil and distribute products of photosynthesis throughout the plant body. Simpler plants carry out these functions by diffusion. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall Early Plants Early Plants When plants first appeared, life on Earth changed. As plants colonized the land, they changed the environment so other organisms could develop. New ecosystems arose, and organic matter began to form soil. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall Early Plants The first plants evolved from an organism similar to the multicellular green algae living today. Multicellular green algae have the size, color, and appearance of plants. They have reproductive cycles similar to those of plants. Green algae also have cell walls and photosynthetic pigments that are identical to those of plants. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall Early Plants The First Plants DNA sequences confirm that plants are closely related to certain groups of green algae, suggesting that the ancestors of the first plants were indeed algae. The oldest known plant fossils, about 450 million years old, are similar to today’s mosses. They had a simple structure and grew close to the ground. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall Early Plants Fossils suggest that the first plants needed water to complete their life cycles. The demands of life on land favored the evolution of plants that were: more resistant to the drying rays of the sun. more capable of conserving water. more capable of reproducing without water. Copyright Pearson Prentice Hall

Copyright Pearson Prentice Hall Early Plants From these plants, several major groups of plants evolved. One group developed into the mosses and their relatives. Another group gave rise to all other plants: ferns, conifers, and flowering plants. All plants have evolved different adaptations for a variety of terrestrial environments. Copyright Pearson Prentice Hall

Overview of the Plant Kingdom Plants are divided into four groups based on: water-conducting tissues seeds flowers Plants are also classified by other features, including reproductive structures and body plan. Copyright Pearson Prentice Hall

Overview of the Plant Kingdom Evolutionary Relationships Among Plants Flowering plants Cone-bearing plants Ferns and their relatives Flowers; Seeds enclosed in fruit Mosses and their relatives This cladogram shows the evolutionary relationships among the various groups of plants. The four main groups of living plants are mosses and their relatives, ferns and their relatives, cone-bearing plants, and flowering plants. Seeds Water-conducting (vascular) tissue Green algae ancestor Copyright Pearson Prentice Hall

Overview of the Plant Kingdom Today, scientists can classify plants more precisely by comparing the DNA sequences of various species. Since 1994, the “Deep Green” project has provided strong evidence that the first plants evolved from green algae living in fresh water, not the sea as had been thought previously. Copyright Pearson Prentice Hall