By Hall E. H.
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Submit yr observe: First released April twenty eighth 1989
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Additional info for A Possible Function of the Ions in the Electric Conductivity of Metals(en)(9s)
Barlow Four types of meristem are found in higher plants: apical, intercalary, cambial, and diffuse. All of them participate in either the longitudinal or latitudinal growth of organs; hence all contribute to the size and complexity of plants. Because the apical meristems are sites of morphogenetic process, they contribute most directly to the specification of plant form. An important aspect of apical meristems is their repetitive activity. At the level of their constituent cells, mitosis repeats at approximately daily intervals to result in new cells.
Since these sites yield only locally to the other system, and moreover do so at intercalary and not at terminal positions, roots and shoots should be regarded as two independent categories of modular systems that may nevertheless be physiologically interdependent. Metamers and Meristems Shoot Apices Externally, shoot apices differ greatly in their shape and size as well as in the arrangement and sequence of the leaf primordia that they form (Clowes 1961). Some of these features may be interrelated: for example, experimentally induced alterations to the curvature of the apex can lead to changes in the vertical spacing and phyllotaxy of the primordia (Schwabe 1971).
1977. Ontogenetic size variation of sieve tube elements in Prosopis spicigera L. Bull. Soc. Bot. Fr. 124:445450. 1979. Anatomical changes in Prosopis spicigera with growing girth of stem. Phytomorphology 29:204211. Page 13 . 1982. Comparative bark features of arid zone species of Acacia and Prosopis. Phytomorphology 32:373380. 1983. An analytical study on cell size variation in some arid zone trees of India: Acacia nilotica and Prosopis spicigera. IAWA Bull. ) 4:4652. 1985. Cell events of radial growth with special reference to cambium of tropical trees.
A Possible Function of the Ions in the Electric Conductivity of Metals(en)(9s) by Hall E. H.