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      Successive cambia revisited: ontogeny, histology, diversity, and functional significance

      The Journal of the Torrey Botanical Society
      Torrey Botanical Society

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          Do xylem fibers affect vessel cavitation resistance?

          Possible mechanical and hydraulic costs to increased cavitation resistance were examined among six co-occurring species of chaparral shrubs in southern California. We measured cavitation resistance (xylem pressure at 50% loss of hydraulic conductivity), seasonal low pressure potential (P(min)), xylem conductive efficiency (specific conductivity), mechanical strength of stems (modulus of elasticity and modulus of rupture), and xylem density. At the cellular level, we measured vessel and fiber wall thickness and lumen diameter, transverse fiber wall and total lumen area, and estimated vessel implosion resistance using (t/b)(h)(2), where t is the thickness of adjoining vessel walls and b is the vessel lumen diameter. Increased cavitation resistance was correlated with increased mechanical strength (r(2) = 0.74 and 0.76 for modulus of elasticity and modulus of rupture, respectively), xylem density (r(2) = 0.88), and P(min) (r(2) = 0.96). In contrast, cavitation resistance and P(min) were not correlated with decreased specific conductivity, suggesting no tradeoff between these traits. At the cellular level, increased cavitation resistance was correlated with increased (t/b)(h)(2) (r(2) = 0.95), increased transverse fiber wall area (r(2) = 0.89), and decreased fiber lumen area (r(2) = 0.76). To our knowledge, the correlation between cavitation resistance and fiber wall area has not been shown previously and suggests a mechanical role for fibers in cavitation resistance. Fiber efficacy in prevention of vessel implosion, defined as inward bending or collapse of vessels, is discussed.
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            Conduit diameter and drought-induced embolism in Salvia mellifera Greene (Labiatae)

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              Size Variation in Tracheary Cells: I. A Comparison between the Secondary Xylems of Vascular Cryptogams, Gymnosperms and Angiosperms

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                Author and article information

                Journal
                The Journal of the Torrey Botanical Society
                The Journal of the Torrey Botanical Society
                Torrey Botanical Society
                1095-5674
                April 2007
                April 2007
                : 134
                : 2
                : 301-332
                Article
                10.3159/1095-5674(2007)134[301:SCROHD]2.0.CO;2
                c8724e4a-a2de-4415-8d8c-82e66275b813
                © 2007
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