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Theoretical aspects of surface-to-volume ratios and water-storage capacities of succulent shoots

机译:肉质芽表面体积比和蓄水量的理论方面

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Surface-to-volume (S/V) ratios of drought-adapted plants affect transpiration, photosynthesis, and water-storage capacity. The S/V ratio of cladodes and flat leaves is S/V = 2/T, where T is thickness: even slight thickening greatly reduces S/V. During rain/drought cycles succulent stems swell and shrink without tearing by having flexible ribs, but ribs increase S/V above that of a smooth cylindrical stem with equal volume: the increased surface area is Sribbed/Scylindrical = N/), where N is number of ribs and x is rib height relative to the radius of the inner stem. Numerous low ribs provide moderate expandability (storage volume) with little increase in S/V and are adaptive where droughts are short. Tall ribs provide greater expandability but greatly increase S/V and probably are adaptive only in mesic habitats. Having ~8–15 ribs, each about as tall as the inner stem radius, provides large storage capacity and intermediate increase in S/V. By increasing absolute size, S/V is reduced so greatly that even large ribs can have an S/V smaller than that of a narrow cylindrical or spherical stem with less volume.
机译:适应干旱的植物的表面体积比(S / V)影响 蒸腾作用,光合作用和蓄水能力。枝叶和扁叶的 S / V比为S / V = 2 / T,其中T 是厚度:即使略微增厚也会大大降低S / V。在 雨水/干旱周期中,肉质茎膨胀并收缩,而没有 ,其具有柔性肋,但肋使S / V高于 光滑圆柱体等体积的茎:增加的 表面积为S ribbed / S cylindrical = N /),其中N为肋骨数,x为肋骨高度 相对于内部茎的半径。许多低肋骨 提供了适度的可扩展性(存储量),而S / V几乎没有增加,并且在干旱短时也很适应。高大的 肋骨可提供更大的扩展性,但极大地提高了S / V ,并且可能仅在中生生境中具有适应性。具有〜8–15 肋骨,每个肋骨的高度大约等于内茎半径,可提供 大的存储容量,并在中间增加S / V。通过 增大绝对尺寸,S / V大大降低,以至于 大肋骨的S / V可能小于窄圆柱 的S / V。或球形茎,体积较小。

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