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南瓜叶片发育和韧皮部运输:碳经济。

Leaf development and phloem transport in Cucurbita pepo: Carbon economy.

机构信息

Department of Biology, Carleton University, K1S 5B6, Ottawa, Ontario, Canada.

出版信息

Planta. 1975 Jan;123(1):53-62. doi: 10.1007/BF00388060.

Abstract

Net photosynthesis, dark respiration and growth for leaf 5 of Cucurbita pepo L. plants grown under controlled conditions were measured and the data used for an assessment of the changes in carbon balance during growth of the leaf through expansion to maturity. The blade is first capable of net CO2 fixation when ca. 8% expanded but the initial rapid growth during this period is sustained almost entirely through imported nutrients. When the growth rate starts to decline rapidly the net photosynthetic capacity of the blade begins to increase. This increase is accompanied by an expansion of the intercellular spaces and by decreasing dark respiration measured at night and in dark periods during the day. The blade becomes completely independent of phloem imported nutrients and begins to export excess photosynthate when the phase of rapid decrease in relative growth rate is almost complete at about 45% expansion. Maximum net photosynthesis of ca. 11 mg CO2 h(-1) dm(-2) is achieved at 70% expansion. The first detectable synthesis of the transport sugars stachyose and raffinose in the blade coincides with the beginning of intralaminar phloem transport from the tip to the base of the leaf. The synthesis of sucrose, the other major transport sugar, is detectable at all stages of leaf development.

摘要

在控制条件下生长的南瓜(Cucurbita pepo L.)植株的第 5 片叶子的净光合作用、暗呼吸和生长情况进行了测量,并将数据用于评估叶片在扩展到成熟过程中的碳平衡变化。叶片在大约扩展 8%时首次能够进行净 CO2 固定,但在此期间的初始快速生长几乎完全依赖于输入的养分。当生长速率开始迅速下降时,叶片的净光合能力开始增加。这种增加伴随着细胞间隙的扩张,以及夜间和白天黑暗期测量的暗呼吸的减少。当相对生长速率快速下降的阶段几乎完全完成(约 45%的扩展)时,叶片完全独立于韧皮部输入的养分,并开始输出多余的光合产物。在扩展 70%时,叶片的净光合速率达到约 11mgCO2h(-1)dm(-2)的最大值。在叶片内从顶端到基部的层间韧皮部运输开始时,可首次检测到运输糖棉子糖和水苏糖的合成。蔗糖,另一种主要的运输糖,在叶片发育的所有阶段都可检测到。

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