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Seasonal patterns of carbon assimilation and allocation of a summer-green forest herb, Parasenecio auriculata (Senecioneae; Asteraceae)

机译:夏季绿色森林草本植物Parasenecio auriculata(Senecioneae; Asteraceae)的碳同化和分配的季节性模式

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摘要

Summer-green herbs inhabiting deciduous forests often put out aerial shoots under bright conditions before tree-canopy closure and grow until late summer under the closed canopy. Some of them produce leaves continuously even after the initiation of canopy closure, indicating an exploitation of the low light period. The manner of carbon assimilation during bright and shade periods within a growth season should reflect the seasonal patterns of vegetative growth and reproductive allocation of individual species. We examined the seasonal patterns of assimilation, partitioning of photosynthate between reproduction and storage, and the budget of reproduction of a perennial understory herb, Parasenecio auriculata. Although photosynthetic rates per unit leaf area decreased with the seasonal reduction in light level, net assimilation at the whole-plant level was maintained at a high level even after canopy closure owing to the increase in the total leaf area. Stored resource in tubers contributed to the rapid development of aerial shoots in the early season, and annual tuber growth was completed before flowering. Instant photosynthetic products considerably contributed to the maintenance of flowers but not to fruit development because of low assimilation rate during fruiting. These findings indicated that carbon assimilation during flowering contributes to sexual reproduction without influencing the development of storage organs. Stable carbon assimilation over summer by shade-acclimatized leaves enabled the maintenance of high productivity associated with high sexual reproduction.
机译:居住在落叶林中的夏季绿色草药通常在树冠封闭之前在明亮的条件下放出空中芽,并在封闭的树冠下生长直至夏末。它们中的一些即使在天篷关闭开始后仍连续不断地产生叶子,表明对弱光期的利用。在生长季节的明暗时期,碳同化的方式应反映单个物种营养生长和繁殖分配的季节性模式。我们研究了同化的季节性模式,光合产物在繁殖和储存之间的分配以及多年生林下草本植物Parasenecio auriculata的繁殖预算。尽管每单位叶面积的光合速率随光照水平的季节性降低而降低,但由于总叶面积的增加,即使在封盖后,整个植物水平的净同化也保持在较高水平。块茎中储存的资源促进了空中芽在早期的快速生长,并且块茎的年生长在开花前就已完成。即食的光合产物由于在结实期间的同化率较低,因此对维持花朵起到了很大的作用,但对水果的发育却没有贡献。这些发现表明,开花过程中的碳同化有助于有性生殖,而不影响贮藏器官的发育。夏季通过阴凉适应的叶子稳定地吸收了碳,从而能够维持与高性繁殖相关的高生产力。

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