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沙漠生境中细裂马先蒿(菊科)的生活史特征。

Life cycle characteristics of Machaeranthera gracilis (Compositae) in desert habitats.

作者信息

Monson Russell K, Szarek Stan R

机构信息

Department of Botany and Microbiology, Arizona State University, 85281, Tempe, Arizona, USA.

出版信息

Oecologia. 1981 May;49(1):50-55. doi: 10.1007/BF00376897.

Abstract

Plant population dynamics and life cycle characteristics are presented for two genetically related, yet ecologically distinct, chromosomal races of Machaeranthera gracilis (Nutt.) Shinners. Seedling mortality was very high for a field population of the desert race (n=2) as only 8% of the maximum number of seedlings produced did survive to the period of peak reproduction. Lower mortality occurred in the foothills race (n=4) as 15% of the maximum number of seedlings produced did survive until the period of peak reproduction. The desert race also exhibited the capacity to assume the perennial growth habit. Perennial plants of the desert race produced 4.4 heads/plant (116 heads/m) versus 0.2 heads/plant (4 heads/m) for annual plants of the desert race under field conditions. Annual plants of the foothills race produced 2.7 heads/plant (75 heads/m). The perennial habit did not occur in field populations of the foothills race. When grown in identical glasshouse conditions the desert race reached anthesis of the first four flower heads ca. 25 days prior to the foothills race. This acceleration to anthesis was accompanied by a greater potential reproductive allocation. The latter response was due in part to greater biomass allocation to reproductive structures at the expense of vegetative structures, and the uncoupling of net photosynthesis from phenological events.

摘要

本文介绍了细叶马氏菊(Machaeranthera gracilis (Nutt.) Shinners)两个遗传相关但生态不同的染色体变种的种群动态和生命周期特征。对于沙漠变种的一个田间种群(n = 2),幼苗死亡率非常高,因为所产生的幼苗最大数量中只有8%存活到繁殖高峰期。山麓变种(n = 4)的死亡率较低,所产生的幼苗最大数量中有15%存活到繁殖高峰期。沙漠变种还表现出具有多年生生长习性的能力。在田间条件下,沙漠变种的多年生植株每株产生4.4个花头(每平方米116个花头),而沙漠变种的一年生植株每株产生0.2个花头(每平方米4个花头)。山麓变种的田间种群中未出现多年生习性。在相同的温室条件下生长时,沙漠变种比山麓变种提前约25天达到前四个花头的花期。这种花期提前伴随着更大的潜在繁殖分配。后一种反应部分是由于以营养结构为代价,将更多生物量分配给繁殖结构,以及净光合作用与物候事件的解耦。

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