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多年生草本植物绢毛棘豆高山种群中碳水化合物的储存与利用

Carbohydrate storage and use in an alpine population of the perennial herb, Oxytropis sericea.

作者信息

Wyka Tomasz

机构信息

Division of Biological Sciences, 105 Tucker Hall, University of Missouri-Columbia, Columbia, MO 65211, USA e-mail:

出版信息

Oecologia. 1999 Aug;120(2):198-208. doi: 10.1007/s004420050849.

Abstract

I tested hypotheses for ecological roles of storage carbohydrates in perennating organs (roots and branches) of alpine Oxytropis sericea, a leguminous herb. In naturally growing plants, total nonstructural carbohydrates achieved their maximal concentration in the fall, declined during winter, and reached minimal levels immediately after growth initiation in the spring. Experimental manipulation of carbon sink-source relations through shading of leaves of reproductive plants revealed that the normally unused portion of these carbohydrates is largely available for withdrawal. In another experiment, plants subjected to carbohydrate depletion through shading suffered decreased leaf growth after winter dormancy and had a lower probability of flowering and decreased inflorescence biomass. The dependence of reproductive growth on stored carbohydrates, however, was limited to its initial stages, because accumulation of storage carbohydrates occurred simultaneously with inflorescence expansion, flowering, and fruiting. Moreover, the whole-plant photosynthetic rate, estimated from gas exchange measurements also peaked at the time of inflorescence growth. To address whether stored reserves allow compensatory regrowth following defoliation, plants were subjected to experimental removal of leaves and inflorescences. Defoliated O. sericea partly regrew the lost leaves but withdrawal of stored carbohydrates was limited. Similarly, in a second defoliation experiment where infructescences were left intact, the plants used little stored carbohydrate and only partly compensated for fruit growth. However, carbohydrate accumulation was negatively affected by defoliation. While the ecological importance of stored nonstructural carbohydrates cannot be attributed to any function in isolation, winter respiration, leaf regrowth after winter, and early reproductive growth in O. sericea all depend to a significant extent on stored reserves. Maintaining a large storage pool may protect these functions in years when carbon status is less favorable than during this study.

摘要

我对豆科草本植物高山绢毛棘豆多年生器官(根和枝条)中储存碳水化合物的生态作用进行了假设检验。在自然生长的植物中,总非结构性碳水化合物在秋季达到最高浓度,冬季下降,并在春季生长开始后立即达到最低水平。通过对生殖植物叶片进行遮荫来实验性地操纵碳源 - 库关系,结果表明这些碳水化合物通常未被利用的部分在很大程度上可供调用。在另一个实验中,通过遮荫使碳水化合物耗尽的植物在冬季休眠后叶片生长减少,开花概率降低,花序生物量减少。然而,生殖生长对储存碳水化合物的依赖仅限于其初始阶段,因为储存碳水化合物的积累与花序扩展、开花和结果同时发生。此外,根据气体交换测量估算的全株光合速率在花序生长时也达到峰值。为了探究储存储备是否能使植物在落叶后进行补偿性再生长,对植物进行了叶片和花序的实验性去除。去叶的高山绢毛棘豆部分重新长出了失去的叶子,但储存碳水化合物的调用有限。同样,在第二个去叶实验中,果实保持完整,植物很少利用储存的碳水化合物,仅部分补偿了果实生长。然而,去叶对碳水化合物积累有负面影响。虽然储存的非结构性碳水化合物的生态重要性不能孤立地归因于任何一项功能,但高山绢毛棘豆的冬季呼吸、冬季后的叶片再生长以及早期生殖生长在很大程度上都依赖于储存储备。在碳状况比本研究期间更不利的年份,维持大量的储存库可能会保护这些功能。

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