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营养物质和昆虫对穗花 Banksia 花序的损害对其坐果的影响。

The effect of nutrients and inflorescence damage by insects on fruit-set by Banksia spinulosa.

作者信息

Dugal Wallace D, O'Dowd Dennis J

机构信息

Department of Botany and Zoology, Monash University, 3168, Clayton, Victoria, Australia.

出版信息

Oecologia. 1989 Jun;79(4):482-488. doi: 10.1007/BF00378665.

Abstract

We examined the role of added macronutrients (N, P, and K) and prevention of damage to inflorescences (ovule/seed predation and rachis damage) by insects in determining levels of fruit-set in Banksia spinulosa at two sites in southeastern Australia. Insecticide application eliminated damage to developing inflorescences (primarily by the lepidopteran, Arotrophora canthelias) and application of macronutrient fertilizer significantly increased nutrient concentrations in leaves at both sites. Only joint application of nutrients and insecticide increased fruit-set per infructescence significantly above that of the control, indicating that the effect of nutrients on fruit-set depends on the intensity of insect damage to inflorescences. The proportion of inflorescences that developed fruits differed between sites and higher levels of rachis damage at one site may partially explain the lower proportion of inflorescences that fruited. Neither nutrient addition or inflorescence damage influenced the position of fruit-set within an infructescence. Our results suggest that (1) macronutrient availability and inflorescence damage interact in determining levels of fruitset in B. spinulosa, and (2) other factors, such as pollen or micronutrient availability, may limit it at some sites. These results highlight site-specific variation and interaction in the factors that limit plant reproduction.

摘要

我们研究了添加大量营养素(氮、磷和钾)以及防止昆虫对花序造成损害(胚珠/种子捕食和轴损伤)对澳大利亚东南部两个地点的多花班克木座果水平的影响。施用杀虫剂消除了对发育中花序的损害(主要由鳞翅目昆虫Arotrophora canthelias造成),并且在两个地点施用大量营养素肥料均显著提高了叶片中的养分浓度。只有同时施用营养素和杀虫剂,每个果序的座果率才显著高于对照,这表明养分对座果率的影响取决于昆虫对花序的损害强度。不同地点发育成果实的花序比例不同,一个地点较高的轴损伤水平可能部分解释了结果实的花序比例较低的原因。添加营养素或花序损伤均未影响果序内座果的位置。我们的结果表明:(1)大量营养素的可利用性和花序损伤在决定多花班克木的座果水平方面相互作用;(2)其他因素,如花粉或微量营养素的可利用性,可能在某些地点限制座果率。这些结果突出了限制植物繁殖的因素存在地点特异性差异和相互作用。

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