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取食叶片和汁液的昆虫对一枝黄花光合速率的影响。

Effects of leaf and sap feeding insects on photosynthetic rates of goldenrod.

作者信息

Meyer Gretchen A, Whitlow Thomas H

机构信息

Section of Ecology and Systematics, Cornell University, 14853, Ithaca, NY, USA.

Department of Floriculture and Ornamental Horticulture, Cornell University, 14853, Ithaca, NY, USA.

出版信息

Oecologia. 1992 Dec;92(4):480-489. doi: 10.1007/BF00317839.

Abstract

Herbivory can alter the balance between sources and sinks within a plant, and changes in the source-sink ratio often lead to changes in plant photosynthetic rates. We investigated how feeding by three insect herbivores affected photosynthetic rates and growth of goldenrod (Solidago altissima). One, a phloem-sap feeding aphid (Uroleucon caligatum), creates an additional sink, and the other two, a leaf-chewing beetle (Trirhabda sp.) and a xylem-sap feeding spittlebug (Philaenus spumarius) both reduce source supply by decreasing leaf area. Plants were grown outside in large pots and insects were placed on them at predetermined densities, with undamaged plants included as controls. All insects were removed after a 12-day feeding period. We measured photosynthetic rates both of damaged leaves and of undamaged leaves that were produced after insect removal. Photosynthetic rates per unit area of damaged leaves were reduced by spittlebug feeding, but not by beetle or aphid feeding. Conductance of spittlebugdamaged leaves did not differ from controls, but internal carbon dioxide concentrations were increased. These results indicate that spittlebug feeding does not cause stomatal closure, but impairs fixation within the leaf. Effects of spittlebug feeding on photosynthetic rates persisted after the insects were removed from the plants. Photosynthetic rates per unit area of leaves produced after insect removal on spittlegug-damaged plants were lower than control levels, even though the measurements were taken 12 days after insect removal. The measurement leaf on spittlebugdamaged plants was reduced in area by 27% relative to the controls, but specific leaf area (leaf area/leaf weight) was increased by 18%. Because of the shift in specific leaf area, photosynthetic rates were also examined per unit leaf weight, and when this was done there were no significant differences between control and spittlebug-damaged plants. Beetle and aphid feeding had no effects on the photosynthetic rate of the leaves produced after insect removal. Plant relative growth rates (in terms of height) were reduced by spittlebugs during the period that the insects were feeding on the plants. Relative growth rates of spittlebug-damaged plants were increased above control levels after insect removal, but these plants were still shorter than controls 17 days after insect removal. Beetles and aphids did not affect plant relative growth rates or plant height. Feeding by both spittlebugs and beetles reduced leaf area, and the effect of the spittlebug was more severe than that of the beetle. These results show that effects of herbivory on photosynthetic rates cannot be predicted simply by considering changes in the source-sink ratio, and that spittlebug feeding is more damaging to the host plant than beetle or aphid feeding.

摘要

食草作用会改变植物体内源和库之间的平衡,而源库比的变化通常会导致植物光合速率的改变。我们研究了三种食草昆虫的取食如何影响一枝黄花(Solidago altissima)的光合速率和生长。一种是取食韧皮部汁液的蚜虫(Uroleucon caligatum),它会产生额外的库,另外两种是咀嚼叶片的甲虫(Trirhabda sp.)和取食木质部汁液的沫蝉(Philaenus spumarius),它们都会通过减少叶面积来降低源供应。将植物种植在室外的大花盆中,并以预定密度放置昆虫,未受损的植物作为对照。在12天的取食期后,将所有昆虫移除。我们测量了受损叶片以及昆虫移除后长出的未受损叶片的光合速率。沫蝉取食使受损叶片单位面积的光合速率降低,但甲虫和蚜虫取食未造成这种影响。沫蝉取食的叶片的导度与对照无差异,但内部二氧化碳浓度升高。这些结果表明,沫蝉取食不会导致气孔关闭,但会损害叶片内的固定作用。从植物上移除昆虫后,沫蝉取食对光合速率的影响仍然存在。即使在昆虫移除12天后进行测量,沫蝉取食受损植物上昆虫移除后长出的叶片单位面积的光合速率仍低于对照水平。与对照相比,沫蝉取食受损植物上的测量叶片面积减少了27%,但比叶面积(叶面积/叶重)增加了18%。由于比叶面积的变化,还按单位叶重检查了光合速率,结果发现对照植物和沫蝉取食受损植物之间没有显著差异。甲虫和蚜虫取食对昆虫移除后长出的叶片的光合速率没有影响。在昆虫取食植物的期间,沫蝉降低了植物的相对生长速率(以高度计)。昆虫移除后,沫蝉取食受损植物的相对生长速率高于对照水平,但在昆虫移除17天后,这些植物仍然比对照矮。甲虫和蚜虫不影响植物的相对生长速率或株高。沫蝉和甲虫的取食都会减少叶面积,且沫蝉的影响比甲虫更严重。这些结果表明,不能仅通过考虑源库比的变化来预测食草作用对光合速率的影响,并且沫蝉取食对寄主植物的损害比甲虫或蚜虫取食更大。

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