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甜菜孢囊线虫干扰甘蓝上的蚜虫-植物关系。

Heterodera schachtii nematodes interfere with aphid-plant relations on Brassica oleracea.

机构信息

Department of Terrestrial Ecology, Netherlands Institute of Ecology (NIOO-KNAW), Droevendaalsesteeg 10, 6708 PB, Wageningen, The Netherlands,

出版信息

J Chem Ecol. 2013 Sep;39(9):1193-203. doi: 10.1007/s10886-013-0338-4. Epub 2013 Sep 8.

Abstract

Aboveground and belowground herbivore species modify plant defense responses differently. Simultaneous attack can lead to non-additive effects on primary and secondary metabolite composition in roots and shoots. We previously found that aphid (Brevicoryne brassicae) population growth on Brassica oleracea was reduced on plants that were infested with nematodes (Heterodera schachtii) prior (4 weeks) to aphid infestation. Here, we examined how infection with root-feeding nematodes affected primary and secondary metabolites in the host plant and whether this could explain the increase in aphid doubling time from 3.8 to 6.7 days. We hypothesized that the effects of herbivores on plant metabolites would depend on the presence of the other herbivore and that nematode-induced changes in primary metabolites would correlate with reduced aphid performance. Total glucosinolate concentration in the leaves was not affected by nematode presence, but the composition of glucosinolates shifted, as gluconapin concentrations were reduced, while gluconapoleiferin concentrations increased in plants exposed to nematodes. Aphid presence increased 4-methoxyglucobrassicin concentrations in leaves, which correlated positively with the number of aphids per plant. Nematodes decreased amino acid and sugar concentrations in the phloem. Aphid population doubling time correlated negatively with amino acids and glucosinolate levels in leaves, whereas these correlations were non-significant when nematodes were present. In conclusion, the effects of an herbivore on plant metabolites were independent of the presence of another herbivore. Nematode presence reduced aphid population growth and disturbed feeding relations between plants and aphids.

摘要

地上和地下食草动物物种以不同的方式改变植物的防御反应。同时攻击可能导致根部和地上部分的初级和次级代谢产物组成产生非加性效应。我们之前发现,在被根结线虫(Heterodera schachtii)预先(4 周)感染的拟南芥(Brassica oleracea)上,烟粉虱(Brevicoryne brassicae)的种群增长减少了。在这里,我们研究了根食线虫感染如何影响宿主植物的初级和次级代谢物,以及这是否可以解释蚜虫倍增时间从 3.8 天增加到 6.7 天。我们假设,食草动物对植物代谢物的影响取决于另一种食草动物的存在,以及线虫引起的初级代谢物变化与蚜虫表现的降低有关。叶片中总硫代葡萄糖苷的浓度不受线虫存在的影响,但硫代葡萄糖苷的组成发生了变化,在暴露于线虫的植物中,葡萄糖苷的浓度降低,而葡萄糖苷的浓度增加。蚜虫的存在增加了叶片中 4-甲氧基葡萄糖苷的浓度,这与每株植物上蚜虫的数量呈正相关。线虫降低了韧皮部中的氨基酸和糖浓度。蚜虫种群倍增时间与叶片中的氨基酸和硫代葡萄糖苷水平呈负相关,而当线虫存在时,这些相关性不显著。总之,食草动物对植物代谢物的影响与另一种食草动物的存在无关。线虫的存在降低了蚜虫的种群增长,并扰乱了植物和蚜虫之间的取食关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/822e/3790247/c863ddf0ff72/10886_2013_338_Fig1_HTML.jpg

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