Snails prefer it sweet: A multifactorial test of the metal defence hypothesis

蜗牛 生物 超量积累植物 食草动物 水杨酸 茉莉酸甲酯 植物 营养物 植物对草食的防御 防御机制 茉莉酸 生态学 食品科学 化学 植物修复 生物化学 污染 突变体 有机化学 基因 拟南芥
作者
Mercè Llugany,Roser Tolrá,Juan Barceló,Charlotte Poschenrieder
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:165 (2): 209-218 被引量:6
标识
DOI:10.1111/ppl.12821
摘要

Metal defence against insect herbivory in hyperaccumulator plants is well documented. However, there are contradictory results regarding protection against snails. According to the joint effects hypothesis, inorganic and organic defences cooperate in plant protection. To test this hypothesis, we explored the relationships between snail ( Cantareus aspersus ) feeding and multiple inorganic and organic leaf components in the Cd hyperaccumulator plant Noccaea praecox . Plants grouped by rosette size growing in nutrient solution supplemented or not with 50 μM Cd were offered to the snails. After 3 days of snail feeding, the plants and snails were analysed. In addition to Cd concentrations, we analysed leaves for nutritional factors (sugar and protein), defence‐related compounds (glucosinolates, phenolics, tannins, salicylic acid and jasmonate) and essential mineral nutrients. Cadmium concentrations in the snails and in snail excrements were also analysed. Snails preferentially fed on plants grown without Cd. Medium‐sized plants exposed to Cd were the least consumed. Snail excrements from this trial weighed less and had higher Cd concentrations than those from other treatments. Cadmium increased salicylate and jasmonate production. A positive relationship between jasmonate levels and the number of attacked leaves was found. Principal component analysis revealed that leaf sugar concentration was the main factor positively affecting snails' leaf consumption, while leaf Cd had a negative but weaker influence. In conclusion, leaf sugar concentration mainly governs snails' feeding preferences. High leaf Cd concentrations do not deter herbivores from attacking leaves, but they do reduce leaf consumption. Our results clearly support the joint effects hypothesis.
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