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蒺藜苜蓿突变体表明植物草酸钙晶体作为抵御咀嚼式昆虫的有效防御机制的作用。

Medicago truncatula mutants demonstrate the role of plant calcium oxalate crystals as an effective defense against chewing insects.

作者信息

Korth Kenneth L, Doege Sarah J, Park Sang-Hyuck, Goggin Fiona L, Wang Qin, Gomez S Karen, Liu Guangjie, Jia Lingling, Nakata Paul A

机构信息

Department of Plant Pathology, University of Arkansas, Fayetteville, Arkansas 72701, USA.

出版信息

Plant Physiol. 2006 May;141(1):188-95. doi: 10.1104/pp.106.076737. Epub 2006 Mar 2.

Abstract

Calcium oxalate is the most abundant insoluble mineral found in plants and its crystals have been reported in more than 200 plant families. In the barrel medic Medicago truncatula Gaertn., these crystals accumulate predominantly in a sheath surrounding secondary veins of leaves. Mutants of M. truncatula with decreased levels of calcium oxalate crystals were used to assess the defensive role of this mineral against insects. Caterpillar larvae of the beet armyworm Spodoptera exigua Hübner show a clear feeding preference for tissue from calcium oxalate-defective (cod) mutant lines cod5 and cod6 in choice test comparisons with wild-type M. truncatula. Compared to their performance on mutant lines, larvae feeding on wild-type plants with abundant calcium oxalate crystals suffer significantly reduced growth and increased mortality. Induction of wound-responsive genes appears to be normal in cod5 and cod6, indicating that these lines are not deficient in induced insect defenses. Electron micrographs of insect mouthparts indicate that the prismatic crystals in M. truncatula leaves act as physical abrasives during feeding. Food utilization measurements show that, after consumption, calcium oxalate also interferes with the conversion of plant material into insect biomass during digestion. In contrast to their detrimental effects on a chewing insect, calcium oxalate crystals do not negatively affect the performance of the pea aphid Acyrthosiphon pisum Harris, a sap-feeding insect with piercing-sucking mouthparts. The results confirm a long-held hypothesis for the defensive function of these crystals and point to the potential value of genes controlling crystal formation and localization in crop plants.

摘要

草酸钙是植物中最丰富的不溶性矿物质,已在200多个植物科中报道过其晶体。在桶状苜蓿(Medicago truncatula Gaertn.)中,这些晶体主要积累在叶片次生叶脉周围的鞘中。利用草酸钙晶体含量降低的桶状苜蓿突变体来评估这种矿物质对昆虫的防御作用。在与野生型桶状苜蓿的选择试验比较中,甜菜夜蛾(Spodoptera exigua Hübner)的毛虫幼虫对来自草酸钙缺陷(cod)突变系cod5和cod6的组织表现出明显的取食偏好。与在突变系上的表现相比,取食富含草酸钙晶体的野生型植物的幼虫生长显著减缓,死亡率增加。在cod5和cod6中,伤口响应基因的诱导似乎正常,这表明这些品系在诱导昆虫防御方面并不缺乏。昆虫口器的电子显微镜照片表明,桶状苜蓿叶片中的棱柱形晶体在取食过程中起到物理磨蚀剂的作用。食物利用测量表明,摄入后,草酸钙在消化过程中也会干扰植物物质转化为昆虫生物量。与它们对咀嚼式昆虫的有害影响相反,草酸钙晶体对豌豆蚜(Acyrthosiphon pisum Harris)的表现没有负面影响,豌豆蚜是一种具有刺吸式口器的吸食汁液昆虫。这些结果证实了长期以来关于这些晶体防御功能的假设,并指出了控制作物中晶体形成和定位的基因的潜在价值。

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