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褐飞虱对抗性水稻品种的“适应”:随时间变化的氨基酸组成。

Planthopper "adaptation" to resistant rice varieties: changes in amino acid composition over time.

机构信息

Division of Crop and Environmental Sciences, International Rice Research Institute, Los Baños, Laguna, Philippines.

出版信息

J Insect Physiol. 2011 Oct;57(10):1375-84. doi: 10.1016/j.jinsphys.2011.07.002. Epub 2011 Jul 18.

DOI:10.1016/j.jinsphys.2011.07.002
PMID:21782824
Abstract

The brown planthopper, Nilaparvata lugens, shows considerable geographic and temporal variability in its response to varieties of cultivated rice. N. lugens has repeatedly "adapted" to resistant rice varieties; however, the physiological changes underlying planthopper adaptation are poorly understood. Endosymbionts within planthoppers, such as yeast-like endosymbionts (YLS) could play a role as they produce essential amino acids for planthoppers. We used a full factorial study to determine how natal rice variety, exposed rice variety, YLS presence, and the number of reared generations affected nymphal development, planthopper total nitrogen content, and planthopper hydrolyzed amino acid profiles. Nymphal development was strongly influenced by a four-way interaction between the exposed rice variety, natal rice variety, number of reared generations, and YLS presence. While symbiosis improved nymphal performance in the 8th generation, it appeared to be a drain on nymphs in the 11th generation, when the aposymbiotic nymphs actually showed higher performance than the symbiotic nymphs. This suggests that the symbiotic relationship may be acting beneficially in one generation while acting as a drain during another generation. Aposymbiotic planthoppers reared for 11 generations had a higher proportional concentration of rare amino acids than those reared for 8 generations, indicating that the planthopper itself appears to improve its ability to acquire rare amino acids. Therefore, the change in amino acid composition of planthoppers suggests an underlying change in protein expression or amino acid metabolism over time.

摘要

褐飞虱,Nilaparvata lugens,在其对不同栽培稻品种的反应上表现出相当大的地理和时间变异性。N. lugens 已经多次“适应”了抗虫水稻品种;然而,褐飞虱适应的生理变化还知之甚少。飞虱体内的共生菌,如酵母样共生菌(YLS),可能会发挥作用,因为它们为飞虱产生必需的氨基酸。我们使用完全析因研究来确定出生地水稻品种、暴露水稻品种、YLS 的存在以及饲养的代数如何影响若虫发育、飞虱总氮含量和飞虱水解氨基酸谱。若虫发育强烈受到暴露水稻品种、出生地水稻品种、饲养代数和 YLS 存在的四向相互作用的影响。虽然共生在第 8 代提高了若虫的表现,但在第 11 代时,它似乎对若虫造成了负担,此时无共生的若虫实际上比有共生的若虫表现更好。这表明共生关系可能在一代中有益,而在另一代中则是负担。饲养 11 代的无共生褐飞虱比饲养 8 代的褐飞虱具有更高的稀有氨基酸比例浓度,这表明飞虱本身似乎提高了获取稀有氨基酸的能力。因此,飞虱氨基酸组成的变化表明随着时间的推移,蛋白质表达或氨基酸代谢发生了潜在的变化。

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