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Comparative proteomic analysis for assessment of the ecological significance of maize and peanut intercropping

机译:比较蛋白质组学分析评估玉米和花生间作的生态意义

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Intercropping is an important and sustainable cropping practice in agroecosystems. Peanut/maize intercropping is known to improve the iron (Fe) content of peanuts in calcareous soils. In this study, a proteomic approach was used to uncover the ecological significance of peanut/maize intercropping at the molecular level. We demonstrate that photosynthesis-related proteins accumulated in intercropped peanut leaves, suggesting that the intercropped peanuts had a stronger photosynthetic efficiency. Moreover, stress-response proteins displayed elevated expression levels in both peanut and maize in a monocropping system. This indicated that intercropping contributes to resistance to stress conditions. Allene oxide synthase and 12-oxo-phytodienoic acid reductase, two key enzymes in jasmonate (JA) biosynthesis, increased in abundance in the maize roots of the intercropping system, consistent with the upregulation of JA-induced proteins shown by microarray analysis. These results imply that JA may act as a signaling molecule, playing an important role in intercropping through rhizosphere interaction. This study suggests that peanut/maize intercropping results in high Fe availability in the rhizosphere, leading to variation in the proteins related to carbon and nitrogen metabolism. The advantages of intercropping systems may improve the ecological adaptation of plants to environmental stress. ? 2012 Elsevier B.V.
机译:间作是农业生态系统中重要且可持续的耕作方式。众所周知,花生/玉米间作可以改善石灰性土壤中花生的铁(Fe)含量。在这项研究中,蛋白质组学方法被用来揭示花生/玉米间作在分子水平上的生态学意义。我们证明间作花生叶片中积累了与光合作用相关的蛋白质,这表明间作花生具有更强的光合作用效率。此外,在单作系统中,胁迫响应蛋白在花生和玉米中均表现出升高的表达水平。这表明间作有助于抵抗压力。茉莉酸(JA)生物合成中的两个关键酶氧化烯合成酶和12-氧-植物二烯酸还原酶在间作系统的玉米根中的丰度增加,这与微阵列分析显示的JA诱导蛋白的上调一致。这些结果暗示JA可能充当信号分子,在通过根际相互作用的间作中起重要作用。这项研究表明,花生/玉米间作导致根际中高铁的有效性,从而导致与碳和氮代谢有关的蛋白质发生变异。间作系统的优点可以改善植物对环境胁迫的生态适应性。 ? 2012年Elsevier B.V.

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