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首页> 外文期刊>Environmental and experimental botany >Plant growth regulators ameliorate or exacerbate abiotic, biotic and combined stress interaction effects on Zea mays kernel weight with inbred-specific patterns
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Plant growth regulators ameliorate or exacerbate abiotic, biotic and combined stress interaction effects on Zea mays kernel weight with inbred-specific patterns

机译:植物生长调节剂改善或加剧非生物,生物和组合应激相互作用对ZEA的核心重量和近红细胞

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摘要

Plant growth regulators have documented roles in plant responses to single stresses. In combined-stress environments, plants exhibit novel genetic architecture for growth traits and physiological responses can display synergistic effects. Synergistic responses have been used to optimize agronomic production and recommendations for adaptation to weather and field conditions can be used to improve selective breeding for higher yielding crops. We hypothesized that alterations in hormone balance would alter phenotypic responses to abiotic and crowding stress in a genotype-specific manner. We investigated the role of plant growth regulators in modulating combined-stress growth responses in Zea mays. Maize inbreds were exposed to all single, double and triple combinations of the following stressors in a field environment: drought, nitrogen deprivation, and increased plant density. Growth regulator chemical treatments were applied in a factorial design using a range of inbred genotypes. We found significant differences between the seed weights of plants given different chemical treatments and when single-stress environments were compared to combined stress environments. Different inbred genotypes exhibited contrasting patterns of response to combined stress and plant growth regulator treatment. Plant growth regulators altered combined-stress response pathways in maize inbreds; predictions of growth regulator effects would be improved by better characterization of stress environments and genotype-environment interactions.
机译:植物生长调节剂在植物对单一应力的反应中有记录的作用。在组合压力环境中,植物表现出用于生长性状的新型遗传架构,生理反应可以显示协同效应。协同响应已被用于优化农艺生产和适应天气和现场条件的建议可用于改善对更高产量的选择性育种。我们假设激素平衡的改变会以基因型特异性方式改变对非生物和拥挤应力的表型反应。我们调查了植物生长调节剂在调节Zea Mays中的综合生长反应方面的作用。在野外环境中暴露于以下压力源的所有单一,双倍和三重组合的玉米近额:干旱,氮剥夺和增加的植物密度。使用一系列近交基因型,在因子设计中应用生长调节剂化学处理。我们发现植物的种子重量在给予不同的化学处理以及将单应力环境与组合应力环境进行比较时的显着差异。不同的近交基因型表现出对比应力和植物生长调节剂治疗的对比模式。植物生长调节剂改变了玉米自交系中的综合应力反应途径;通过更好地表征应力环境和基因型环境相互作用,将提高生长调节剂效应的预测。

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