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Enhancement of faba bean competitive ability by arbuscular mycorrhizal fungi is highly correlated with dynamic nutrient acquisition by competing wheat

机译:丛枝菌根真菌对蚕豆竞争能力的增强与竞争小麦动态养分吸收的相关性

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摘要

The mechanistic understanding of the dynamic processes linking nutrient acquisition and biomass production of competing individuals can be instructive in optimizing intercropping systems. Here, we examine the effect of inoculation with Funneliformis mosseae on competitive dynamics between wheat and faba bean. Wheat is less responsive to mycorrhizal inoculation. Both inoculated and uninoculated wheat attained the maximum instantaneous N and P capture approximately five days before it attained the maximum instantaneous biomass production, indicating that wheat detected the competitor and responded physiologically to resource limitation prior to the biomass response. By contrast, the instantaneous N and P capture by uninoculated faba bean remained low throughout the growth period, and plant growth was not significantly affected by competing wheat. However, inoculation substantially enhanced biomass production and N and P acquisition of faba bean. The exudation of citrate and malate acids and acid phosphatase activity were greater in mycorrhizal than in uninoculated faba bean, and rhizosphere pH tended to decrease. We conclude that under N and P limiting conditions, temporal separation of N and P acquisition by competing plant species and enhancement of complementary resource use in the presence of AMF might be attributable to the competitive co-existence of faba bean and wheat.
机译:对相互竞争的个体吸收养分和生物量生产的动态过程的机械理解可能对优化间作系统具有指导意义。在这里,我们研究了用Funneliformis mosseae接种对小麦和蚕豆竞争动力学的影响。小麦对菌根接种的反应较弱。接种小麦和未接种小麦均在达到最大瞬时生物量产量之前约五天达到了最大瞬时N和P捕获量,这表明小麦在生物量反应之前检测到竞争者并对资源限制做出生理反应。相反,在整个生长期,未接种蚕豆的瞬时N和P捕获量仍然很低,竞争小麦对植物的生长没有显着影响。然而,接种大大提高了蚕豆的生物量生产以及氮和磷的获取。菌根中柠檬酸和苹果酸的分泌和酸性磷酸酶的活性要高于未接种蚕豆,且根际pH倾向于降低。我们得出结论,在氮和磷的限制条件下,竞争性植物物种氮和磷的获取时间分离以及在AMF存在下增强补充资源的利用可能归因于蚕豆和小麦的竞争性共存。

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