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Dark Septate Endophytic Fungi Increase Green Manure-15N Recovery Efficiency N Contents and Micronutrients in Rice Grains

机译:深色分隔的内生真菌提高稻谷中15 N的绿肥回收效率N含量和微量营养素

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摘要

An understanding of the interaction between rice and dark septate endophytic (DSE) fungi, under green fertilization, may lead to sustainable agricultural practices. Nevertheless, this interaction is still poorly understood. Therefore, in this study, we aimed to evaluate the accumulation of macro- and micronutrients, dry matter, and protein and N recovery efficiency from Canavalia ensiformis (L.)-15N in rice inoculated with DSE fungi. An experiment under greenhouse conditions was conducted in a randomized complete block design comprising split-plots, with five replicates of rice plants potted in non-sterilized soil. Rice (Piauí variety) seedlings were inoculated with DSE fungi, A101 and A103, or left uninoculated (control) and transplanted into pots containing 12 kg of soil, which had previously been supplemented with dry, finely ground shoot biomass of C. ensiformis enriched with 2.15 atom % 15N. Two collections were performed in the experiment: one at 54 days after transplanting (DAT) and one at 130 DAT (at maturation). Growth indicators (at 54 DAT), grain yield, nutrient content, recovery efficiency, and the amount of N derived from C. ensiformis were quantified. At 54 DAT, the N content, chlorophyll content, and plant height of inoculated plants had increased significantly compared with the control, and these plants were more proficient in the use of N derived from C. ensiformis. At maturation, plants inoculated with A103 were distinguished by the recovery efficiency and amount of N derived from C. ensiformis and N content in the grain and shoot being equal to that in A101 inoculation and higher than that in the control, resulting in a higher accumulation of crude protein and dry matter in the full grain and panicle of DSE-rice interaction. In addition, Fe and Ni contents in the grains of rice inoculated with these fungi doubled with respect to the control, and in A103 inoculation, we observed Mn accumulation that was three times higher than in the other treatments. Our results suggest that the inoculation of rice with DSE fungi represents a strategy to improve green manure-N recovery, grain yield per plant, and grain quality in terms of micronutrients contents in cropping systems with a low N input.
机译:对绿色施肥下水稻与深色隔生内生真菌之间相互作用的理解可能导致可持续的农业实践。然而,这种相互作用仍然知之甚少。因此,在这项研究中,我们旨在评估接种DSE真菌的大米中Canavalia ensiformis(L。)- 15 N中大量和微量营养元素,干物质的积累以及蛋白质和氮的回收效率。 。在温室条件下进行的实验是在随机完整块设计中进行的,包括分块图,其中五份重复的水稻植株盆栽在未灭菌的土壤中。水稻(Piauí变种)的幼苗用DSE真菌,A101和A103接种,或者不接种(对照),然后移植到含有12 kg土壤的花盆中,该花盆先前已补充了干燥,细磨的富含C.ensiformis的芽生物量。 2.15原子% 15 N。在实验中进行了两次采集:一次在移植后54天(DAT),一次在130天DAT(成熟时)。定量了生长指标(在54 DAT时),谷物产量,养分含量,恢复效率和源自棒状梭菌的氮含量。在第54天,与对照相比,接种植株的氮含量,叶绿素含量和株高显着增加,并且这些植株更善于利用​​源自棒状梭菌的氮。成熟时,接种A103的植物的区别在于其回收效率和源自玉米棒线虫的N量,且籽粒和枝条中的N含量与A101接种相同,且高于对照,从而导致较高的积累DSE-水稻相互作用的全谷物和圆锥花序中粗蛋白和干物质的含量此外,接种这些真菌的水稻籽粒中的铁和镍含量相对于对照增加了一倍,在A103接种中,我们观察到的Mn积累量是其他处理方法的三倍。我们的结果表明,用低氮输入的作物系统中的微量营养素含量,用DSE真菌接种水稻代表了提高绿肥氮回收率,单株谷物产量和谷物品质的策略。

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