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Effect of crop rotation on mycorrhizal colonization and wheat yield under different fertilizer treatments

机译:作物旋转对不同肥料处理下菌根殖民化和小麦产量的影响

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摘要

Break crops are used in agriculture to reduce soil pathogens and improve yield of subsequent cereal crops. However, they can also affect soil microbial communities beneficial to plant growth including arbuscular mycorrhizal fungi (AMF). Two wheat genotypes (IAW2013 and 249) were planted after crop rotation with canola or chickpea with different nitrogen (N) and phosphorus (P) fertilizer treatments (0 and 100 kg N ha(-1) and 0 or 20 kg P ha(-1)) in the field. Plant and soil available N and P, AMF root colonization, shoot biomass, wheat yield and leaf delta C-13 were examined. While crop rotation did not affect soil available N and P, AMF colonization in wheat was on average 60% higher after chickpea than after the canola rotation. Wheat yield after chickpea increased for genotype IAW2013, and was positively related to AMF colonization for both genotypes. N and P fertilization reduced AMF colonization and yield, but increased shoot biomass and leaf tissue N and P concentrations. Leaf delta C-13 decreased with increased yield, suggesting that higher yielding and AMF colonized plants were less water stressed. In contrast to fertilization, cultivation of certain crops in the previous season, in our case chickpea, can promote AMF colonization of wheat roots, thereby increasing grain yield.
机译:休息作物用于农业以减少土壤病原体,提高后续谷物作物的产量。然而,它们还可以影响土壤微生物社区对植物生长有益,包括丛犯罪菌根真菌(AMF)。用不同的氮气(n)和磷酸盐(n)和磷(p)肥料处理(0和100kg n(-1)和0或20kg p ha( - - 1))在现场。研究了植物和土壤可用N和P,AMF根殖民化,芽生物质,小麦产量和叶DELTA C-13。虽然作物旋转不影响土壤可用N和P,但小麦的AMF殖民化比油菜旋转在鹰嘴豆后平均高60%。小麦产量在鹰嘴豆术中增加后,对于基因型IAW2013增加,并且与两种基因型的AMF定植呈正相关。 N和P施肥减少了AMF定植和产量,而是增加芽生物质和叶组织N和P浓度。叶δC-13随着产率的增加而降低,表明屈服率高的屈服和AMF殖民植物较小。与施肥形成鲜明对比,前赛季中某些作物的培养,在我们的案例中,可以促进小麦根的AMF殖民化,从而提高谷物产量。

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