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首页> 外文期刊>Canadian journal of microbiology >Symbiosis of selected Rhizobium leguminosarum bv. viciae strains with diverse pea genotypes: effects on biological nitrogen fixation
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Symbiosis of selected Rhizobium leguminosarum bv. viciae strains with diverse pea genotypes: effects on biological nitrogen fixation

机译:选择的根瘤菌豆科骨髓BV的共生。 Viciae菌株具有不同豌豆基因型:对生物氮固定的影响

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摘要

Pisum sativum L.), leading to increased productivity and reduced nitrogen (N) fertilizer use. Eight Rhizobium leguminosarum bv. viciae strains were used to inoculate the super-nodulating pea mutant Rondo- nod3 (fix+), the hyper-nodulating pea mutant Frisson P88 Sym29 , CDC Meadow commercial control, and the non-nodulating mutant Frisson P56 ( nod– ) to evaluate BNF in a greenhouse assay. Significant differences in strain × cultivar interactions were detected for shoot and root dry masses, which ranged from 1.8 to 4.7 g and from 0.27 to 0.73 g per plant, respectively; for nodule number on lateral roots, which ranged from 25 to 430 per plant; for amount of fixed N 2 , which ranged from 15 to 67 mg and from 4 to 15 mg per plant for shoot and root tissues, respectively; and for percentage of N derived from atmosphere (%Ndfa), which ranged from 37% to 61% and from 35% to 65% for shoot and root tissue, respectively. Strain × cultivar interactions in this study could contribute to identification of superior strains and pea breeding lines with genetic superiority in BNF. Nodule production in pea plants was not necessarily correlated with the amount of fixed N 2 , suggesting nodule activity is more important to BNF than is nodule number.
机译:Pisum sativum L.),导致生产力增加和降低的氮气(n)肥料使用。八个根瘤菌豆科猴BV。 Viciae菌株用于接种超环状豌豆突变体Rondo-nod3(Fix +),超调豌豆突变体Frisson P88 Sym29,CDC草甸商业控制,以及非旋结突变体Frisson P56(NOD-)来评估BNF温室测定。为芽和根系干块检测菌株×种子相互作用的显着差异,分别为每株植物的1.8%至4.7g和0.27至0.73克。对于侧面根部的结节数,范围为每株25至430;对于固定的N 2的量,分别为每种植物和根组织的每株灌和根组织的15至67mg。对于源自大气(%NDFA)衍生的N的百分比,分别为37%至61%,分别为芽和根组织的35%至65%。菌株×本研究中的品种相互作用可能有助于鉴定高级菌株和BNF遗传优越性的培养基和豌豆育种线。豌豆植物的结节产生不一定与固定的N 2的量相关,表明结节活性对BNF比结节数更为重要。

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