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Mycorrhizal fungi enhance flooding tolerance of peach through inducing proline accumulation and improving root architecture

Zheng, Feng-Ling ; Liang, Sheng-Min ; Chu, Xiao-Ning ; Yang, Yong-Lu ; Wu, Qiang-Sheng

Plant, soil and environment, 2020-01, Vol.66 (12), p.624-631 [Periódico revisado por pares]

Prague: Czech Academy of Agricultural Sciences (CAAS)

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  • Título:
    Mycorrhizal fungi enhance flooding tolerance of peach through inducing proline accumulation and improving root architecture
  • Autor: Zheng, Feng-Ling ; Liang, Sheng-Min ; Chu, Xiao-Ning ; Yang, Yong-Lu ; Wu, Qiang-Sheng
  • Assuntos: Accumulation ; Arbuscular mycorrhizas ; Colonization ; Flooding ; fruit tree ; Fruits ; Fungi ; Gene expression ; Inoculation ; Metabolism ; Mycelia ; Ornithine ; Ornithine transaminase ; osmotic adjustment ; Plant growth ; Proline ; Proline dehydrogenase ; Roots ; symbiosis ; Transaminase ; water stress
  • É parte de: Plant, soil and environment, 2020-01, Vol.66 (12), p.624-631
  • Descrição: This study aimed to evaluate the effect of an arbuscular mycorrhizal fungus (AMF) Glomus mosseae on plant growth, root architecture, and proline metabolism in roots of peach (Prunes persica L.) under non-flooding and flooding conditions. The 12-day flooding dramatically inhibited root colonisation of G. mosseae, but induced a large number of extraradical mycelia. Although the flooding treatment also relatively inhibited growth and root architecture of peach, the mycorrhizal fungal inoculation dramatically increased shoot and root biomass, plant height, stem diameter, number of 1st- and 2nd-order lateral roots, root total length (mainly 0–1 cm and > 3 cm long), root surface area, and root volume under flooding. The study also revealed distinctly higher proline accumulation in the roots of mycorrhizal plants than non-mycorrhizal plants under both non-flooding and flooding conditions, accompanied by higher Δ1-pyrroline-5-carboxylate synthase (P5CS) activity and lower δ-ornithine transaminase and proline dehydrogenase activities. In addition, the PpP5CS1 gene expression was up-regulated by flooding and mycorrhization. This study concluded that mycorrhizal fungi enhanced flooding tolerance of peach through inducing proline accumulation and improving root architecture.
  • Editor: Prague: Czech Academy of Agricultural Sciences (CAAS)
  • Idioma: Inglês;Tcheco

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