4.7 Article

The maturation zone is an important target of Piriformospora indica in Chinese cabbage roots

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 64, 期 14, 页码 4529-4540

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/ert265

关键词

Chinese cabbage; growth and biomass promotion; mutualistic symbiosis; Piriformospora indica; root maturation zone; subtractive EST library

资金

  1. German Academic Exchange Service (DAAD), Germany
  2. National Taiwan University [NTU-100E32055]

向作者/读者索取更多资源

The mutualistic symbiont Piriformospora indica exhibits a great potential in agriculture. The interaction between P. indica and Chinese cabbage (Brassica campestris cv. Chinensis) results in growth and biomass promotion of the host plant and in particular in root hair development. The resulting highly bushy root phenotype of colonized Chinese cabbage seedlings differs substantially from reports of other plant species, which prompted the more detailed study of this symbiosis. A large-scale expressed sequence tag (EST) data set was obtained from a double-subtractive EST library, by subtracting the cDNAs of Chinese cabbage root tissue and of P. indica mycelium from those of P. indica-colonized root tissue. The analysis revealed similar to 700 unique genes rooted in 141 clusters and 559 singles. A total of 66% of the sequences could be annotated in the NCBI GenBank. Genes which are stimulated by P. indica are involved in various types of transport, carbohydrate metabolism, auxin signalling, cell wall metabolism, and root development, including the root hair-forming phosphoinositide phosphatase 4. For 20 key genes, induction by fungal colonization was confirmed kinetically during the interaction by real-time reverse transcriptionPCR. Moreover, the auxin concentration increases transiently after exposure of the roots to P. indica. Microscopic analyses demonstrated that the development of the root maturation zone is the major target of P. indica in Chinese cabbage. Taken together, the symbiotic interaction between Chinese cabbage and P. indica is a novel model to study root growth promotion which, in turn, is important for agriculture and plant biotechnology.

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