The Host Stomatal Density Determines Resistance to Septoria gentianae in Japanese Gentian

Author:

Tateda Chika1ORCID,Obara Kazue1,Abe Yoshiko1,Sekine Reiko2,Nekoduka Syuuichi3,Hikage Takashi4,Nishihara Masahiro1,Sekine Ken-Taro2,Fujisaki Koki1

Affiliation:

1. Iwate Biotechnology Research Center, 22-174-4 Narita, Kitakami, Iwate 024-0003, Japan;

2. Iwate Plant Protection Office, 20-1 Narita, Kitakami, Iwate 024-0003, Japan;

3. University of the Ryukyus, Faculty of Agriculture, Nakagami, Okinawa 903-0213, Japan; and

4. Hachimantai City Floricultural Research and Development Center, Kamasuda 70, Hachimantai, Iwate 028-7533, Japan

Abstract

Plant stomata represent the main battlefield for host plants and the pathogens that enter plant tissues via stomata. Septoria spp., a group of ascomycete fungi, use host plant stomata for invasion and cause serious damage to agricultural plants. There is no evidence, however, showing the involvement of stomata in defense systems against Septoria infection. In this study, we isolated Septoria gentianae 20-35 (Sg20-35) from Gentiana triflora showing gentian leaf blight disease symptoms in the field. Establishment of an infection system using gentian plants cultured in vitro enabled us to observe the Sg20-35 infection process and estimate its virulence in several gentian cultivars or lines. Sg20-35 also entered gentian tissues via stomata and showed increased virulence in G. triflora compared with G. scabra and their interspecific hybrid. Notably, the susceptibility of gentian cultivars to Sg20-35 was associated with their stomatal density on the adaxial but not abaxial leaf surface. Treatment of EPIDERMAL PATTERNING FACTOR-LIKE 9 (EPFL9/STOMAGEN) peptides, a small secreted peptide controlling stomatal density in Arabidopsis thaliana, increased stomatal density on the adaxial side of gentian leaves as well. Consequently, treated plants showed enhanced susceptibility to Sg20-35. These results indicate that stomatal density on the adaxial leaf surface is one of the major factors determining the susceptibility of gentian cultivars to S. gentianae and suggest that stomatal density control may represent an effective strategy to confer Septoria resistance.

Publisher

Scientific Societies

Subject

Agronomy and Crop Science,General Medicine,Physiology

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