FP6Индивидуална стипендия2005

MILDEWAVRGENES · Evolution of elicitor (avirulence) genes in powdery mildew fungi (Diversity and evolution of avirulence in powdery mildews)

6РП — Действия „Мария Кюри“

Период
2005-01-01 → 2005-06-30
Финансиране от ЕС
168 798 €
Участници
1
Схема
EIF

Линиите свързват координатора с партньорите.

Накратко на български

Гъбичките, причиняващи брашняста мана по езицата, се изследват чрез техните Avr гени, които определят дали растението ще разпознае паразита. Анализът на тези гени помага да се разбере как гъбичките еволюират бързо, за да заобикалят защитата на растенията.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Final Activity Report Summary - MILDEWAVRGENES (Evolution of elicitor (avirulence) genes in powdery mildew fungi. (Diversity and evolution of avirulence in powdery mildews))

The fungus 'blumeria graminis f.sp. hordei' (Bgh) is the causal agent of powdery mildew of barley, a highly damaging disease. Plant resistance genes (R) are widely used to control powdery mildews, but these are rapidly overcome by parasite mutants that evade recognition. It is not known how this rapid evolution occurs without apparent loss of parasite fitness (Bronson & Ellingboe, 1986, Brown, 2003). Interactions between Bgh and barley are governed in a gene-for-gene manner (Flor, 1971), such that a barley plant is only resistant to Bgh genotypes with the corresponding avirulence (Avr) gene. Over 25 independent Avr genes have been described in Bgh isolates (Brown; Jessop, 1995, Jensen et al., 1995) and we recently isolated AVRa10 and AVRk1 (Ridout et al., 2006). We showed that they induced resistance responses when expressed in host cells of Mla10 and Mlk1 barley varieties, and that they also enhanced infection success on susceptible host plant cells. AVRa10 and AVRk1 were paralogues and belonged to a large gene family. The findings implied that the mildew fungus had a repertoire of avirulence genes, which could function as effectors and contribute to parasite virulence. Multiple copies of AVR-effector genes might enable populations of Bgh to rapidly overcome host R genes whilst maintaining virulence. The objective of this work was to obtain and analyse the sequences of other members of the AVR family in different isolates and formae speciales (ff. spp), providing information about host adaptation and parasite evolution. The results of my work revealed that: 1. the mildew AVR family was very large and highly conserved. There was a high conservation of the family between the members of the same genome, from different isolates and from different ff. spp, which possibly reflected their important function as effectors. The regions flanking the core of the protein sequence were less conserved, which might indicate adaptation to evade recognition by R proteins in the host. There was a close association between AVRk1-like sequences and the retrotransposon CgT1 sequence in the genomes of both Bgh and Blumeria graminis f.sp. tritici (Bgt). Retrotransposons in both bacterial and fungal genomes were believed to contribute to effector and AVR gene expansion and diversification (Gout et al., 2006, Rohmer et al., 2004, Skamnioti; Ridout, 2005). 2. AVR genes could be related to the adaptation of B.g to different crops. The AVR family was present in other ff. spp of Bg, but not in other powdery mildew species. AVRa10 -like genes existed before the specialisation of b. graminis onto different cereal hosts. The absence of AVRk1-like genes in the f. sp avenae suggested that the proliferation of this subfamily occurred after the specialisation of B.g. on oat. Also, the topology of the phylogenetic tree indicated that the isolation of the ff. spp secali, tritici and agropyri from the common ancestor with hordei was synchronised with the proliferation of the AVRk1 subfamily. This work illustrated the evolution of crop-pathogen interactions in the domestication of cereal crops. The results helped us to understand how the parasite could adapt to new crop varieties, thus they could potentially help to develop new strategies for breeding.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The overall aim of the fellowship is to analyse the molecular evolution of a family of genes in fungi, which cause powdery mildew diseases of plants. Avirulence genes elicit host defences in gene-for-gene interactions with plants. The family to be studied is related to the Avrk1 gene in the barley mildew, Blumeria graminis f.sp. hordei.The specific objectives are:1. To research the evolution of members of the Avrk1-like gene family in diverse isolates of B. graminis hordei. This will identify elements of the genes, which are:(a) conserved and may be required for pathogenicity,(b) subject to diversifying selection, so probably involved in gene-for-gene interactions,(c) not essential for pathogenicity. The work will involve culturing of B. graminis isolate s, cloning Avrk1-like fragments by homology with Avrk1, and sequencing of Avrk1-like genes, followed by phylogenetic analysis of sequences.2. To examine host-specialisation of wheat and barley mildew by investigating the divergence of members of the Avrk1 -like family, and to research the distribution of Avrk1-like genes in diverse mildew pathogens of dicot plants. The methods used will be similar to those in Objective 1.3. To analyse the association of Avrk1-like genes with avirulences, to identify Avrk1-like sequences as candidate avirulence genes. This will involve crossing B. graminis isolates, extracting ascospore progeny, and analysis of avirulence on a differential set of barley varieties. Avrk1 homologues will be analysed for sequence variation between the parents of the cross and polymorphisms mapped in the progeny to investigate their linkage to avirulence loci.The fellowship will provide Ms Sacristan with expert training in:1. Phylogenetic methods applied to evolution of DNA sequences (Objective s 1 and 2);2. Fungal genetics and genetic analysis (Objective 3);3. Advanced methods of molecular marker analysis (Objectives 1 and 3);4. Fungal plant pathology and mycological methods (all 3 Objectives).

Оригинален текст от CORDIS (на английски).

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Данни: CORDIS, © Европейски съюз