PHYTOPLASMA GENOMICS · Functional characterization of phytoplasma candidate virulence proteins that target plant cell nuclei
6РП — Действия „Мария Кюри“
- Период
- 2007-07-01 → 2009-06-30
- Финансиране от ЕС
- 80 000 €
- Участници
- 1
- Схема
- EIF
Линиите свързват координатора с партньорите.
Накратко на български
Фитоплазмите използват специален протеин (SAP11), за да променят развитието на растенията, като например забавят стареенето на листата им. Това помага на патогените да се размножават по-лесно и улеснява насекомите, които ги пренасят, да се хранят и снасят яйца.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - PHYTOPLASMA GENOMICS (Functional characterization of phytoplasma candidate virulence proteins that target plant cell nuclei)
Phytoplasmas are insect-transmitted plant pathogens that can manipulate their plant and insect hosts for their own benefit. Indeed, phytoplasmas interfere with plant development often leading to the production of more young leafy tissues and inhibition of flowering and plant senescence. This provides more leaf tissue for phytoplasma replication and better opportunities for feeding and egg laying of the phytoplasma insect vectors, which spread phytoplasmas to new plant hosts. We found that phytoplasmas interfere with plant development through the secretion of virulence factors (called effectors) into plant cells where they perturb a variety of cell processes. In this project, we have further functionally characterized one such effector from Aster Yellows phytoplasma strain Witches' Broom (AY-WB), named secreted AY-WB protein (SAP) 11. SAP11 localizes to plant cell nuclei where it inactivates transcription factors that counteract leaf proliferation and induce leaf senescence. Production of SAP11 in Arabidopsis thaliana leads to the differential regulation of plant developmental genes and downregulation of genes involved in leaf senescence and secondary metabolism. These plants have large kale-like crinkled leaves, delayed flowering and produce more young shoots. The gene transcription profiles and phenotype of Arabidopsis plants that manufacture SAP11 overlap with those of AY-WB-infected plants and plant lines in which the production of the transcription factors is inhibited. We envision that the SAP11-mediated delay of leaf senescence and increase in shoots and leaf surface enhances and prolong opportunities for AY-WB replication and feeding and egg laying of AY-WB insect vectors. Thus, SAP11 has a true effector function. This research has led to a better understanding of phytoplasma biology that will be shared with the larger scientific community and industry. Research on phytoplasmas is important, because these pathogens are becoming increasingly a problem in (durable) crops, flower bulbs and ornamentals worldwide, including third world countries. This is because of intensified agriculture, stricter regulations of the use of insecticides and climate change that together lead to better survival rates of the insect vectors that transmit phytoplasmas.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Phytoplasmas are insect-transmitted intracellular bacterial pathogens that infect plants in domesticated (crops) and natural habitats worldwide. Typically, they induce shoot proliferation and differentiation of floral parts into leafy structures, suggesting interference with basic cellular and developmental pathways.The applicant has led a consortium that sequenced the 724 kbp genome of aster yellows phytoplasma strain witches¿ broom (AY-WB), and is involved in two further phytoplasma sequencing programmes. Analysis of the AY-WB sequence identified 58 candidate virulence proteins, of which 8 have nuclear localization signals (NLSs). Two of these proteins (A11 and A30) target nuclei in plant cells.The objective of this proposal is to functionally characterize those candidate virulence proteins that target plant nuclei, with the hypothesis that they could change gene expression profiles through interactions with transcription factors and regulatory sequences. This work takes advantage of the broad host range of AY-WB that includes Nicotiana benthamiana, tomato, and Arabidopsis.The specific aims of the proposal are:- to determine the localization of all AY-WB NLS-containing proteins in plants;- to conduct expression-profiling experiments on plants exposed to A11 and A30;- to assess whether A11 and A30 bind regulatory sequences and transcription factors and how this may affect host susceptibility.Relative to other work on bacterial virulence in plants, the work is distinctive in focusing on virulence factors that target nuclei and on intracellular bacterial pathogens. Finally, this project will transfer research experience and knowledge obtained during a seven-year career in the USA to the John Innes Centre, Norwich, UK.
Оригинален текст от CORDIS (на английски).
Участници
- JOHN INNES CENTRE · NORWICHКоординаторОбединеното кралство
Връзки
Данни: CORDIS, © Европейски съюз
