SEEDNET · REGULATORY GENE NETWORKS IN SEED COAT DEVELOPMENT
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2013-01-01 → 2016-12-31
- Финансиране от ЕС
- 100 000 €
- Участници
- 1
- Схема
- MC-CIG
Линиите свързват координатора с партньорите.
Накратко на български
Развитието на ендотелия – вътрешният слой на обвивката на семената при Arabidopsis thaliana – се анализира чрез генетични профили и 3D изображения. Това помага да се разбере как се координират тъканите на семето и как се синтезират защитните му съединения.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
REGULATORY GENE NETWORKS IN SEED COAT DEVELOPMENT
Angiosperm seeds are a unique biological model made of three genetically different tissues: the embryo which initiates the next sporophytic generation, the endosperm which has nourishing functions and the surrounding seed coat which interfaces with the environment. Briefly, seeds of the model angiosperm Arabidopsis thaliana develops from the ovule after a double fertilization event that leads to the formation of embryo and endosperm. The ovule integuments, that surround and protect the female gametophyte, do not take part in the fertilization process but give rise to the seed coat soon after. Cells in the five layers of the seed coat undergo a rapid phase of growth through division and expansion, and follow different fates. The endothelium, the innermost cell layer of the seed coat, lies in a critical position at the boundary of endosperm and seed coat and plays an essential role in the crosstalk among seed tissues. It also synthesizes proanthocyanidins (PA), flavonoid compounds that have a general protective function and impart the characteristic brown color to A. thaliana seeds. Despite the important role of the endothelium in seed formation and quality, we have a limited understanding of its development. The project aimed at characterizing endothelium development and its coordination with the surrounding tissues in A. thaliana seeds at the morphological and transcriptional level. In a genome-wide approach, we profiled the endothelium transcriptome through the INTACT method that allows affinity-based isolation of nuclei from individual cell types and mRNA profiling. Furthermore, we characterized the cell patterning of the endothelium and neighboring maternal tissues in wild-type and mutant seeds through tissue three-dimensional reconstruction imaging techniques. This approach allowed us to identify the presence of a sixth integument cell layer, previously uncharacterized. Finally, we assigned new functions to a handful of transcription factors that regulate seed coat development and characterized their downstream target genes. Most emphasis has been given to the study of the TRANSPARENT TESTA 16 (TT16) MADS box transcription, a master regulator of endothelium development. We showed that TT16 regulates endothelium cell orientation and together with SEEDSTICK, another MADS box transcription factor, its patterning of periclinal cell divisions. Furthermore, we characterized the role of TT16 and its paralog GORDITA in the perception of the fertilization signals that coordinate the degeneration of the nucellus maternal tissue and the production of PAs in the endothelium. Finally, we discovered that the sub-epidermal integument cell layer, which originates form periclinal cell divisions of the endothelium under the control of TT16, is insensitive to the fertilization signals that regulate all other integument cell layers. Overall, the SEEDNET project has led the foundations for a model of maternal tissue development in A. thaliana and might open new ways to bioengineering both seed development and the flavonoid biosynthetic pathway in angiosperm seeds. The molecular pathways underlying the development of the endothelium that we discovered in A. thaliana are now being translated to other species. Last but not least, the grant has benefited the applicant’s reintegration as he is now a permanent researcher at the host institution.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Plant seeds are responsible for most of the world’s food supply and are important for the production of biofuels, fibers, and value-added chemicals. Seeds are also complex biological structures made of three genetically different tissues: the embryo, the endosperm that has nourishing functions and the seed coat that interfaces with the environment. The seed coat of the model plant Arabidopsis thaliana can be divided into five structurally different layers. The innermost layer, the endothelium, accumulates proanthocyanidins, strong antioxidant compounds that create a protective chemical and physical barrier, and coordinates seed growth in concert with the endosperm, embryo and other seed coat layers. From an applied perspective, the endothelium is responsible for the important agronomic trait of seed quality and growing evidence suggests that seed proanthocyanidins are beneficial for human health. Therefore, a deeper understanding of the molecular mechanisms underlying seed coat development might have profound scientific and practical implications.I propose a project aimed at elucidating the regulatory gene networks responsible for the development of the endothelium in A. thaliana. In order to achieve this goal, I propose to first dynamically profile the endothelium transcriptome through the INTACT method for individual cell types isolation. Second, I plan to start mapping regulatory gene networks by characterizing the downstream target genes of the TRANSPARENT TESTA 16 (TT16) transcription factor, known to play a key role in A. thaliana endothelium development. This study will be combined with a complementary analysis of TT16 protein complexes. Finally, the data obtained by each of the three project steps will be cross-analyzed in order to gain a broader understanding of the molecular processes underlying endothelium development and discover potentially novel genes involved in seed coat development to be further characterized.
Оригинален текст от CORDIS (на английски).
Участници
- INSTITUT NATIONAL DE RECHERCHE POUR L'AGRICULTURE, L'ALIMENTATION ET L'ENVIRONNEMENT · ParisКоординаторФранция
Връзки
Данни: CORDIS, © Европейски съюз
