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| 1 | Precision Phenotyping Reveals Novel Loci for Quantitative Resistance to Septoria Tritici Blotch显示文摘Accurate,high-throughput phenotyping for quantitative traits is a limiting factor for progress in plant breeding.We developed an automated image analysis to measure quantitative resistance to septoria tritici blotch(STB),a globally important wheat disease,enabling identification of small chromosome intervals containing plausible candidate genes for STB resistance.335 winter wheat cultivars were included in a replicated field experiment that experienced natural epidemic development by a highly diverse but fungicide-resistant pathogen population.More than 5.4 million automatically generated phenotypes were associated with 13,648 SNP markers to perform the GWAS.We identified 26 chromosome intervals explaining 1.9-10.6%of the variance associated with four independent resistance traits.Sixteen of the intervals overlapped with known STB resistance intervals,suggesting that our phenotyping approach can identify simultaneously(i.e.,in a single experiment)many previously defined STB resistance intervals.Seventeen of the intervals were less than 5 Mbp in size and encoded only 173 genes,including many genes associated with disease resistance.Five intervals contained four or fewer genes,providing high priority targets for functional validation.Ten chromosome intervals were not previously associated with STB resistance,perhaps representing resistance to pathogen strains that had not been tested in earlier experiments.The SNP markers associated with these chromosome intervals can be used to recombine different forms of quantitative STB resistance that are likely to be more durable than pyramids of major resistance genes.Our experiment illustrates how high-throughput automated phenotyping can accelerate breeding for quantitative disease resistance. | Steven Yates Alexey Mikaberidze Simon GKrattinger Michael Abrouk Andreas Hund Kang Yu Bruno Studer Simone Fouche Lukas Meile Danilo Pereira Petteri Karisto Bruce A.McDonald | 2019 | Plant Phenomics2019,1,1: | 2 |
| 2 | The genome of Theobroma cacao显示文摘 | Argout X Salse J Aury J M Guiltinan M J Droc G Gouzy J Allegre M Chaparro C Legavre T Maximova S N Abrouk M Murat F Fouet O Poulain J Ruiz M Roguet Y Rodier-Goud M Barbosa-Neto J F Sabot F Kudrna D Ammiraju J S Schuster S C Carlson J E Sallet E Sehiex T D | | 0,,: | 1 |
| 3 | Stem cells in plastic surgery: a review of current clinical and translational applications显示文摘 | Salibian AA Widgerow AD Abrouk M | 2013 | Arch Plast Surg2013,40,6: | 1 |
| 4 | Diagnosis of Cen- tral Venous Catheter-Related Sepsis 显示文摘 | Brun-Buison C Abrouk F Legrand P | 1987 | Survey of Anesthesi- ology1987,31,6: | 1 |
| 5 | Genomics in cereals:from genome-wide conserved orthologous(COS)sequences to candidate genes for trait dissection显示文摘 | QURAISHI UM ABROUK M BOLOT S | 2009 | Funct Integr Genomics2009,9,4: | 1 |
| 6 | Structure endothelial function cell growth and inflammation in blood vessel of Ang-Ⅱ -infused rats:Role of peroxisome proliferator-ac tivated receptor-γ 显示文摘 | Diep QN M abrouk ME Coh n JS | 2002 | Circulation2002,105,: | 1 |
| 7 | Genomics in cereals: from genome-wide conserved orthologous (COS) se- quences to candidate genes for trait dissection显示文摘 | QURAISHI U M ABROUK M BOLOT S | 2009 | Funct Integr Genomics2009,9,4: | 1 |
| 8 | Demyelinating disorders secondary to TNF-inhibitor therapy for the treatment of psoriasis: A review 显示文摘 | Zhu TH Nakamura M Abrouk M | 2016 | J Dermatolog Treat2016,18,: | 1 |
| 9 | Reconstruction of monocotelydoneous proto-chromosomes reveals faster evolution in plants than in animals显示文摘 | SALSE J ABROUK M BOLOT S | 2009 | Proc Natl Acad Sci USA2009,106,14: | 1 |
| 10 | Stem cells in plastic surgery: a review of current clinical and translational applications显示文摘 | Salibian AA Widgerow AD Abrouk M | 2013 | Arch Plast Surg2013,40,: | 1 |
| 11 | Stem cells in plastic surgery:a review of current clinical and translational applications 显示文摘 | Salibian AA Widgerow AD Abrouk M | 2013 | Arch Plast Surg2013,40,6: | 1 |
| 12 | Implications of carbon catabolite repression for plant–microbe interactions显示文摘Carbon catabolite repression(CCR)plays a key role in many physiological and adaptive responses in a broad range of microorganisms that are commonly associated with eukaryotic hosts.When a mixture of different carbon sources is available,CCR,a global regulatory mechanism,inhibits the expression and activity of cellular processes associated with utilization of secondary carbon sources in the presence of the preferred carbon source.CCR is known to be executed by completely different mechanisms in different bacteria,yeast,and fungi.In addition to regulating catabolic genes,CCR also appears to play a key role in the expression of genes involved in plant–microbe interactions.Here,we present a detailed overview of CCR mechanisms in various bacteria.We highlight the role of CCR in beneficial as well as deleterious plant–microbe interactions based on the available literature.In addition,we explore the global distribution of known regulatory mechanisms within bacterial genomes retrieved from public repositories and within metatranscriptomes obtained from different plant rhizospheres.By integrating the available literature and performing targeted meta-analyses,we argue that CCR-regulated substrate use preferences of microorganisms should be considered an important trait involved in prevailing plant–microbe interactions. | Theophile Franzino Hasna Boubakri Tomislav Cernava Danis Abrouk Wafa Achouak Sylvie Reverchon William Nasser Feth el Zahar Haichar | 2022 | Plant Communications2022,3,2: | 0 |