4.7 Article

Genetically Dissecting the Novel Powdery Mildew Resistance Gene in Wheat Breeding Line PBDH1607

Related references

Note: Only part of the references are listed.
Article Biotechnology & Applied Microbiology

Population genomic analysis of Aegilops tauschii identifies targets for bread wheat improvement

Kumar Gaurav et al.

Summary: The study sequenced 242 accessions of Aegilops tauschii and identified a rare lineage contributing to the wheat D subgenome. Through association mapping, genomic regions with candidate genes for disease and pest resistance were identified and successfully transferred into wheat. Exploiting the genomic diversity of the wild progenitor allows for rapid trait discovery and functional genetic validation.

NATURE BIOTECHNOLOGY (2022)

Article Agronomy

Characterization ofPm68, a new powdery mildew resistance gene on chromosome 2BS of Greek durum wheat TRI 1796

Huagang He et al.

Summary: A new powdery mildew resistance gene, Pm68, was identified in Greek durum wheat TRI 1796 on chromosome 2BS. This gene confers high resistance to 22 isolates of Blumeria graminis f. sp. tritici and could be a valuable resource for improving both common wheat and durum wheat through marker-assisted selection.

THEORETICAL AND APPLIED GENETICS (2021)

Article Plant Sciences

A highly differentiated region of wheat chromosome 7AL encodes a Pm1a immune receptor that recognizes its corresponding AvrPm1a effector from Blumeria graminis

Tim Hewitt et al.

Summary: The discovery of the first powdery mildew resistance gene Pm1a in wheat revealed its location in a distal region of chromosome 7AL suppressing genetic recombination. Through transformation, genome sequencing, and expression studies, the resistance mechanism of Pm1a was successfully identified and characterized.

NEW PHYTOLOGIST (2021)

Article Agronomy

Genetic mapping of a novel powdery mildew resistance gene in wild emmer wheat from Evolution Canyon in Mt. Carmel Israel

Huayan Yin et al.

Summary: Research has shown that resistance genes from wild relatives of wheat are effective in managing wheat powdery mildew. By genetic analysis and marker-assisted selection, a resistance gene for powdery mildew was successfully identified and can be used for breeding resistant wheat cultivars.

THEORETICAL AND APPLIED GENETICS (2021)

Article Plant Sciences

Characterization of PmDGM Conferring Powdery Mildew Resistance in Chinese Wheat Landrace Duanganmang

Yanan Wu et al.

Summary: This study identified the high resistance of wheat landrace Duanganmang (DGM) to Blumeria graminis f. sp. tritici isolate E09, controlled by a single dominant Mendelian factor, tentatively designated PmDGM. Marker analysis and SNP array scanning located this gene in the Pm5 interval, where it shares homology with NLR and RXL genes reported in Fuzhuang 30 (FZ30). Although DGM may have additional tightly linked resistance genes, it provides a valuable resource for improving powdery mildew resistance.

PLANT DISEASE (2021)

Article Genetics & Heredity

A high-quality genome assembly highlights rye genomic characteristics and agronomically important genes

Guangwei Li et al.

Summary: The study sequenced the genome of an elite Chinese rye variety, Weining rye, and found that the assembled contigs accounted for 98.47% of the estimated genome size. Further analysis revealed insights into gene duplications and their effects within rye.

NATURE GENETICS (2021)

Article Plant Sciences

Diagnostic Kompetitive Allele-Specific PCR Markers of Wheat Broad-Spectrum Powdery Mildew Resistance Genes Pm21, PmV, and Pm12 Developed for High-Throughput Marker-Assisted Selection

Xu Zhang et al.

Summary: The study identified SNPs in wheat powdery mildew genes Pm21, PmV, and Pm12, and developed KASP markers for diagnosis, which have the advantages of low cost, convenience, accuracy, and potential high throughput for MAS.

PLANT DISEASE (2021)

Review Plant Sciences

NLR immune receptors and diverse types of non-NLR proteins control race-specific resistance in Triticeae

Javier Sanchez-Martin et al.

Summary: Recent advances in sequencing and genomics have accelerated the identification of race-specific resistance (R) genes and their corresponding avirulence (Avr) genes in wheat, barley, rye, and their wild relatives. The diversity of proteins encoded by these genes suggests that polyploid cereal genomes have the potential to generate a variety of resistance genes.

CURRENT OPINION IN PLANT BIOLOGY (2021)

Article Plant Sciences

Characterization of the Powdery Mildew Resistance Gene in Wheat Breeding Line KN0816 and Its Evaluation in Marker-Assisted Selection

Wenrui Wang et al.

Summary: The Chinese wheat breeding line KN0816 possesses superior agronomic traits and resistance against powdery mildew due to the single dominant gene PmKN0816. This gene has been mapped to the Pm6 interval on chromosome arm 2BL and is expected to be a valuable asset in wheat breeding when transferred to different genetic backgrounds through marker-assisted selection.

PLANT DISEASE (2021)

Article Plant Sciences

Wheat Pm4 resistance to powdery mildew is controlled by alternative splice variants encoding chimeric proteins

Javier Sanchez-Martin et al.

Summary: The wheat Pm4 gene conferring race-specific powdery mildew resistance encodes a chimeric kinase-MCTP protein. Its two alternative splice variants interact to form an ER-associated complex and are both essential for resistance function.

NATURE PLANTS (2021)

Article Multidisciplinary Sciences

A rare gain of function mutation in a wheat tandem kinase confers resistance to powdery mildew

Ping Lu et al.

NATURE COMMUNICATIONS (2020)

Article Plant Sciences

A CNL protein in wild emmer wheat confers powdery mildew resistance

Miaomiao Li et al.

NEW PHYTOLOGIST (2020)

Article Plant Sciences

The NB-LRR gene Pm60 confers powdery mildew resistance in wheat

Shenghao Zou et al.

NEW PHYTOLOGIST (2018)

Article Biochemistry & Molecular Biology

Evolutionary divergence of the rye Pm17 and Pm8 resistance genes reveals ancient diversity

Simrat Pal Singh et al.

PLANT MOLECULAR BIOLOGY (2018)

Article Agronomy

Mapping of novel powdery mildew resistance gene(s) from Agropyron cristatum chromosome 2P

Huanhuan Li et al.

THEORETICAL AND APPLIED GENETICS (2017)

Article Multidisciplinary Sciences

The NBS-LRR architectures of plant R-proteins and metazoan NLRs evolved in independent events

Jonathan M. Urbach et al.

PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA (2017)

Article Biotechnology & Applied Microbiology

Rapid gene isolation in barley and wheat by mutant chromosome sequencing

Javier Sanchez-Martin et al.

GENOME BIOLOGY (2016)

Article Agronomy

Molecular mapping of a new powdery mildew resistance gene Pm2b in Chinese breeding line KM2939

Pengtao Ma et al.

THEORETICAL AND APPLIED GENETICS (2015)

Article Biotechnology & Applied Microbiology

Oligonucleotides replacing the roles of repetitive sequences pAs1, pSc119.2, pTa-535, pTa71, CCS1, and pAWRC.1 for FISH analysis

Zongxiang Tang et al.

JOURNAL OF APPLIED GENETICS (2014)

Article Multidisciplinary Sciences

Identification of Wheat Gene Sr35 That Confers Resistance to Ug99 Stem Rust Race Group

Cyrille Saintenac et al.

SCIENCE (2013)

Article Multidisciplinary Sciences

The Gene Sr33, an Ortholog of Barley Mla Genes, Encodes Resistance to Wheat Stem Rust Race Ug99

Sambasivam Periyannan et al.

SCIENCE (2013)

Article Biotechnology & Applied Microbiology

Genome sequencing reveals agronomically important loci in rice using MutMap

Akira Abe et al.

NATURE BIOTECHNOLOGY (2012)

Article Agronomy

Marker-assisted wheat breeding: present status and future possibilities

P. K. Gupta et al.

MOLECULAR BREEDING (2010)

Article Plant Sciences

Rapid generation of new powdery mildew resistance genes after wheat domestication

Nabila Yahiaoui et al.

PLANT JOURNAL (2006)