Molecular characterization of the genome-wide BOR transporter gene family and genetic analysis of BnaC04.BOR1;1c in Brassica napus
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Summary
The molecular characterization of the BnBOR genes of two B-efficient cultivars and their responses to B deficiency highlights the diversity of the family members in B. napus, and BnaC4 has potential as a candidate gene for improving B nutrition.
- Type
- article
- Published
- 2018-09-14
- Cited by
- 30
- References
- 50
- Access
- Open access
- OpenAlex
- https://openalex.org/W30217178
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:52275250
Keywords
Computer science
References
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Cited by
- Boron demanding tissues of Brassica napus express specific sets of functional Nodulin26‐like Intrinsic Proteins and BOR1 transporters
- Genome-Wide Analysis of Phosphorus Transporter Genes in Brassica and Their Roles in Heavy Metal Stress Tolerance
- Can silicon applied to correct soil acidity in combination with Azospirillum brasilense inoculation improve nitrogen use efficiency in maize?
- BnaA02.NIP6;1a encodes a boron transporter required for plant development under boron deficiency in Brassica napus.
- Regulation, Diversity, and Evolution of Boron Transporters in Plants.
- Vascular tissue-specific expression of BnaC4.BOR1;1c, an efflux boron transporter gene, is regulated in response to boron availability for efficient boron acquisition in Brassica napus
- Identification, Expression, and Interaction Analysis of Ovate Family Proteins in Populus trichocarpa Reveals a Role of PtOFP1 Regulating Drought Stress Response
- Boron Sensitivity and Storage in Brassica Napus and Its Potential for Clubroot Management
- Molecular Characterization, Evolutionary Analysis, and Expression Profiling of BOR Genes in Important Cereals
- Boron in plants: uptake, deficiency and biological potential
- Cleaved amplified polymorphic sequence (CAP) marker development and haplotype geographic distribution of TaBOR1.2 associated with grain number in common wheat in China
- Molecular characterization of the genome-wide BOR transporter family and their responses to boron conditions in common wheat (Triticum aestivum L.)
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- The Brassica napus boron deficient inflorescence transcriptome resembles a wounding and infection response.
- Exploring silique number in Brassica napus L.: Genetic and molecular advances for improving yield
- BnaA4.BOR2 contributes the tolerance of rapeseed to boron deficiency by improving the transport of boron from root to shoot.
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