Results 211 to 220 of about 172,875 (261)
Correction to: A review of multimodal deep learning methods for genomic-enabled prediction in plant breeding. [PDF]
europepmc +1 more source
Modern Plant Breeding Techniques in Crop Improvement and Genetic Diversity: From Molecular Markers and Gene Editing to Artificial Intelligence-A Critical Review. [PDF]
Sun L +8 more
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Explainable artificial intelligence for genotype-to-phenotype prediction in plant breeding: a case study with a dataset from an almond germplasm collection. [PDF]
Novielli P +7 more
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Epigenetics and plant breeding. [PDF]
Abstract The amazing ability of epigenetic mechanisms to respond to a wide range of developmental and environmental signals in eukaryotes has earned them a lot of attention. Indeed, epigenetically regulated gene expression (variations in gene expression obtained without permanent alteration of the DNA sequence) is involved in ...
Rival, Alain, Jaligot, Estelle
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2014
TILLING is widely used in plant functional genomics. Mutagenesis and SNP detection is combined to allow for the isolation of mutations in genes of interest. It can also be used as a plant breeding tool, whereby variation in known or candidate genes of interest to breeding programs is generated. Here we describe a simple low-cost TILLING procedure.
Peter, Sharp, Chongmei, Dong
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TILLING is widely used in plant functional genomics. Mutagenesis and SNP detection is combined to allow for the isolation of mutations in genes of interest. It can also be used as a plant breeding tool, whereby variation in known or candidate genes of interest to breeding programs is generated. Here we describe a simple low-cost TILLING procedure.
Peter, Sharp, Chongmei, Dong
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Selection Methods in Plant Breeding
1995Population genetical aspects of cross-fertilization. Inbreeding. Assortative mating and disassortative mating. Population genetical effects of selection with regard to sex expression. Random variation of gene frequencies. Selection. Quantitative aspects. Quantitative characters.
Bos, I., Caligari, P.D.S.
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2001
Much of our most basic understanding of genetics has its roots in plant genetics and crop breeding. The study of plants has led to important insights into highly conserved biological process and a wealth of knowledge about development. Agriculture is now well positioned to take its share benefit from genomics.
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Much of our most basic understanding of genetics has its roots in plant genetics and crop breeding. The study of plants has led to important insights into highly conserved biological process and a wealth of knowledge about development. Agriculture is now well positioned to take its share benefit from genomics.
openaire +2 more sources
Because trace minerals are important not only for human nutrition, but for plant nutrition as well, plant breeding holds great promise for making a significant low-cost and sustainable contribution to reducing micronutrient deficiencies in humans, and may have important spinoff effects for increasing farm productivity in developing countries in an ...
Ruel, Marie T., Bouis, Howarth E.
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