Methods and compositions for
The present disclosure provides for unique spinach plants with broad-spectrum resistance to downy mildew and their progeny. Such plants may comprise an introgressed QTL associated with the broad-spectrum resistance to downy mildew. In certain aspects, compositions, including distinct polymorphic molecular markers, and methods for producing, using, identifying, selecting, and the like of plants or germplasm with resistance to downy mildew are provided.
1. A method of selecting a plant with resistance to Peronospora farinosa f. sp. spinaciae comprising detecting in nucleic acids obtained from said plant the presence of at least a first genetic polymorphism in or in genetic linkage disequilibrium with a chromosomal segment from Spinacia tetrandra conferring said resistance, wherein the chromosomal segment is flanked in the genome of said plant by loci comprising SEQ ID NOs:1 and 2, or sequences at least 99% identical thereto, and wherein a representative sample of seed comprising said chromosomal segment has been deposited under Accession No. PTA-120533 or Accession No. PTA-120534.
2. The method of claim 1 , wherein the plant is a Spinacia oleracea plant comprising in its genome at least one introgressed locus from Spinacia tetrandra.
3. The method of claim 1 , wherein the plant is a Spinacia tetrandra plant.
4. The method of claim 1 , further comprising the step of confirming the presence of said broad-spectrum resistance with a phenotypic assay.
5. The method of claim 1 , further comprising crossing said plant comprising the chromosomal segment with another spinach plant to produce a progeny plant comprising said chromosomal segment.
6. A method of producing an agronomically elite spinach plant comprising broad-spectrum resistance to Peronospora farinosa f. sp. spinaciae , comprising introgressing into an agronomically elite Spinacia oleracea plant a chromosomal segment from Spinacia tetrandra that confers the resistance, wherein the chromosomal segment is located in a region of the Spinacia tetrandra genome flanked by loci comprising the Spinacia tetrandra allele in SEQ ID NOs: 1 and 2, or sequences at least 99% identical thereto, and wherein a representative sample of seed comprising said chromosomal segment has been deposited under Accession No. PTA-120533 or Accession No. PTA-120534.
7. The method of claim 6 , wherein said introgressing comprises recovering essentially all of the Spinacia oleracea genome in said plant other than said chromosomal segment by at least about 3-10 generations of backcrossing using a Spinacia oleracea plant as a recurrent parent.
8. The method of claim 6 , further comprising the step of confirming the presence of said broad-spectrum resistance by a phenotypic assay.
9. The method of claim 6 , further comprising identifying at least a first plant comprising said chromosomal segment, and crossing the plant comprising said chromosomal segment to another spinach plant to produce a progeny plant comprising said chromosomal segment.