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Homoeologous non-reciprocal translocation explains a major QTL for seed lignin content in oilseed rape (Brassica napus L.)

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논문

Homoeologous non-reciprocal translocation explains a major QTL for seed lignin content in oilseed rape (Brassica napus L.)

학술지

TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik

저자명

Schilbert, Hanna Marie; Holzenkamp, Karin; Viehö ver, Prisca; Holtgrä we, Daniela; Mö llers, Christian

초록

<P><B>Key message</B></P><P>A homoeologous non-reciprocal translocation was identified in the major QTL for seed lignin content in the low lignin line SGDH14. The lignin biosynthetic gene PAL4 was deleted.</P><P><B>Abstract</B></P><P>Oilseed rape is a major oil crop and a valuable protein source for animal and human nutrition. Lignin is a non-digestible, major component of the seed coat with negative effect on sensory quality, bioavailability and usage of oilseed rape&rsquo;s protein. Hence, seed lignin reduction is of economic and nutritional importance. In this study, the major QTL for reduced lignin content found on chromosome C05 in the DH population SGDH14 x Express&nbsp;617 was further examined. SGDH14 had lower seed lignin content than Express&nbsp;617. Harvested seeds from a F2 population of the same cross were additionally field tested and used for seed quality analysis. The F2 population showed a bimodal distribution for seed lignin content. F2 plants with low lignin content had thinner seed coats compared to high lignin lines. Both groups showed a dark seed colour with a slightly lighter colour in the low lignin group indicating that a low lignin content is not necessarily associated with yellow seed colour. Mapping of genomic long-reads from SGDH14 against the Express&nbsp;617 genome assembly revealed a homoeologous non-reciprocal translocation (HNRT) in the confidence interval of the major QTL for lignin content. A homologous A05 region is duplicated and replaced the C05 region in SGDH14. As consequence several genes located in the C05 region were lost in SGDH14. Thus, a HNRT was identified in the major QTL region for reduced lignin content in the low lignin line SGDH14. The most promising candidate gene related to lignin biosynthesis on C05, <I>PAL4</I>, was deleted. </P><P><B>Supplementary Information</B></P><P>The online version contains supplementary material available at 10.1007/s00122-023-04407-w.</P>

발행연도

2023

발행기관

Springer Berlin Heidelberg

ISSN

0040-5752

ISSN

1432-2242

136

8

페이지

pp.172

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1 2023-12-11

논문; 2023-07-13

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