Impact of seed protein alleles from three soybean sources on seed composition and agronomic traits

被引:20
作者
Brzostowski, Lillian F. [1 ]
Pruski, Timothy I. [2 ]
Specht, James E. [3 ]
Diers, Brian W. [1 ]
机构
[1] Univ Illinois, Dept Crop Sci, 1101 W Peabody Dr, Urbana, IL 61801 USA
[2] Bayer CropSci, 21 Cty Rd 1200 North, White Heath, IL 61884 USA
[3] Univ Nebraska, Dept Agron & Hort, 363 Keim Hall, Lincoln, NE 68583 USA
关键词
PINK FLOWER; OIL CONTENT; QTL; REGISTRATION; YIELD; SELECTION; LOCI; POPULATIONS; VALIDATION; IDENTIFICATION;
D O I
10.1007/s00122-017-2961-x
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Evaluation of seed protein alleles in soybean populations showed that an increase in protein concentration is generally associated with a decrease in oil concentration and yield. Soybean [Glycine max (L.) Merrill] meal is one of the most important plant-based protein sources in the world. Developing cultivars high in seed protein concentration and seed yield is a difficult task because the traits have an inverse relationship. Over two decades ago, a protein quantitative trait loci (QTL) was mapped on chromosome (chr) 20, and this QTL has been mapped to the same position in several studies and given the confirmed QTL designation cqSeed protein-003. In addition, the wp allele on chr 2, which confers pink flower color, has also been associated with increased protein concentration. The objective of our study was to evaluate the effect of cqSeed protein-003 and the wp locus on seed composition and agronomic traits in elite soybean backgrounds adapted to the Midwestern USA. Segregating populations of isogenic lines were developed to test the wp allele and the chr 20 high protein QTL alleles from Danbaekkong (PI619083) and Glycine soja PI468916 at cqSeed protein-003. An increase in protein concentration and decrease in yield were generally coupled with the high protein alleles at cqSeed protein-003 across populations, whereas the effects of wp on protein concentration and yield were variable. These results not only demonstrate the difficulty in developing cultivars with increased protein and yield but also provide information for breeding programs seeking to improve seed composition and agronomic traits simultaneously.
引用
收藏
页码:2315 / 2326
页数:12
相关论文
共 68 条
[11]   Developing high-protein, high-yield soybean populations and lines [J].
Cober, ER ;
Voldeng, HD .
CROP SCIENCE, 2000, 40 (01) :39-42
[12]  
Cregan PB, 1997, DNA MARKERS, P173
[13]  
Crochet W.D., 2011, Uniform soybean tests northern states, 2009
[14]  
Cromwell G.L., 2012, Soybean meal: An exceptional protein source
[15]   Registration of 'LD00-3309' soybean [J].
Diers, BW ;
Cary, TR ;
Thomas, DJ ;
Nickell, CD .
CROP SCIENCE, 2006, 46 (03) :1384-1384
[16]   RFLP ANALYSIS OF SOYBEAN SEED PROTEIN AND OIL CONTENT [J].
DIERS, BW ;
KEIM, P ;
FEHR, WR ;
SHOEMAKER, RC .
THEORETICAL AND APPLIED GENETICS, 1992, 83 (05) :608-612
[17]   SOYBEAN SEED PROTEIN AND OIL CONTENTS AND FATTY-ACID COMPOSITION ADJUSTMENTS BY DROUGHT AND TEMPERATURE [J].
DORNBOS, DL ;
MULLEN, RE .
JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 1992, 69 (03) :228-231
[18]   Genetic control of soybean seed oil: II. QTL and genes that increase oil concentration without decreasing protein or with increased seed yield [J].
Eskandari, Mehrzad ;
Cober, Elroy R. ;
Rajcan, Istvan .
THEORETICAL AND APPLIED GENETICS, 2013, 126 (06) :1677-1687
[19]   Validation and designation of quantitative trait loci for seed protein, seed oil, and seed weight from two soybean populations [J].
Fasoula, VA ;
Harris, DK ;
Boerma, HR .
CROP SCIENCE, 2004, 44 (04) :1218-1225
[20]   STAGE OF DEVELOPMENT DESCRIPTIONS FOR SOYBEANS, GLYCINE-MAX (L) MERRILL [J].
FEHR, WR ;
CAVINESS, CE ;
BURMOOD, DT ;
PENNINGTON, JS .
CROP SCIENCE, 1971, 11 (06) :929-+