Proteomics analysis of round and wrinkled pea (Pisum sativum L.) seeds during different development periods

被引:1
作者
Daba, Sintayehu D. [1 ]
Panda, Punyatoya [2 ]
Aryal, Uma K. [2 ,3 ]
Kiszonas, Alecia M. [1 ]
Finnie, Sean M. [1 ]
McGee, Rebecca J. [4 ]
机构
[1] USDA ARS, Western Wheat & Pulse Qual Lab, Pullman, WA USA
[2] Purdue Univ, Dept Comparat Pathobiol, W Lafayette, IN USA
[3] Purdue Univ, Bindley Biosci Ctr, Purdue Prote Facil, W Lafayette, IN USA
[4] USDA ARS, Grain Legume Genet & Physiol Res Unit, Pullman, WA 99164 USA
关键词
differentially abundant proteins; label-free proteomics; protein functional classes; round and wrinkled peas; AMINO-ACIDS; BIOSYNTHESIS; STARCH; ACCUMULATION; METABOLISM; CHARACTER; MAP65-1; GROWTH; GENES; LOCI;
D O I
10.1002/pmic.202300363
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Seed development is complex, influenced by genetic and environmental factors. Understanding proteome profiles at different seed developmental stages is key to improving seed composition and quality. We used label-free quantitative proteomics to analyze round and wrinkled pea seeds at five growth stages: 4, 7, 12, 15, and days after anthesis (DAA), and at maturity. Wrinkled peas had lower starch content (30%) compared to round peas (47%-55%). Proteomic analysis identified 3659 protein groups, with 21%-24% shared across growth stages. More proteins were identified during early seed development than at maturity. Statistical analysis found 735 significantly different proteins between wrinkled and round seeds, regardless of the growth stage. The detected proteins were categorized into 31 functional classes, including metabolic enzymes, proteins involved in protein biosynthesis and homeostasis, carbohydrate metabolism, and cell division. Cell division-related proteins were more abundant in early stages, while storage proteins were more abundant later in seed development. Wrinkled seeds had lower levels of the starch-branching enzyme (SBEI), which is essential for amylopectin biosynthesis. Seed storage proteins like legumin and albumin (PA2) were more abundant in round peas, whereas vicilin was more prevalent in wrinkled peas. This study enhances our understanding of seed development in round and wrinkled peas.The study highlighted the seed growth patterns and protein profiles in round and wrinkled peas during seed development. It showed how protein accumulation changed, particularly focusing on proteins implicated in cell division, seed reserve metabolism, as well as storage proteins and protease inhibitors. These findings underscore the crucial role of these proteins in seed development. By linking the proteins identified to Cameor-based pea reference genome, our research can open avenues for deeper investigations into individual proteins, facilitate their practical application in crop improvement, and advance our knowledge of seed development.
引用
收藏
页数:13
相关论文
共 50 条
[1]  
AACC Approved Methods of Analysis, 1999, 11 METHOD 761301 TOT, DOI [10.1094/AACCIntMethod-76-13.01, DOI 10.1094/AACCINTMETHOD-76-13.01]
[2]   The metabolic roles of free amino acids during seed development [J].
Amir, Rachel ;
Galili, Gad ;
Cohen, Hagai .
PLANT SCIENCE, 2018, 275 :11-18
[3]   A Proteomic Strategy for Global Analysis of Plant Protein Complexes [J].
Aryal, Uma K. ;
Xiong, Yi ;
McBride, Zachary ;
Kihara, Daisuke ;
Xie, Jun ;
Hall, Mark C. ;
Szymanski, Daniel B. .
PLANT CELL, 2014, 26 (10) :3867-3882
[4]   Quantitative mass spectrometry in proteomics: a critical review [J].
Bantscheff, Marcus ;
Schirle, Markus ;
Sweetman, Gavain ;
Rick, Jens ;
Kuster, Bernhard .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2007, 389 (04) :1017-1031
[5]  
Bareke T, 2018, Advances in Plants & Agriculture Research, V8, DOI [10.15406/apar.2018.08.00335, 10.15406/apar.2018.08.00325, DOI 10.15406/APAR.2018.08.00335, 10.15406/apar.2018.08.00335]
[6]   THE IMPORTANCE OF STARCH BIOSYNTHESIS IN THE WRINKLED SEED SHAPE CHARACTER OF PEAS STUDIED BY MENDEL [J].
BHATTACHARYYA, M ;
MARTIN, C ;
SMITH, A .
PLANT MOLECULAR BIOLOGY, 1993, 22 (03) :525-531
[7]   THE WRINKLED-SEED CHARACTER OF PEA DESCRIBED BY MENDEL IS CAUSED BY A TRANSPOSON-LIKE INSERTION IN A GENE ENCODING STARCH-BRANCHING ENZYME [J].
BHATTACHARYYA, MK ;
SMITH, AM ;
ELLIS, THN ;
HEDLEY, C ;
MARTIN, C .
CELL, 1990, 60 (01) :115-122
[8]   Enzymatic breakdown of raffinose oligosaccharides in pea seeds [J].
Bloechl, Andreas ;
Peterbauer, Thomas ;
Hofmann, Julia ;
Richter, Andreas .
PLANTA, 2008, 228 (01) :99-110
[9]   The effect of mutant genes at the r, rb, rug3, rug4, rug5 and lam loci on the granular structure and physico-chemical properties of pea seed starch [J].
Bogracheva, TY ;
Cairns, P ;
Noel, TR ;
Hulleman, S ;
Wang, TL ;
Morris, VJ ;
Ring, SG ;
Hedley, CL .
CARBOHYDRATE POLYMERS, 1999, 39 (04) :303-314
[10]   Dissecting the proteome of pea mature seeds reveals the phenotypic plasticity of seed protein composition [J].
Bourgeois, Michael ;
Jacquin, Francoise ;
Savois, Vincent ;
Sommerer, Nicolas ;
Labas, Valerie ;
Henry, Celine ;
Burstin, Judith .
PROTEOMICS, 2009, 9 (02) :254-271