首页> 美国卫生研究院文献>Frontiers in Plant Science >Cottonseed protein oil and mineral status in near-isogenic Gossypium hirsutum cotton lines expressing fuzzy/linted and fuzzless/linted seed phenotypes under field conditions
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Cottonseed protein oil and mineral status in near-isogenic Gossypium hirsutum cotton lines expressing fuzzy/linted and fuzzless/linted seed phenotypes under field conditions

机译:在田间条件下表达近等基因棉花陆地棉的棉籽蛋白油和矿物质状态表现出模糊/无绒和无绒/无绒种子表型

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摘要

Cotton is an important crop in the world and is a major source of oil for human consumption and cotton meal for livestock. Cottonseed nutrition (seed composition: protein, oil, and minerals) determines the quality of seeds. Therefore, maintaining optimum levels of cottonseed nutrition is critical. Physiological and genetic mechanisms controlling the levels of these constituents in cottonseed are still largely unknown. Our previous research conducted under greenhouse conditions showed that seed and leaf nutrition differed between fuzzless and fuzzy seed isolines. Therefore, the objective of this research was to investigate the seed fuzz phenotype (trait) effects on seed protein, oil, N, C, S, and minerals in five sets of near-isogenic mutant cotton lines for seed fuzz in a 2-year experiment under field condition to evaluate the stability of the effect of the trait on seed nutrition. The isolines (genotypes) in each set differ for the seed fuzz trait (fuzzless/linted seed line, N lines, and fuzzy/linted seed line, F lines). Results showed that seed protein was higher in the fuzzy genotype in all sets, but seed oil was higher in fuzzless genotype in all sets. The concentrations of seed Ca and C were higher in all fuzzless genotypes, but N, S, B, Fe, and Zn were higher in most of the fuzzy genotypes. Generally, minerals were higher in leaves of F lines, suggesting the translocation of minerals from leaves to seeds was limited. The research demonstrated that fiber development could be involved in cottonseed composition. This may be due to the involvement of fiber development in carbon and nitrogen metabolism, and the mobility of nutrients from leaves (source) to seed (sink). This information is beneficial to breeders to consider fuzzless cottonseed for potential protein and oil use and select for higher oil or higher protein content, and to physiologists to further understand the mobility of minerals to increase the quality of cottonseed nutrition for food and feed.
机译:棉花是世界上重要的农作物,是人类食用油和牲畜棉粕的主要来源。棉籽的营养(种子成分:蛋白质,油和矿物质)决定了种子的质量。因此,保持最佳棉籽营养水平至关重要。控制棉籽中这些成分水平的生理和遗传机制仍然未知。我们先前在温室条件下进行的研究表明,无绒和模糊种子等值线之间的种子和叶片营养有所不同。因此,本研究的目的是在2年内研究五种近等基因突变棉系种子绒毛表型(性状)对种子蛋白质,油,氮,碳,硫和矿物质的影响。在田间条件下进行试验,以评估该性状对种子营养的影响的稳定性。对于种子绒毛性状(无绒毛/无绒种子线,N线和模糊/绒毛的种子线,F线),每组中的等值线(基因型)不同。结果表明,在所有基因组中,种子蛋白在模糊基因型中均较高,但在无绒毛基因型中,籽油均较高。在所有无毛病基因型中,种子Ca和C的浓度均较高,但在大多数模糊基因型中,N,S,B,Fe和Zn的含量较高。通常,F系叶片中的矿物质含量较高,表明矿物质从叶片到种子的转运受到限制。研究表明,纤维的发育可能与棉籽成分有关。这可能是由于纤维发育参与了碳和氮的代谢,以及养分从叶(源)到种子(水槽)的迁移。该信息对于育种者考虑将无绒棉籽用于潜在的蛋白质和油脂用途并选择更高的油脂含量或更高的蛋白质含量有益,并且有助于生理学家进一步了解矿物质的流动性,从而提高用于食品和饲料的棉花籽营养的质量。

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