非生物成分
代谢物
生物
光合作用
营养物
非生物胁迫
作物
磷
扎梅斯
次生代谢物
农学
生物技术
生物化学
化学
生态学
基因
有机化学
作者
Rosimeire Barboza Bispo,Antônio Teixeira do Amaral Júnior,Vitor Batista Pinto,Talles de Oliveira Santos,Valter Jário de Lima,Bruna Rohem Simão,Anne Fischer,Michael J. Naldrett,Sophie Alvarez
标识
DOI:10.1021/acs.jproteome.3c00772
摘要
The expansion of agriculture and the need for sustainable practices drives breeders to develop plant varieties better adapted to abiotic stress such as nutrient deficiency, which negatively impacts yields. Phosphorus (P) is crucial for photosynthesis and plant growth, but its availability in the soil is often limited, hampering crop development. In this study, we examined the response of two popcorn inbred lines, L80 and P7, which have been characterized previously as P-use inefficient and P-use efficient, respectively, under low (stress) and high P (control) availability. Physiological measurements, proteomic analysis, and metabolite assays were performed to unravel the physiological and molecular responses associated with the efficient use of P in popcorn. We observed significant differences in protein abundances in response to the P supply between the two inbred lines. A total of 421 differentially expressed proteins (DEPs) were observed in L80 and 436 DEPs in P7. These proteins were involved in photosynthesis, protein biosynthesis, biosynthesis of secondary metabolites, and energy metabolism. In addition, flavonoids accumulated in higher abundance in P7. Our results help us understand the major components of P utilization in popcorn, providing new insights for popcorn molecular breeding programs.
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