Revealing the differential protein profiles behind the nitrogen use efficiency in popcorn (Zea mays var. everta)

揭示爆米花(Zea mays var. everta)氮利用效率背后的差异蛋白质谱

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作者:Shahid Khan #, Vitor Batista Pinto #, Antônio Teixeira do Amaral Júnior, Gabriel Moreno Bernardo Gonçalves, Caio Cézar Guedes Corrêa, Fernando Rafael Alves Ferreira, Guilherme Augusto Rodrigues de Souza, Eliemar Campostrini, Marta Simone Mendonça Freitas, Marlene Evangelista Vieira, Talles de Olivei

Abstract

We investigated the proteomic profiles of two popcorn inbred lines, P2 (N-efficient and N-responsive) and L80 (N-inefficient and nonresponsive to N), under low (10% of N supply) and high (100% of N supply) nitrogen environments, associated with agronomic- and physiological-related traits to NUE. The comparative proteomic analysis allowed the identification of 79 differentially accumulated proteins (DAPs) in the comparison of high/low N for P2 and 96 DAPs in the comparison of high/low N for L80. The NUE and N uptake efficiency (NUpE) presented high means in P2 in comparison to L80 at both N levels, but the NUE, NUpE, and N utilization efficiency (NUtE) rates decreased in P2 under a high N supply. DAPs involved in energy and carbohydrate metabolism suggested that N regulates enzymes of alternative pathways to adapt to energy shortages and that fructose-bisphosphate aldolase may act as one of the key primary nitrate responsive proteins in P2. Proteins related to ascorbate biosynthesis and nitrogen metabolism increased their regulation in P2, and the interaction of L-ascorbate peroxidase and Fd-NiR may play an important role in the NUE trait. Taken together, our results provide new insights into the proteomic changes taking place in contrasting inbred lines, providing useful information on the genetic improvement of NUE in popcorn.

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