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Mining of Candidate Maize Genes for Nitrogen Use Efficiency by Integrating Gene Expression and QTL Data

机译:通过整合基因表达和QTL数据挖掘候选玉米基因的氮利用效率

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摘要

Breeding maize varieties for high nitrogen (N) use efficiency (NUE) by marker-assisted selection using NUE quantitative trait locus (QTL) or by genetic transfer of NUE-associated genes is a viable approach for increasing grain yield in N-limited production areas. In this investigation, we evaluated a set of introgression line populations under N supply and N deficiency conditions. From 42 QTLs for grain yield and yield components, 23 were identified under N supply conditions and 33 from N limited conditions. Meta-analysis of published maize NUE QTLs revealed 37 “consensus” QTLs, of which, 18 was detected under low N conditions. In addition, 258 unique ESTs associated with low N stress response, N uptake, transport, and assimilation were aligned on the maize genome by in silico mapping. Integrating the EST map with the QTL map has resulted in the identification of candidate NUE-associated genes of the following functional categories: N uptake, transport, and assimilation; carbon (C) metabolism and assimilation; and cascades of stress response and signal transduction genes. Nine candidates that have been introgressed into Ye478 significantly altered grain yield/yield components. It is suggested that the dynamics of interactions between C and N metabolism are important for maize yield. A high NUE variety should have a highly efficient C assimilation per unit N and actively express CO2 assimilation-related genes under N-limited conditions.
机译:通过使用NUE数量性状位点(QTL)进行标记辅助选择或通过NUE相关基因的遗传转移来育种高氮(N)利用效率的玉米品种,是在氮有限的生产地区提高谷物产量的可行方法。在这项调查中,我们评估了在氮供应和氮缺乏条件下的一组渗入系种群。从42个粮食单产和产量构成的QTL中,在氮供应条件下确定了23个,在氮有限条件下确定了33个。对已发表的玉米NUE QTL的荟萃分析揭示了37个“共识” QTL,其中18个在低氮条件下被检测到。另外,通过计算机作图,在玉米基因组上排列了258个与低氮胁迫反应,氮吸收,转运和同化相关的独特EST。将EST图与QTL图整合在一起,可以鉴定出以下功能类别的候选NUE相关基因:N吸收,转运和同化;碳(C)代谢和同化;以及应激反应和信号转导基因的级联进入Ye478的9个候选基因显着改变了谷物的产量/产量组成。研究表明,碳氮代谢之间的相互作用动力学对玉米产量很重要。高氮素品种应每单位N高效C同化,并在N限制条件下主动表达CO2 同化相关基因。

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