Department of Plant and Soil Sciences, Oklahoma State University, Stillwater, OK, USA.
Plant Biotechnol J. 2018 Jun;16(6):1214-1226. doi: 10.1111/pbi.12864. Epub 2018 Jan 15.
Wheat (Triticum aestivum) has low nitrogen use efficiency (NUE). The genetic mechanisms controlling NUE are unknown. Positional cloning of a major quantitative trait locus for N-related agronomic traits showed that the vernalization gene TaVRN-A1 was tightly linked with TaNUE1, the gene shown to influence NUE in wheat. Because of an Ala /Val substitution, TaVRN-A1a and TaVRN-A1b proteins interact differentially with TaANR1, a protein encoded by a wheat orthologue of Arabidopsis nitrate regulated 1 (ANR1). The transcripts of both TaVRN-A1 and TaANR1 were down-regulated by nitrogen. TaANR1 was functionally characterized in TaANR1::RNAi transgenic wheat, and in a natural mutant with a 23-bp deletion including 10-bp at the 5' end of intron 5 and 13-bp of exon 6 in gDNA sequence in its gDNA sequence, which produced transcript that lacked the full 84-bp exon 6. Both TaANR1 and TaHOX1 bound to the Ala /Val position of TaVRN-A1. Genetically incorporating favourable alleles from TaVRN-A1, TaANR1 and TaHOX1 increased grain yield from 9.84% to 11.58% in the field. Molecular markers for allelic variation of the genes that regulate nitrogen can be used in breeding programmes aimed at improving NUE and yield in novel wheat cultivars.
小麦(Triticum aestivum)的氮利用效率(NUE)较低。控制 NUE 的遗传机制尚不清楚。对与 N 相关的农艺性状的一个主要数量性状位点的定位克隆表明,春化基因 TaVRN-A1 与 TaNUE1 紧密连锁,该基因被证明会影响小麦的 NUE。由于丙氨酸/缬氨酸取代,TaVRN-A1a 和 TaVRN-A1b 蛋白与 TaANR1 不同地相互作用,TaANR1 是拟南芥硝酸盐调控 1(ANR1)的小麦同源物编码的蛋白质。氮可下调 TaVRN-A1 和 TaANR1 的转录本。在 TaANR1::RNAi 转基因小麦和 gDNA 序列中包含内含子 5 的 5'端 10 个碱基和外显子 6 的 13 个碱基的 23 个碱基缺失的天然突变体中,对 TaANR1 进行了功能表征,导致转录本缺失完整的 84 个碱基外显子 6。TaANR1 和 TaHOX1 均与 TaVRN-A1 的丙氨酸/缬氨酸位置结合。在田间,将 TaVRN-A1、TaANR1 和 TaHOX1 的有利等位基因进行遗传融合,可使籽粒产量提高 9.84%至 11.58%。可用于新型小麦品种的氮利用效率和产量改良的、用于调控氮的基因等位变异的分子标记。