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玉米 ARGOS1(ZAR1)转基因等位基因增加杂交玉米产量。

Maize ARGOS1 (ZAR1) transgenic alleles increase hybrid maize yield.

机构信息

DuPont Pioneer, 7300 NW 62nd Ave, Johnston, Iowa 50131, USA.

出版信息

J Exp Bot. 2014 Jan;65(1):249-60. doi: 10.1093/jxb/ert370. Epub 2013 Nov 11.

Abstract

Crop improvement for yield and drought tolerance is challenging due to the complex genetic nature of these traits and environmental dependencies. This study reports that transgenic over-expression of Zea mays AR GOS1 (ZAR1) enhanced maize organ growth, grain yield, and drought-stress tolerance. The ZAR1 transgene exhibited environmental interactions, with yield increase under Temperate Dry and yield reduction under Temperate Humid or High Latitude environments. Native ZAR1 allele variation associated with drought-stress tolerance. Two founder alleles identified in the mid-maturity germplasm of North America now predominate in Pioneer's modern breeding programme, and have distinct proteins, promoters and expression patterns. These two major alleles show heterotic group partitioning, with one predominant in Pioneer's female and the other in the male heterotic groups, respectively. These two alleles also associate with favourable crop performance when heterozygous. Allele-specific transgene testing showed that, of the two alleles discussed here, each allele differed in their impact on yield and environmental interactions. Moreover, when transgenically stacked together the allelic pair showed yield and environmental performance advantages over either single allele, resembling heterosis effects. This work demonstrates differences in transgenic efficacy of native alleles and the differences reflect their association with hybrid breeding performance.

摘要

由于这些特性的复杂遗传性质和对环境的依赖,作物改良以提高产量和耐旱性具有挑战性。本研究报告称,过量表达玉米 AR GOS1(ZAR1)的转基因可增强玉米器官生长、籽粒产量和耐旱性。ZAR1 转基因表现出环境相互作用,在温带干旱条件下产量增加,在温带湿润或高纬度环境下产量减少。与耐旱性相关的天然 ZAR1 等位基因变异。在北美的中熟种质中鉴定出的两个起始等位基因现在在先锋的现代育种计划中占主导地位,并且具有不同的蛋白质、启动子和表达模式。这两个主要等位基因表现出杂种优势群的划分,一个在先锋的雌性杂种优势群中占优势,另一个在雄性杂种优势群中占优势。当杂合时,这两个等位基因也与有利的作物表现相关。等位基因特异性转基因测试表明,在所讨论的两个等位基因中,每个等位基因对产量和环境相互作用的影响不同。此外,当转基因叠加在一起时,等位基因对在产量和环境表现方面优于单个等位基因,类似于杂种优势效应。这项工作表明了天然等位基因的转基因功效的差异,这些差异反映了它们与杂种优势育种表现的关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c93/3883295/aad4b1ff304a/exbotj_ert370_f0001.jpg

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