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Phenotypic variations between non-transgenic and transgenic maize hybrids.

机译:非转基因和转基因玉米杂交种之间的表型变异。

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The use of transgenic maize (Zea mays L.) hybrids (Bt, RR, Bt-RR) has simplified crop husbandry, mainly due to a more effective control of pests and weeds. The effects of transgenes insertion on phenotypic traits of maize hybrids are not fully documented, especially without the incidence of pests and weeds. The objectives of this work were (i) to establish phenotypic differences in terms of phenology, growth and yield among a non-transgenic maize hybrid and their transgenic versions (Bt hybrid, RR hybrid and Bt-RR hybrid) and among the transgenic versions of other genetic background and (ii) to analyze the impact of crowding stress on inter-plant variability of the different traits under study. Field experiments were conducted in Buenos Aires (34 degrees 36'S, 58 degrees 26'W), Argentina during 2008-2009 (Exp 1), 2009-2010 (Exp 2) and 2010-2011 (Exp 3). Genotypes were cultivated at contrasting plant densities (6 and 12 pl m-2 in Exp 1 and Exp 2) and with contrasting inter-plant spaces within the row (Exp 3), irrigated, without nutrient limitations, and with chemical and mechanical controls of weed and animal pests. At both plant densities, phenotypic variability of several traits among versions within each group was recorded. For example, the RR version of DK747 group had the shortest thermal time to flowering. The stacked transgenic hybrids DK747MGRR and DK190MGRR, exhibited the highest ear growth rate (EGRCP) during the critical period for kernel set. However, both genotypes had the lowest reproductive efficiency (i.e. kernel number per unit of EGRCP), that counterbalanced their higher EGRCP. Only the Bt-RR version of DK747 showed a higher inter-plant variability (CV) of EGRCP at low mean EGRCP values a symptom of the intolerance of this genotype to crowing stress. Consequently, the different versions of each group of hybrids had a similar kernel number per plant and grain yield. We conclude that the introduction of transgenes may alter in some way, the behavior of plants in different eco-physiological aspects in the absence of pests and weeds.
机译:转基因玉米(Zea mays L.)杂交种(Bt,RR,Bt-RR)的使用简化了作物饲养,这主要是由于能够更有效地控制害虫和杂草。尚未充分证明转基因插入对玉米杂交种表型性状的影响,特别是没有病虫害和杂草发生的情况。这项工作的目的是(i)在非转基因玉米杂种及其转基因版本(Bt杂种,RR杂种和Bt-RR杂种)之间以及在非转基因玉米杂种的转基因版本之间建立物候,生长和产量方面的表型差异。其他遗传背景;(ii)分析胁迫对研究中不同性状植物间变异的影响。在2008-2009年(Exp 1),2009-2010年(Exp 2)和2010-2011年(Exp 3)期间,在阿根廷的布宜诺斯艾利斯(34度36'S,58度26'W)进行了现场试验。以不同的植物密度(Exp 1和Exp 2中的6和12 pl m -2 )和在行内(Exp 3)中具有不同植物间空间的情况下种植基因型,灌溉时没有营养限制,并对杂草和动物害虫进行化学和机械控制。在两种植物密度下,记录了每组内各版本之间几个性状的表型变异性。例如,RR747型DK747组的开花时间最短。堆叠的转基因杂种DK747MGRR和DK190MGRR在籽粒集的关键时期表现出最高的耳朵生长速率(EGR CP )。但是,两种基因型的繁殖效率最低(即每单位EGR CP 的内核数),抵消了它们较高的EGR CP 。只有DK747的Bt-RR版本在较低的平均EGR CP 值下表现出较高的EGR CP 植物间变异性(CV),该基因型不耐受的症状是啼叫。因此,每组杂种的不同版本的单株籽粒数和谷物产量相似。我们得出的结论是,在没有害虫和杂草的情况下,转基因的引入可能会在某种程度上改变植物在不同生态生理方面的行为。

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