Stress-induced expression of IPT gene in transgenic wheat reduces grain yield penalty under drought.

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Ailin Beznec, Paula Faccio, Daniel J Miralles, Leonor G Abeledo, Cecilia Decima Oneto, María de Belén Garibotto, Germán Gonzalez, Federico Moreyra, Matías Elizondo, Mónica Ruíz, Dalia Lewi, Eduardo Blumwald, Berta Llorente, Antonio Díaz Paleo, Ezequiel Bossio
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引用次数: 8

Abstract

Background: The heterologous expression of isopentenyl transferase (IPT) under the transcriptional control of the senescence-associated receptor-like kinase (SARK) promoter delayed cellular senescence and, through it, increased drought tolerance in plants. To evaluate the effect of pSARK::IPT expression in bread wheat, six independent transgenic events were obtained through the biolistic method and evaluated transgene expression, phenology, grain yield and physiological biomass components in plants grown under both drought and well-irrigating conditions. Experiments were performed at different levels: (i) pots and (ii) microplots inside a biosafety greenhouse, as well as under (iii) field conditions.

Results: Two transgenic events, called TR1 and TR4, outperformed the wild-type control under drought conditions. Transgenic plants showed higher yield under both greenhouse and field conditions, which was positively correlated to grain number (given by more spikes and grains per spike) than wild type. Interestingly, this yield advantage of the transgenic events was observed under both drought and well-watered conditions.

Conclusions: The results obtained allow us to conclude that the SARK promoter-regulated expression of the IPT gene in bread wheat not only reduced the yield penalty produced by water stress but also led to improved productivity under well-watered conditions.

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干旱胁迫下转基因小麦IPT基因的表达降低了籽粒产量损失。
背景:异戊烯基转移酶(IPT)在衰老相关受体样激酶(SARK)启动子转录控制下的异戊烯基转移酶(IPT)的异源表达延缓了细胞衰老,并通过它提高了植物的抗旱性。为了评价pSARK::IPT表达对面包小麦的影响,通过生物学方法获得了6个独立的转基因事件,并对干旱和井灌条件下小麦的转基因表达、物候、产量和生理生物量组成进行了评价。实验在不同的水平上进行:(i)盆栽和(ii)生物安全温室内的小块土地,以及(iii)田间条件下。结果:两个转基因事件TR1和TR4在干旱条件下表现优于野生型对照。转基因植株在温室和田间条件下均表现出比野生型更高的产量,且产量与粒数(以穗数和每穗粒数表示)呈正相关。有趣的是,这种转基因事件的产量优势在干旱和丰水条件下都被观察到。结论:研究结果表明,在水分充足的条件下,SARK启动子调控IPT基因在面包小麦中的表达不仅减少了水分胁迫造成的产量损失,而且提高了产量。
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