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通过常规杂交将TaDREB3转基因导入面包小麦的不同遗传背景中可提高其耐旱性。

The TaDREB3 transgene transferred by conventional crossings to different genetic backgrounds of bread wheat improves drought tolerance.

作者信息

Shavrukov Yuri, Baho Manahil, Lopato Sergiy, Langridge Peter

机构信息

Australian Centre for Plant Functional Genomics, University of Adelaide, Urrbrae, SA, 5064, Australia.

出版信息

Plant Biotechnol J. 2016 Jan;14(1):313-22. doi: 10.1111/pbi.12385. Epub 2015 May 5.

Abstract

Drought tolerance of the wheat cultivar Bobwhite was previously enhanced by transformation with a construct containing the wheat DREB3 gene driven by the stress-inducible maize Rab17 promoter. Progeny of a single T2 transgenic line were used as pollinators in crosses with four elite bread wheat cultivars from Western Australia: Bonnie Rock, IGW-2971, Magenta and Wyalkatchem, with the aim of evaluating transgene performance in different genetic backgrounds. The selected pollinator line, BW8-9-10-3, contained multiple transgene copies, had significantly improved drought tolerance compared with wild-type plants and showed no growth and development penalties or abnormalities. A single hybrid plant was selected from each cross-combination for three rounds of backcrossing with the corresponding maternal wheat cultivar. The transgene was detected in all four F1 BC3 combinations, but stress-inducible transgene expression was found in only three of the four combinations. Under well-watered conditions, the phenotypes and grain yield components of the F2 BC3 transgene-expressing lines were similar to those of corresponding recurrent parents and null-segregants. Under severe drought conditions, the backcross lines demonstrated 12-18% higher survival rates than the corresponding control plants. Two from four F3 BC3 transgenic lines showed significantly higher yield (18.9% and 21.5%) than control plants under limited water conditions. There was no induction of transgene expression under cold stress, and therefore, no improvement of frost tolerance observed in the progenies of drought-tolerant F3 BC3 lines.

摘要

小麦品种博比特(Bobwhite)的耐旱性先前通过用一个构建体转化得到增强,该构建体包含由胁迫诱导型玉米Rab17启动子驱动的小麦DREB3基因。一个T2转基因单株系的后代被用作传粉者,与来自西澳大利亚的四个优良面包小麦品种杂交:邦妮·洛克(Bonnie Rock)、IGW - 2971、品红色(Magenta)和怀亚尔卡切姆(Wyalkatchem),目的是评估转基因在不同遗传背景下的表现。所选的传粉者系BW8 - 9 - 10 - 3含有多个转基因拷贝,与野生型植株相比耐旱性显著提高,且未表现出生长发育缺陷或异常。从每个杂交组合中选择一株杂种植物,与相应的母本小麦品种进行三轮回交。在所有四个F1 BC3组合中都检测到了转基因,但在四个组合中只有三个组合发现了胁迫诱导型转基因表达。在水分充足的条件下,F2 BC3转基因表达系的表型和籽粒产量构成与相应的轮回亲本和无转基因分离株相似。在严重干旱条件下,回交系的存活率比相应的对照植株高12% - 18%。在四个F3 BC3转基因系中,有两个在水分有限的条件下产量比对照植株显著更高(分别高18.9%和21.5%)。在冷胁迫下未诱导转基因表达,因此,在耐旱F3 BC3系的后代中未观察到抗冻性的提高。

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