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Expression of Arabidopsis Bax Inhibitor-1 in transgenic sugarcane confers drought tolerance

机译:拟南芥Bax抑制剂-1在转基因甘蔗中的表达赋予耐旱性

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The sustainability of global crop production is critically dependent on improving tolerance of crop plants to various types of environmental stress. Thus, identification of genes that confer stress tolerance in crops has become a top priority especially in view of expected changes in global climatic patterns. Drought stress is one of the abiotic stresses that can result in dramatic loss of crop productivity. In this work, we show that transgenic expression of a highly conserved cell death suppressor, Bax Inhibitor-1 from Arabidopsis thaliana (AtBI-1), can confer increased tolerance of sugarcane plants to long-term (>20 days) water stress conditions. This robust trait is correlated with an increased tolerance of the transgenic sugarcane plants, especially in the roots, to induction of endoplasmic reticulum (ER) stress by the protein glycosylation inhibitor tunicamycin. Our findings suggest that suppression of ER stress in C-4 grasses, which include important crops such as sorghum and maize, can be an effective means of conferring improved tolerance to long-term water deficit. This result could potentially lead to improved resilience and yield of major crops in the world.
机译:全球作物产量的可持续性主要取决于改善作物植物对各种类型的环境压力的耐受性。因此,鉴定作物胁迫耐受性的基因已成为最重要的优先级,特别是鉴于全球气候模式的预期变化。干旱胁迫是可能导致作物生产率急剧丧失的非生物应激之一。在这项工作中,我们表明高度保守的细胞死亡抑制器,来自拟南芥(ATBI-1)的BAX抑制剂-1的转基因表达可以赋予甘蔗植物的耐受性增加,以长期(> 20天)水胁迫条件。这种稳健的性状与转基因甘蔗植物的耐受性增加,特别是在根系中的转基因甘蔗植物的耐受性增加,以诱导蛋白质糖基化抑制剂胞苷的内质网(ER)应力。我们的研究结果表明,C-4草中的ER应激抑制,包括高粱和玉米等重要作物,可以是赋予对长期水缺陷的改善耐受性的有效手段。这一结果可能导致世界各大作物的复原力和产量提高。

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