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BrUGE1 transgenic rice showed improved growth performance with enhanced drought tolerance

机译:BrUGE1转基因水稻显示出改善的生长性能和增强的耐旱性

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摘要

UDP-glucose 4-epimerase (UGE) catalyzes the reversible conversion of UDP-glucose to UDP-galactose. To understand the biological function of UGE from Brassica rapa, the gene BrUGE1 was cloned and introduced into the genome of wild type rice ‘Gopum’ using the Agrobacterium-mediated transformation method. Four lines which carried a single copy gene were selected and forwarded to T3 generation. Agronomic traits evaluation of the transgenic T3 lines (CB01, CB03, and CB06) under optimal field conditions revealed enriched biomass production particularly in panicle length, number of productive tillers, number of spikelets per panicle, and filled spikelets. These remarkably improved agronomic traits were ascribed to a higher photosynthetic rate complemented with higher CO2 assimilation. Transcripts of BrUGE1 in transgenic lines continuously accumulated at higher levels after the 20% PEG6000 treatment, implying its probable role in drought stress regulation. This was paralleled by rapid accumulation of soluble sugars which act as osmoprotectants, leading to delayed leaf rolling and drying. Our findings suggest the potential of BrUGE1 in improving rice growth performance under optimal and water deficit conditions.
机译:UDP-葡萄糖4-表异构酶(UGE)催化UDP-葡萄糖向UDP-半乳糖的可逆转化。为了了解芸苔属植物UGE的生物学功能,使用农杆菌介导的转化方法克隆了BrUGE1基因并将其引入野生型水稻“ Gopum”的基因组中。选择携带单拷贝基因的四个品系,并转入T3代。在最佳田间条件下对转基因T3系(CB01,CB03和CB06)的农艺性状评估显示出丰富的生物量产量,特别是在穗长,生产分till数,每穗小穗数和实生小穗数方面。这些显着改善的农艺性状归因于较高的光合速率和较高的CO2同化率。在20%PEG6000处理后,转基因株系中的BrUGE1转录物持续以较高水平积累,这暗示其可能在干旱胁迫调节中发挥作用。与此同时,可溶性糖的快速积累也起渗透保护剂的作用,这导致叶片的滚动和干燥延迟。我们的发现表明,在最佳和缺水条件下,BrUGE1可以改善水稻的生长性能。

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