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Resistance of Multiple Diploid and Tetraploid Perennial Ryegrass ( Lolium perenne L.) Varieties to Three Projected Drought Scenarios for the UK in 2080

机译:2080年英国多种二倍体和四倍体多年生黑麦草(Lolium perenne L.)品种对三种预计干旱情景的抗性

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Forage plants underpin the livestock industry. Selective breeding, including polyploidization, where genome size is increased by whole genome duplication, changes the productivity and stress tolerance of new varieties. We conducted a growth chamber experiment to investigate the likely responses of Lolium perenne L. to drought, testing four diploid and four tetraploid varieties. We simulated projected spring and summer temperatures for the South-West of England in 2080, applying three projected rainfall scenarios, which varied in drought severity. Drought caused a reduction in productivity, but there was substantial variation between varieties (up to 82%), with the optimal variety changing depending on drought severity. Across three harvests, productivity declined by 43% and 27% (dry biomass) for the severe and likely drought scenarios, respectively. In the final harvest, tetraploids exhibited a greater biomass under severe drought, whereas diploids had a greater biomass under the current rainfall and likely drought scenarios. Longer stomata were observed in tetraploids; however, stomatal conductance was not significantly different between ploidy levels. Trait selection will be important for future drought adaptation. Local climate projections will need to be consulted when selecting L. perenne varieties to tolerate the spatially variable reductions in future rainfall.
机译:饲草植物是畜牧业的基础。选择性育种,包括多倍体化,通过全基因组复制增加了基因组大小,从而改变了新品种的生产力和胁迫耐受性。我们进行了一个生长室实验,研究了黑麦草对干旱的可能响应,测试了四个二倍体和四个四倍体变种。我们使用三种预计的降雨情景模拟了英格兰西南部2080年春季和夏季的预计气温,干旱情景各不相同。干旱导致生产力下降,但不同品种之间差异很大(最高可达82%),最佳品种取决于干旱的严重程度。在三个收割季中,严重干旱和可能干旱情景下的生产力分别下降了43%和27%(干生物量)。在最终收成中,四倍体在严重干旱下表现出更大的生物量,而二倍体在当前降雨和可能的干旱情景下具有更大的生物量。四倍体中观察到更长的气孔;但是,倍性水平之间的气孔导度没有显着差异。性状选择对于未来干旱适应将是重要的。选择百日草(L. perenne)品种以容忍未来降雨的空间变化减少量时,需要参考当地的气候预测。

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