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Improved drought stress tolerance of white clover through hybridisation with Trifolium uniflorum L

机译:通过杂交用Trifolium Uniflorum L杂交改善白三叶草的干旱胁迫耐受性

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摘要

The objective of this study was to determine the effect of hybridisation with Trifolium uniflorum L. on drought resistance of Trifolium repens L. (white clover). Shoot dry weight of backcross 1 (BC1) hybrids was reduced less by water stress than for backcross 2 (BC2) hybrids and white clover, as were key morphological traits such as leaf area. Under water stress, important differences for the BC1 generation compared to white clover also included lower senescence, higher stolon density, increased rootdry weight, and a higher maximum nodal root diameter. Drought decreased the net photosynthetic rate by up to 48% in BC2 and white clover, but there was no significant effect on the BC1 generation. BC1 hybrids were therefore more resistant to water stress than white clover. Smaller effects on stolon morphology suggest BC1 hybrids were better able to maintain cell turgor and growth, and maintenance of photosynthesis under drought may have contributed to smaller reductions in productivity. The findings suggest that BC1 hybrids may be able to maintain higher water uptake during drought than white clover by increased allocation to root biomass.
机译:本研究的目的是确定杂交与三叶植物杂交的效果。在Trifolium Repens L的抗旱性抗旱。(白三叶草)。射击干重1(BC1)杂交物的水分缩小减少,水分胁迫低于回克2(BC2)杂种和白色三叶草,如叶面积的关键形态特征是诸如叶面积的关键形态特征。在水胁迫下,与白三叶草相比,BC1生成的重要差异也包括较低的衰老,更高的匍匐茎密度,增加的根重量和更高的最大节节根直径。干旱在BC2和白色三叶草中将净光合速率降低至48%,但对BC1的生成没有显着影响。因此,BC1杂种比白色三叶草更耐水胁迫。对Stolon形态的较小效果表明BC1杂种能够更好地维持细胞Turgor和生长,并且在干旱下的光合作用可能导致生产率的较小降低。研究结果表明,BC1杂种可能能够通过增加对根生物质的分配来维持比白三叶草在干旱期间的较高的水摄取。

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