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Root Physiological Characteristics Associated with Drought Resistance in Tall Fescue Cultivars

机译:高羊茅品种的根系生理特性与抗旱性的关系

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Knowledge of root traits associated with drought tolerance is important for further understanding drought tolerance mechanisms of the whole plant. The experiment was designed to investigate effects of drought stress on root physiological activities of six cultivars (Kentucky-31, Falcon II, Houndog V, Phoenix, Rebel Jr., and Bonsai) of tall fescue (Festuca arundinacea Schreb.) varying in drought resistance. Grasses were grown in well-watered or drying (nonirrigated) soil for 35 d in a greenhouse. Drying reduced root length and dry mass in the 0- to 20-cm layer for all six cultivars. Root length and dry mass in the 40- to 60-cm layer was enhanced for Houndog V, Falcon II, and Kentucky-31; was not affected for Phoenix and Bonsai; and was reduced for Rebel Jr. by soil drying. Water uptake rates for Falcon II and Kentucky-31 decreased with soil drying in the 0- to 20-cm layer but increased in the 40- to 60-cm layer. Soil drying limited water uptake by Rebel Jr. in both layers. Drought stress increased root mortality in the 0- to 20-, 20- to 40-, and 40- to 60-cm layers, but the increase was most dramatic in the surface soil layer. The increase in root mortality in each soil layer was most severe for Rebel Jr. and least severe for Kentucky-31. Root death of tall fescue cultivars during drought was positively correlated with root desiccation, as evidenced by severe leakage of organic solutes from roots in drying soil. Carbohydrate supply to roots was not a contributor to root death during drought stress. This was supported by the increased or unaffected total nonstructural carbohydrates in both shoots and roots, and the increased C allocation to roots under soil drying conditions.
机译:了解与耐旱性有关的根系性状对于进一步了解整株植物的耐旱性机制很重要。该实验旨在调查干旱胁迫对高羊茅(Festuca arundinacea Schreb。)六个高羊茅(Kestucky-31,Falcon II,Houndog V,Phoenix,Rebel Jr.和Bonsai)根系生理活性的影响。 。将草在温室中浇水或干燥(未灌溉)的土壤中生长35 d。干燥减少了所有六个品种在0至20厘米层的根长和干重。 Houndog V,Falcon II和Kentucky-31增强了40至60 cm层的根长和干重。凤凰和盆景没有受到影响;并通过土壤干燥减少了Rebel Jr.的使用。随着土壤干燥,猎鹰II号和肯塔基州31号的吸水率在0至20厘米层下降,而在40至60厘米层上升。土壤干燥会限制Rebel Jr.在两层中的吸水量。干旱胁迫增加了0到20厘米,20到40厘米和40到60厘米层的根系死亡率,但这种增加在表层土壤层中最为明显。对于Rebel Jr.,每个土壤层中根系死亡率的增加最为严重,而肯塔基州31则最不严重。高干羊茅品种在干旱期间的根系死亡与根系干燥呈正相关,这可以通过干燥土壤中根系有机溶质的严重泄漏来证明。在干旱胁迫下,向根部供应碳水化合物并不是导致根部死亡的原因。这由芽和根中非结构性碳水化合物总量增加或未受影响以及土壤干燥条件下对根的碳分配增加所支持。

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