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Relative NaCl Tolerance of Kentucky Bluegrass, Texas Bluegrass, and Their Hybrids

机译:肯塔基州蓝草,德克萨斯州蓝草及其杂种的相对NaCl耐受性

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Government regulations to force water conservation have escalated the use of secondary water high in soluble salts for turfgrass irrigation in the arid and semiarid western USA, thus increasing the need for more salt-tolerant turfgrasses. This study was initiated to determine the variability in salt tolerance within and among two Poa species and their hybrids. Two experiments were conducted during 2000 in the greenhouse at Fort Collins, CO, in solution culture to examine the effects of NaCl on leaf firing and shoot and root growth reduction of nine Kentucky bluegrass (KBG; Poa pratensis L.) cultivars representing three ecotypes, three Texas bluegrass (TBG; P arachnifera Torr.) accessions, and five of their hybrids (P pratensis ?— P arachnifera). In Exp. I, conducted during late winter through spring 2000, overall salt tolerance based on leaf firing and electrical conductivity (EC) of 50% shoot growth reduction (ECshoot 50) placed seven KBG cultivars in the most tolerant group. In Exp. II, conducted during summer though early fall 2000, overall salt tolerance rankings placed 4 KBG and 3 TBG cultivars in the most tolerant group. On the basis of percentage leaf firing and the salinity levels that caused 25 and 50% shoot growth reduction, compact (low, compact growth habit) and aggressive (aggressive, lateral growth habit) KBG ecotypes showed more salt tolerance than common ecotypes in both Exp. I and II. A broad range of variability in leaf firing and shoot and root growth reduction in response to salinity was found to exist within and among these Poa species and their hybrids, indicating that improvement in the salt tolerance of bluegrasses may be possible. Additionally, differences in salt tolerance of KBG and TBG between Exp. I and Exp. II suggested that environmental conditions could affect bluegrass salt tolerance expression.
机译:在美国西部干旱和半干旱地区,政府强制执行节水措施的法规已逐步增加使用可溶性盐含量较高的二次水灌溉草皮草,从而增加了对更多耐盐草皮草的需求。这项研究的开始是为了确定两种Poa物种及其杂种内部和之间的耐盐性差异。在2000年期间,在科罗拉多州柯林斯堡的温室中进行了两个溶液培养实验,研究了NaCl对9种代表三种生态型的肯塔基州早熟禾(KBG; Poa pratensis L.)品种的生叶和芽苗和根系生长减少的影响, 3个德克萨斯州蓝草(TBG;拟南芥)品种,和5个其杂种(P pratensis?—拟南芥)。在实验中我在冬季后期至2000年春季进行的试验中,基于叶片燃烧和50%枝条生长的电导率(ECshoot 50)(ECshoot 50)得出的总体耐盐性将7个KBG品种置于最耐性组中。在实验中II,在夏季至2000初秋期间进行,总体耐盐性排名将4 KBG和3 TBG品种置于耐受性最高的组中。根据叶片烧成百分比和盐度水平导致枝条生长减少25%和50%的结果,紧凑型(低,紧凑型生长习性)和攻击性(侵略性,侧向生长习性)KBG生态型在两个实验中均显示出比普通生态型更高的耐盐性。我和我发现在这些Poa物种及其杂种内和之间存在着广泛的叶片烘烤和枝条变化以及因盐分而引起的根系生长减少的现象,这表明提高蓝草的耐盐性是可能的。此外,Exp。之间的KBG和TBG耐盐性差异。我和Exp。 II建议环境条件可能会影响蓝草耐盐性的表达。

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