Pradhan Gautam P, Prasad P V Vara, Fritz Allan K, Kirkham Mary B, Gill Bikram S
Department of Agronomy, Kansas State University, 2004 Throckmorton Plant Sciences Center, Manhattan, KS 66506, USA.
Department of Plant Pathology, Kansas State University, 4024 Throckmorton Plant Sciences Center, Manhattan, KS 66506, USA.
Funct Plant Biol. 2012 Feb;39(1):51-59. doi: 10.1071/FP11171.
Drought stress is an important abiotic factor limiting wheat yield. Thirty-one accessions of Aegilops species belonging to five species were screened to identify species/accessions tolerant to drought stress and to measure traits associated with the tolerance. Plants were grown at full irrigation, 25/19°C day/night temperature and an 18h photoperiod. At anthesis (Feekes 10.5.1), drought stress was imposed by withholding water for 16 days. Controls were continuously irrigated. Drought stress decreased chlorophyll content, grain number, individual grain weight and grain yield by 31, 25, 68 and 76% compared with the control. Aegilops geniculata Roth had greater tolerance to drought stress for yield (48% decline from control) compared with other species (>73% decline from control). The tolerance was associated with higher grain number spike-1 and heavier grains. A. geniculata, GenBank accession number TA 10437, was highly tolerant to drought stress with <20% yield decline and a drought stress susceptibility index (DSI) <0.5, whereas TA 1802, TA 2061, TA 1814, TA 1819 were identified as moderately tolerant to drought stress (20-40% yield decline and DSI<1.0). Our results suggest a presence of genetic variability among Aegilops species that can be utilised in breeding wheat for tolerance to drought stress at reproductive stages.
干旱胁迫是限制小麦产量的重要非生物因素。对属于5个物种的31份节节麦材料进行了筛选,以鉴定耐旱的物种/材料,并测定与耐旱性相关的性状。植株在充分灌溉、日/夜温度为25/19°C和光周期为18小时的条件下生长。在抽穗期(Feekes 10.5.1),通过停水16天施加干旱胁迫。对照组持续灌溉。与对照相比,干旱胁迫使叶绿素含量、粒数、单粒重和籽粒产量分别降低了31%、25%、68%和76%。与其他物种(对照下降>73%)相比,弯穗山羊草对干旱胁迫下的产量具有更高的耐受性(比对照下降48%)。这种耐受性与每穗粒数较多和籽粒较重有关。弯穗山羊草(GenBank登录号TA 10437)对干旱胁迫具有高度耐受性,产量下降<20%,干旱胁迫敏感指数(DSI)<0.5,而TA 1802、TA 2061、TA 1814、TA 1819被鉴定为中度耐旱(产量下降20-40%,DSI<1.0)。我们的结果表明,节节麦物种间存在遗传变异,可用于培育在生殖阶段耐旱的小麦品种。