Gorim Linda Y, Vandenberg Albert
Pulse Group, Department of Plant Sciences, College of Agriculture and Bioresources, University of SaskatchewanSaskatoon, SK, Canada.
Front Plant Sci. 2017 Jun 29;8:1129. doi: 10.3389/fpls.2017.01129. eCollection 2017.
Increasingly unpredictable annual rainfall amounts and distribution patterns have far reaching implications for pulse crop biology. Seedling and whole plant survival will be affected given that water is a key factor in plant photosynthesis and also influences the evolving disease spectrum that affects crops. The wild relatives of cultivated lentil are native to drought prone areas, making them good candidates for the evaluation of drought tolerance traits. We evaluated root and shoot traits of genotypes of cultivated lentil and five wild species grown under two water deficit regimes as well as fully watered conditions over a 13 week period indoors. Plants were grown in sectioned polyvinyl chloride (PVC) tubes containing field soil from the A, B, and C horizons. We found that root distribution into different soil horizons varied among wild lentil genotypes. Secondly, wild lentil genotypes employed diverse strategies such as delayed flowering, reduced transpiration rates, reduced plant height, and deep root systems to either escape, evade or tolerate drought conditions. In some cases, more than one drought strategy was observed within the same genotype. Sequence based classification of wild and cultivated genotypes did not explain patterns of drought response. The environmental conditions at their centers of origin may explain the patterns of drought strategies observed in wild lentils. The production of numerous small seeds by wild lentil genotypes may have implications for yield improvement in lentil breeding programs.
年降雨量及其分布模式愈发难以预测,这对豆类作物生物学有着深远影响。鉴于水是植物光合作用的关键因素,且会影响影响作物的病害谱演变,所以幼苗和整株植物的存活都会受到影响。栽培小扁豆的野生近缘种原产于干旱易发地区,这使其成为评估耐旱性状的理想选择。我们在室内对栽培小扁豆和五个野生种的基因型在两种水分亏缺条件以及充分浇水条件下生长13周后的根和地上部分性状进行了评估。植株种植在装有来自A、B和C层田间土壤的分段聚氯乙烯(PVC)管中。我们发现,野生小扁豆基因型在不同土壤层中的根系分布各不相同。其次,野生小扁豆基因型采用了多种策略,如延迟开花、降低蒸腾速率、降低株高和深根系,以逃避、规避或耐受干旱条件。在某些情况下,同一基因型中观察到不止一种干旱应对策略。基于序列的野生和栽培基因型分类无法解释干旱响应模式。其起源中心的环境条件可能解释了在野生小扁豆中观察到的干旱应对策略模式。野生小扁豆基因型产生大量小种子可能对小扁豆育种计划中的产量提高有影响。