Clifton-Brown J C, Lewandowski I, Bangerth F, Jones M B
Botany Department, Trinity College, University of Dublin, Dublin 2, Ireland.
Institut für Pflanzenbau und Grünland (340), Universität Hohenheim, D-70599 Stuttgart, Germany.
New Phytol. 2002 May;154(2):335-345. doi: 10.1046/j.1469-8137.2002.00381.x.
• Although hybrids of the perennial rhizomatous grass Miscanthus give high yields under irrigation, their use as a biomass crop in many locations is limited by inadequate water availability. Here, the effects of reduced water availability on growth are reported for three Miscanthus genotypes with differing responses to drought. • In a controlled environment experiment during a drought treatment M. sinensis hybrid (Sin-H6) had no detectable photosynthesis and negligible leaf conductance, whereas M. × giganteus (Gig-3) continued to photosynthesize and transpire but it shed leaf area through senescence. A M. sacchariflorus line (Sac-5) was generally intermediate in its response. Measurements on 3-y-old stands of Gig-3 and Sin-H6 in the field during a short summer drought in August 1999 confirmed the controlled environment observations. • Stay-green characteristics in Sin-H6 appeared to rely on tight control of transpiration through lowered leaf conductance, although the highest leaf ABA concentrations were not found in this genotype. • Stay-green genotypes, such as Sin-H6, are likely to be important for further breeding of Miscanthus because they appear to make the most effective use of available water.
• 尽管多年生根茎禾本科芒草的杂交种在灌溉条件下产量很高,但在许多地方,由于水资源供应不足,它们作为生物质作物的应用受到限制。在此,报告了水分供应减少对三种对干旱反应不同的芒草基因型生长的影响。
• 在干旱处理期间的一项受控环境实验中,中华芒草杂交种(Sin-H6)没有可检测到的光合作用,叶片导度可忽略不计,而巨芒(Gig-3)继续进行光合作用和蒸腾作用,但通过衰老脱落了叶面积。一个荻草品系(Sac-5)的反应通常处于中间水平。1999年8月夏季短期干旱期间,对田间3年生的Gig-3和Sin-H6植株的测量证实了受控环境实验的观察结果。
• Sin-H6的持绿特性似乎依赖于通过降低叶片导度来严格控制蒸腾作用,尽管该基因型中并未发现最高的叶片脱落酸浓度。
• 持绿基因型,如Sin-H6,对于芒草的进一步育种可能很重要,因为它们似乎能最有效地利用可用水分。