Ellis Marc H, Rebetzke Greg J, Chandler Peter, Bonnett David, Spielmeyer Wolfgang, Richards Richard A
CSIRO Plant Industry, GPO Box 1600, Canberra, ACT 2601, Australia.
Funct Plant Biol. 2004 Jul;31(6):583-589. doi: 10.1071/FP03207.
Genes that reduce height without compromising seedling vigour or coleoptile length have great potential for wheat improvement. We therefore investigated the effects of various reduced height (Rht) genes on the early stages of plant development, using a combination of near isogenic, recombinant, mutant and wild type comparisons. Gibberellin (GA) insensitivity caused by Rht-B1b or Rht-D1b was associated with reduced leaf elongation rate and coleoptile length. Similar results were found for two other sources of dwarfing, Rht11 and Rht17. We found one class of Rht genes (e.g. Rht8) which had no effect on coleoptile length, leaf elongation rate or responsiveness to GA, indicating that these dwarfing genes may act later in wheat development to reduce height and increase harvest index, without affecting early growth. A third class of Rht genes was found in three durum backgrounds. These had reduced coleoptile lengths and leaf elongation rates, but had a greater response to GA than the corresponding tall varieties. We discuss these results in relation to the possible mechanisms underlying the reduction in height and the suitability of the different Rht genes for wheat improvement.
在不影响幼苗活力或胚芽鞘长度的情况下降低株高的基因对小麦改良具有巨大潜力。因此,我们通过近等基因系、重组体、突变体和野生型比较相结合的方法,研究了各种矮秆(Rht)基因对植物发育早期阶段的影响。由Rht - B1b或Rht - D1b引起的赤霉素(GA)不敏感性与叶片伸长率降低和胚芽鞘长度缩短有关。对于另外两个矮化来源Rht11和Rht17也发现了类似结果。我们发现一类Rht基因(如Rht8)对胚芽鞘长度、叶片伸长率或对GA的反应没有影响,这表明这些矮化基因可能在小麦发育后期起作用以降低株高并提高收获指数,而不影响早期生长。在三个硬粒小麦背景中发现了第三类Rht基因。这些基因的胚芽鞘长度和叶片伸长率降低,但比相应的高秆品种对GA的反应更大。我们结合株高降低的潜在机制以及不同Rht基因对小麦改良的适用性来讨论这些结果。