Weller J. L., Nagatani A., Kendrick R. E., Murfet I. C., Reid J. B.
Department of Plant Science, University of Tasmania, GPO Box 252C, Hobart, Tasmania 7001, Australia (J.L.W., I.C.M., J.B.R.).
Plant Physiol. 1995 Jun;108(2):525-532. doi: 10.1104/pp.108.2.525.
The lv-1 mutant of pea (Pisum sativum L.) is deficient in responses regulated by phytochrome B (phyB) in other species but has normal levels of spectrally active phyB. We have characterized three further lv mutants (lv-2, lv-3, and lv-4), which are all elongated under red (R) and white light but are indistinguishable from wild type under far-red light. The phyB apoprotein present in the lv-1 mutant was undetectable in all three new lv mutants. The identification of allelic mutants with and without phyB apoprotein suggests that Lv may be a structural gene for a B-type phytochrome. Furthermore, it indicates that the lv-1 mutation results specifically in the loss of normal biological activity of this phytochrome. Red-light-pulse and fluence-rate-response experiments suggest that lv plants are deficient in the low-fluence response (LFR) but retain a normal very-low-fluence-rate-dependent response for leaflet expansion and inhibition of stem elongation. Comparison of lv alleles of differing severity indicates that the LFR for stem elongation can be mediated by a lower level of phyB than the LFR for leaflet expansion. The retention of a strong response to continuous low-fluence-rate R in all four lv mutants suggests that there may be an additional phytochrome controlling responses to R in pea. The kinetics of phytochrome destruction and reaccumulation in the lv mutant indicate that phyB may be involved in the light regulation of phyA levels.
豌豆(Pisum sativum L.)的lv-1突变体在其他物种中由光敏色素B(phyB)调节的反应方面存在缺陷,但具有光谱活性的phyB水平正常。我们鉴定了另外三个lv突变体(lv-2、lv-3和lv-4),它们在红光(R)和白光下均伸长,但在远红光下与野生型无差异。在所有三个新的lv突变体中均未检测到lv-1突变体中存在的phyB脱辅基蛋白。具有和不具有phyB脱辅基蛋白的等位基因突变体的鉴定表明,Lv可能是B型光敏色素的结构基因。此外,这表明lv-1突变导致该光敏色素正常生物活性的特异性丧失。红光脉冲和光通量率响应实验表明,lv植株在低光通量响应(LFR)方面存在缺陷,但在小叶扩展和茎伸长抑制方面保留了正常的极低光通量率依赖性响应。不同严重程度的lv等位基因的比较表明,茎伸长的LFR可以由比小叶扩展的LFR更低水平的phyB介导。所有四个lv突变体对连续低光通量率R均保留强烈响应,这表明豌豆中可能存在另一种控制对R响应的光敏色素。lv突变体中光敏色素破坏和重新积累的动力学表明,phyB可能参与了phyA水平的光调节。