Lyall T W, Ellis R H, John P, Hedley C L, Wang T L
Department of Agriculture, The University of Reading, Earley Gate, PO Box 237, RG6 6AR, UK.
J Exp Bot. 2003 Jan;54(381):445-50. doi: 10.1093/jxb/erg059.
Pea (Pisum sativum L.) mutant near-isogenic lines (RRrbrb, rrRbRb, rrrbrb) with lower starch but higher lipid contents, brought about by lesions in the starch biosynthetic pathway, had seed moisture sorption isotherms displaced below that of the wild type (RRRbRb). The negative logarithmic relationship between seed longevity and seed storage moisture content (%, f.wt basis), determined in hermetic storage at 65 degrees C, also differed: longevity in the mutant near-isogenic lines was poorer and less sensitive to moisture content than in the wild type (i.e. C(W) was lower). The low-moisture-content limit (m(c)) to this relation also differed, being lower in the mutant near-isogenic lines (5.4-5.9%) than in the wild type (6.1%). In contrast, all four near-isogenic lines showed no difference (P >0.25) in the negative semi-logarithmic relationship between equilibrium relative humidity (ERH) and seed longevity. It is concluded that the effect of these alleles at the r and rb loci on seed longevity was largely indirect; a consequence of their effect on seed composition and hence on moisture sorption isotherms. However, this explanation could not be invoked at moisture contents below m(c) where differences in longevity remained substantial (RRRbRb double that of rrrbrb). Hence, these mutant alleles affected seed longevity directly at very low moisture contents.
豌豆(Pisum sativum L.)淀粉生物合成途径中的损伤导致了淀粉含量较低但脂质含量较高的突变近等基因系(RRrbrb、rrRbRb、rrrbrb),其种子水分吸附等温线低于野生型(RRRbRb)。在65摄氏度气密储存条件下测定的种子寿命与种子储存水分含量(%,鲜重基准)之间的负对数关系也有所不同:突变近等基因系的寿命比野生型更短且对水分含量更不敏感(即C(W)更低)。这种关系的低水分含量极限(m(c))也不同,突变近等基因系(5.4 - 5.9%)低于野生型(6.1%)。相比之下,所有四个近等基因系在平衡相对湿度(ERH)与种子寿命之间的负半对数关系上没有差异(P >0.25)。得出的结论是,r和rb位点上这些等位基因对种子寿命的影响在很大程度上是间接的;是它们对种子组成进而对水分吸附等温线影响的结果。然而,在低于m(c)的水分含量下不能采用这种解释,此时寿命差异仍然很大(RRRbRb是rrrbrb的两倍)。因此,这些突变等位基因在非常低的水分含量下直接影响种子寿命。