Landi P, Genchi G
Laboratorio di Fisiologia Vegetale, Dipartimento di Biologia Evoluzionistica Sperimentale, Universita di Bologna, via Irnerio 42, I-40126 Bologna, Italy (A.D.S.).
Plant Physiol. 1999 Feb;119(2):743-54. doi: 10.1104/pp.119.2.743.
Mitochondria are affected by low temperature during seedling establishment in maize (Zea mays L.). We evaluated the associated changes in the mitochondrial properties of populations selected for high (C4-H) and low (C4-L) germination levels at 9.5 degreesC. When seedlings of the two populations were grown at 14 degreesC (near the lower growth limit), the mitochondrial inner membranes of C4-H showed a higher percentage of 18-carbon unsaturated fatty acids, a higher fluidity, and a higher activity of cytochrome c oxidase. We found a positive relationship between these properties and the activity of a mitochondrial peroxidase, allowing C4-H to reduce lipid peroxidation relative to C4-L. The specific activity of reconstituted ATP/ADP translocase was positively associated with this peroxidase activity, suggesting that translocase activity is also affected by chilling. The level of oxidative stress and defense mechanisms are differently expressed in tolerant and susceptible populations when seedlings are grown at a temperature near the lower growth limit. Thus, the interaction between membrane lipids and cytochrome c oxidase seems to play a key role in maize chilling tolerance. Furthermore, the divergent-recurrent selection procedure apparently affects the allelic frequencies of genes controlling such an interaction.
在玉米(Zea mays L.)幼苗期,线粒体受低温影响。我们评估了在9.5摄氏度下,为高(C4-H)和低(C4-L)发芽水平选择的群体线粒体特性的相关变化。当两个群体的幼苗在14摄氏度(接近生长下限)生长时,C4-H的线粒体内膜显示出更高百分比的18碳不饱和脂肪酸、更高的流动性和更高的细胞色素c氧化酶活性。我们发现这些特性与线粒体过氧化物酶的活性之间存在正相关关系,使得C4-H相对于C4-L能够降低脂质过氧化。重组ATP/ADP转位酶的比活性与这种过氧化物酶活性呈正相关,表明转位酶活性也受低温影响。当幼苗在接近生长下限的温度下生长时,氧化应激水平和防御机制在耐受性和敏感性群体中的表达不同。因此,膜脂与细胞色素c氧化酶之间的相互作用似乎在玉米耐冷性中起关键作用。此外,发散轮回选择程序显然会影响控制这种相互作用的基因的等位基因频率。