首页> 美国卫生研究院文献>Plant Physiology >Seasonal Variations in Rubber Biosynthesis 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase and Rubber Transferase Activities in Parthenium argentatum in the Chihuahuan Desert.
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Seasonal Variations in Rubber Biosynthesis 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase and Rubber Transferase Activities in Parthenium argentatum in the Chihuahuan Desert.

机译:奇瓦瓦沙漠中白hen中橡胶生物合成3-羟基-3-甲基戊二酰辅酶A还原酶和橡胶转移酶活性的季节性变化。

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摘要

The rubber content and the activities of enzymes in the polyisoprenoid pathway in Parthenium argentatum (guayule) were examined throughout the growing season in field plots in the Chihuahuan Desert. The rubber content of the plants was low in July and August and slowly increased until October. From October to December there was a rapid increase in rubber formation (per plant) from 589.0 mg to 4438.0 mg. The percentage of rubber in the plants increased from 0.7% (mg/g dry weight) in August and 1.27% in October to 5.5% in December. The rapid increase in rubber formation may result from exposing the plants to low temperatures of 5 to 7[deg]C. The activity of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR) was 21.1 nmol mevalonic acid (MVA) h-1 g-1 fresh weight in the bark of the lower stems in June during seedling growth and decreased to 5.1 nmol MVA h-1g-1 fresh weight in July and 2.9 nmol MVA h-1 g-1 fresh weight in September. From October to December, the activity increased from 5.0 to 29.9 nmol MVA h-1 g-1 fresh weight. The activity of rubber transferase was 65.5 nmol isopentenyl pyrophosphate (IPP) h-1 g-1fresh weight in the bark in September and increased to 357.5 nmol IPP h-1 g-1 fresh weight in December. The rapid increase in the activities of HMGR and rubber transferase coincided with the rapid increase in rubber formation. The activities of MVA kinase and IPP isomerase did not significantly increase in the fall and winter. A tomato HMGR-1 cDNA probe containing a highly conserved C-terminal region of HMGR genes hybridized at low stringency with several bands on blots of HindIII-digested genomic DNA from guayule. In northern blots with the HMGR-1 cDNA probe at low stringency, HMGR mRNA was high in June and November, corresponding to periods of high HMGR activity during seedling growth and rapid increase in rubber formation. The seasonal variations in rubber formation and HMGR mRNA, HMGR activity, and rubber transferase activity may be due to low temperature stimulation in the fall and winter months.
机译:在整个生长季中,在奇瓦瓦沙漠的田间地块中检查了银hen(番石榴)中聚异戊二烯途径中的橡胶含量和酶活性。这些植物的橡胶含量在7月和8月较低,直到10月才逐渐增加。从10月到12月,橡胶形成量(每株植物)从589.0 mg迅速增加到4438.0 mg。植物中橡胶的百分比从8月的0.7%(毫克/克干重)和10月的1.27%增加到12月的5.5%。橡胶形成的迅速增加可能是由于将植物暴露在5至7℃的低温下引起的。 6月幼苗生长期间下茎皮中3-羟基-3-甲基戊二酰辅酶A还原酶(HMGR)的活性为21.1 nmol甲羟戊酸(MVA)h-1 g-1新鲜重量,降至5.1 nmol MVA 7月的h-1g-1鲜重和9月的2.9 nmol MVA h-1 g-1鲜重。从10月到12月,活性从5.0增​​至29.9 nmol MVA h-1 g-1鲜重。橡胶转移酶的活性在9月的树皮中为65.5 nmol IPP h-1 g-1鲜重,在12月增加到357.5 nmol IPP h-1 g-1鲜重。 HMGR和橡胶转移酶活性的快速增加与橡胶形成的快速增加相吻合。在秋冬季节,MVA激酶和IPP异构酶的活性没有明显增加。番茄HMGR-1 cDNA探针,含有HMGR基因的高度保守的C端区域,该基因以低严格度与从番石榴中被HindIII消化的基因组DNA的印迹上的几个条带杂交。在HMGR-1 cDNA探针处于低严格性的Northern印迹中,HMGR mRNA在6月和11月较高,这对应于幼苗生长期间HMGR活性高和橡胶形成迅速增加的时期。橡胶形成和HMGR mRNA,HMGR活性和橡胶转移酶活性的季节性变化可能是由于秋季和冬季的低温刺激。

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