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The Biology of Flowering of Some Pamir-Alai Species of the Genus <i>ferula</i>L.
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作者 Olimjon N. Avalbaev 《American Journal of Plant Sciences》 2018年第8期1740-1746,共7页
The sources about the seasonal and blossoming biology of some Ferula L. (F angrenii, F. ovina, F. dshizakensis, F. helenae) types which can be found in Western Pamir-Alay have been given in the article.
关键词 Proteandria FERULA Monocarp polycarp Paracodia Generative
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Interactions Between Temperature and Sugars in the Regulation of Leaf Senescence in the Perennial Herb Arabis alpina L. 被引量:4
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作者 Astrid Wingler Emma Josefine Stangberg +1 位作者 Triambak Saxena Rupal Mistry 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2012年第8期595-605,共11页
Annual plants usually flower and set seed once before senescence results in the death of the whole plant (monocarpic senescence). Leaf senescence also occurs in polycarpic perennials; even in "evergreen" species i... Annual plants usually flower and set seed once before senescence results in the death of the whole plant (monocarpic senescence). Leaf senescence also occurs in polycarpic perennials; even in "evergreen" species individual leaves senesce. In the annual model Arabidopsis thaliana sugars accumulate in the senescent leaves and senescence is accelerated by high sugar availability. Similar to A. thaliana, sugar contents increased with leaf age in the perennial Arabis alpina grown under warm conditions (22℃ day/18 night). At 5℃, sugar contents in non-senescent leaves were higher than at a warm temperature, but dependent on the accession, either sugars did not accumulate or their contents decreased in old leaves. In A. alpina plants grown in their natural habitat in the Alps, sugar contents declined with leaf age. Growth at a cold temperature slightly delayed senescence in A. alpina. In both warm and cold conditions, an external glucose supply accelerated senescence, but natural variation was found in this response. In conclusion, sugar accumulation under warm conditions could accelerate leaf senescence in A. alpina plants, but genotype-specific responses and interactions with growth temperature are likely to influence senescence under natural conditions. 展开更多
关键词 PERENNIAL polycarpic SENESCENCE sugar signaling.
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