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细胞游离提取物中 Tall 和 Dwarf 豌豆幼苗切除部分的 ent-Kaurene 生物合成。

ent-Kaurene Biosynthesis in Cell-Free Extracts of Excised Parts of Tall and Dwarf Pea Seedlings.

机构信息

Department of Botany, Iowa State University, Ames, Iowa 50011.

出版信息

Plant Physiol. 1986 Feb;80(2):544-8. doi: 10.1104/pp.80.2.544.

Abstract

Investigations on the sites of ent-kaur-16-ene (ent-kaurene) biosynthesis were conducted with cell-free extracts from several excised parts of 10-, 13-, and 16-d-old tall and dwarf pea (Pisum sativum L.) seedlings. [(14)C]Mevalonic acid was incorporated into ent-kaurene in cell-free extracts from young developing leaves and elongating internodes of tall (;Alaska') and dwarf (;Progress No.9') pea seedlings at all three stages of development. ent-Kaurene biosynthesis also occurred readily in cell-free extracts from shoot tips, petioles, and stipules near the young elongating internodes. The ent-kaurene-synthesizing activity found in young developing tissues declined as tissues matured. Little or no activity was detectable in enzyme extracts from cotyledons and root tips at different stages. In light grown tall pea internodes ent-kaurene-synthesizing activity was low as they began to elongate, reached a maximum when the internodes reached about 2 cm in length and declined as they matured. Activity in extracts of dwarf shoot tips and internodes was generally lower than in equivalent tall plants, but the activity in dwarf leaves and stipules was somewhat higher than in tall plants. With the exception of root tips, there is a strong correlation between growth potential of a tissue and the rate of ent-kaurene biosynthesis in extracts from that tissue.

摘要

用来自 10 天、13 天和 16 天龄的高秆和矮秆豌豆(Pisum sativum L.)幼苗几个切除部位的无细胞提取物进行了对 ent-kaur-16-ene(ent-kaurene)生物合成部位的研究。[(14)C]甲羟戊酸在来自高秆(阿拉斯加)和矮秆(进步 9 号)豌豆幼苗幼叶和伸长节间的无细胞提取物中掺入 ent-kaurene 在所有三个发育阶段。ent-kaurene 生物合成也容易发生在靠近幼伸长节间的茎尖、叶柄和托叶的无细胞提取物中。在幼嫩组织中发现的 ent-kaurene 合成活性随着组织成熟而下降。在不同阶段的子叶和根尖的酶提取物中几乎检测不到或检测不到活性。在光长的高秆豌豆节间中,ent-kaurene 合成活性在开始伸长时较低,当节间达到约 2 厘米长时达到最大值,并随着它们的成熟而下降。矮秆茎尖和节间提取物中的活性通常低于等效的高秆植物,但矮秆叶片和托叶中的活性略高于高秆植物。除根尖外,组织的生长潜力与该组织提取物中 ent-kaurene 生物合成的速率之间存在很强的相关性。

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