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凝集素在弗吉尼亚巨型花生和西班牙花生品种(落花生)中的分布

Distribution of Lectins in the Jumbo Virginia and Spanish Varieties of the Peanut, Arachis hypogaea L.

作者信息

Pueppke S G

机构信息

Department of Biology, University of Missouri, 8001 Natural Bridge Road, St. Louis, Missouri 63121.

出版信息

Plant Physiol. 1979 Oct;64(4):575-80. doi: 10.1104/pp.64.4.575.

Abstract

Peanut lectin was purified from seed meal of the Spanish and Jumbo Virginia varieties of peanut (Arachis hypogaea L.) by affinity chromatography on lactose coupled to Sepharose 4B. Polyacrylamide gel isoelectric focusing resolved the lectin preparation from Jumbo Virginia seeds into seven isolectins (pI 5.7, 5.9, 6.0, 6.2, 6.3, 6.5, and 6.7). Seed meal from the Spanish variety contained six isolectins which were indistinguishable from the pI 5.7, 5.9, 6.2, 6.3, 6.5, and 6.7 isolectins from Jumbo Virginia. Quantitative, lactose-specific hemagglutination was used to examine the lectins in tissues of both peanut varieties. In young (3- to 9-day-old) seedlings of each variety, more than 90% of the total amount of lectins detected in the plants was in the cotyledons. Most of the remainder was in hypocotyls, stems, and leaves; young roots contained no more than 4 micrograms of lectin per plant. Lectins were present in all nonroot tissues of 21- to 30-day-old seedlings, except 27-day-old Spanish hypocotyls. As cotyledons of each variety senesced, several of the more basic isolectins decreased to undetectable levels, but the acidic isolectins remained until at least 15 days after planting. Some of the seed isolectins and several apparently new lactose-binding lectins were also identified in affinity-purified extracts of 5-day-old roots and hypocotyls. Rabbit antibodies raised against the Jumbo Virginia seed isolectin preparation reacted with seed, cotyledon, and hypocotyl lectin preparations from both varieties. Analysis of seed lectin preparations from seven varieties of A. hypogaea and of a related species (A. villosulicarpa) indicated that isolectin composition in Arachis may be a characteristic of both the species and the subspecies (botanical type) to which the variety belongs.

摘要

通过乳糖偶联琼脂糖4B亲和层析,从西班牙花生和巨型弗吉尼亚花生(落花生)的籽粕中纯化出花生凝集素。聚丙烯酰胺凝胶等电聚焦将巨型弗吉尼亚种子中的凝集素制剂分离为七种同工凝集素(等电点5.7、5.9、6.0、6.2、6.3、6.5和6.7)。西班牙品种的籽粕含有六种同工凝集素,与巨型弗吉尼亚的等电点5.7、5.9、6.2、6.3、6.5和6.7同工凝集素无法区分。采用定量、乳糖特异性血凝反应检测两个花生品种组织中的凝集素。在每个品种3至9日龄的幼苗中,植株中检测到的凝集素总量的90%以上存在于子叶中。其余大部分存在于下胚轴、茎和叶中;幼根中每株植物含有的凝集素不超过4微克。在21至30日龄幼苗的所有非根组织中均存在凝集素,但27日龄的西班牙下胚轴除外。随着每个品种子叶的衰老,几种碱性更强的同工凝集素降至检测不到的水平,但酸性同工凝集素至少在种植后15天仍存在。在5日龄根和下胚轴的亲和纯化提取物中也鉴定出一些种子同工凝集素和几种明显新的乳糖结合凝集素。针对巨型弗吉尼亚种子同工凝集素制剂产生的兔抗体与两个品种的种子、子叶和下胚轴凝集素制剂发生反应。对七种落花生品种和一个近缘种(绒毛落花生)的种子凝集素制剂分析表明,花生中的同工凝集素组成可能是该品种所属物种和亚种(植物类型)的特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83dd/543140/85b6e850d24f/plntphys00132-0056-a.jpg

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