Dazzo F B, Yanke W E, Brill W J
Biochim Biophys Acta. 1978 Mar 20;539(3):276-86. doi: 10.1016/0304-4165(78)90032-6.
A protein agglutinin, trifoliin, was purified from white clover seeds and seedling roots. Trifoliin specifically agglutinates the symbiont of clover, Rhizobium trifolii, at concentrations as low as 0.2 microgram protein/ml, and binds to the surface of encapsulated R. trifolii 0403. This clover protein has a subunit with Mr approximately 50 000, an isoelectric point of 7.3, and contains carbohydrate. Antibody to purified trifoliin binds to the root hair region of 24-h-old clover seedlings, but does not bind to alfalfa, birdsfoot trefoil or joint vetch. The highest concentration of trifoliin on a clover root is present at sites where material in the capsule of R. trifolii binds. 2-Deoxy-D-glucose elutes trifoliin from intact clover-seedling roots, suggesting that this protein is anchored to root cell walls through its carbohydrate binding sites. We propose that trifoliin on the root hair surface plays an important role in the recognition of R. trifolii by clover.
从白三叶草种子和幼苗根中纯化出一种蛋白质凝集素——三叶草凝集素。三叶草凝集素在浓度低至0.2微克蛋白质/毫升时就能特异性凝集三叶草的共生体——三叶草根瘤菌,并与包囊化的三叶草根瘤菌0403的表面结合。这种三叶草蛋白有一个亚基,其分子量约为50000,等电点为7.3,且含有碳水化合物。针对纯化的三叶草凝集素的抗体与24小时龄的三叶草幼苗的根毛区结合,但不与苜蓿、鸟足豆或合萌结合。三叶草根上三叶草凝集素的最高浓度出现在三叶草根瘤菌包囊中物质结合的部位。2-脱氧-D-葡萄糖能从完整的三叶草幼苗根上洗脱三叶草凝集素,这表明该蛋白通过其碳水化合物结合位点锚定在根细胞壁上。我们认为根毛表面的三叶草凝集素在三叶草识别三叶草根瘤菌过程中起重要作用。