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首页> 外文期刊>Tree Physiology >Developmental lignification and seasonal variation in beta-glucosidase and peroxidase activities in xylem of Scots pine, Norway spruce and silver birch
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Developmental lignification and seasonal variation in beta-glucosidase and peroxidase activities in xylem of Scots pine, Norway spruce and silver birch

机译:苏格兰松树,挪威云杉和白桦木质部的木质素发育木质化和β-葡萄糖苷酶和过氧化物酶活性的季节性变化

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摘要

We examined the relationship between P-glucosidase and peroxidase activities and xylem lignification in the stems of Scots pine (Pinus sylvestris L.), Norway spruce (Picea abies (L.) Karst.) and silver birch (Betula pendula Roth) during the 1999 growing season. Examination of stem cross sections stained with safranin and Alcian blue for lignin and cellulose, respectively, indicated that radial growth of pine and spruce xylem began in late May, whereas the growth of birch xylem was initiated 2 weeks later. Lignification began soon after thickening of the newly formed cell walls, i.e., upon deposition of cellulose. Hydrolysis of the synthetic beta-glucosidase substrate pnitrophenyl-beta-O-D-glucopyranoside was correlated with radial growth and lignification in the xylem of both conifers, but the relationship between lignification and the hydrolysis of coniferin by beta-glucosidase was not obvious. beta-Glucosidase activities in the xylem of silver birch were low and did not correlate with growth or lignification with either substrate. An increase in peroxidase activity was detected at the initiation of growth and lignification in the conifers and during growth and lignification in silver birch, but high peroxidase activities were also measured outside the growth period during late autumn, winter and early spring.
机译:我们在1999年研究了苏格兰松(Pinus sylvestris L.),挪威云杉(Picea abies(L.)Karst。)和白桦树(Betula pendula Roth)茎中P-葡萄糖苷酶与过氧化物酶活性和木质部木质化之间的关系。生长季。分别用番红蛋白和阿尔辛蓝染色的茎横断面检测木质素和纤维素,表明松树和云杉木质部的径向生长始于5月下旬,而桦木木质部的生长开始于2周后。在新形成的细胞壁增厚之后,即在纤维素沉积之后,木质化立即开始。合成的β-葡萄糖苷酶底物对硝基苯基-β-O-D-吡喃葡萄糖苷的水解与两个针叶树木质部的径向生长和木质化有关,但是木质素化和β-葡萄糖苷酶水解针叶树素之间的关系并不明显。白桦木木质部中的β-葡萄糖苷酶活性低,并且与任一底物的生长或木质化都不相关。在针叶树的生长和木质化开始以及桦木的生长和木质化过程中,过氧化物酶活性有所增加,但在秋末,冬季和早春的生长期之外,也发现过氧化物酶活性较高。

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