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海藻という植物

机译:一种叫做海藻的植物

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摘要

The members of Sargassaceae make Sargassum beds with productivities no less than those of marineforests made by the members of Laminariaceae. The estimation of the net production in Sargassum beds is, however,more difficult than in marine forests, because the growth is happens at the apical part in Sargassaceae species, whilethat is at the basal part in Laminariaceae species. The volume of matter produced by an individual can be easilyestimate with the punched-hole technique in Laminariaceae species of basal growth, but this technique is not appli-cable to Sargassaceae species of apical growth. Since Sargassacea species resemble terrestrial plants both in mor-phology and growth pattern, the stratified clip method is applicable to the estimation of net production in Sargassumbeds. Taniguti & Yamada') applied this method to estimate the yearly net production in the communities of Sargas-sum patens and S. macrocarpum at 4-6 m depth in Iida Bay of Noto Peninsula, and obtained 5,525.4 and 8,251.9 gdry weight.m-2.year-', respectively. These values are larger than those in tropical rain forests. Murase estimated theyearly net production in the community of S. patens at 8 m depth in Fukawa Bay of Yamaguti Prefecture with thesame method, and obtained 1,600.1 g dry weight.m-2.year'. The difference between both the values in Iida Bay andFukawa Bay is attributable to the difference in depth of the investigation point and length of individuals. The averageindividual length of S. patens is reached about 4 m in Iida Bay, while it was about 2 m in Fukawa Bay. Mikami6)obtained 7,663.5 g dry weight.m-2.year'as the yearly net production in the community of S. patens at 1-4 m depth inSimoda Bay of Izu Peninsula with measuring the photosynthetic activities of thallus segments. This value is farlarger than that in the community of the same species in Iida Bay. The photosynthesis method applied by Mikamican estimate the net production including DOM(Dissolved Organic Matter)'2), while the methods applied by Taniguti& Yamada') and Murase5) can not. Mikami also obtained 2,381.2 and 5,657.3 g dry weight-m-2.yearl as the yearlynet production in the communities of S. ringgoldianum and S. horneri, respectively.
机译:Sargassaceae成员制作的Sargassum床的生产力不低于Laminariaceae成员制造的海洋森林的生产力。然而,估算马尾藻床的净产量比海洋森林更困难,因为生长发生在马尾藻科的顶端,而在海藻科的基部。穿孔技术可以很容易地估计出一个人产生的物质的量,该方法适用于海藻科的基础生长,但该技术不适用于狼尾草科的顶端生长。由于Sargassacea物种在形态和生长方式上都与陆生植物相似,因此分层夹子法可用于估算Sargassumbeds的净产量。 Taniguti和Yamada')应用这种方法估算了诺托半岛饭田湾4-6 m深度的Sargas-sum patens和S. macrocarpum群落的年净产量,得出了5,525.4和8,251.9 gdry weight.m-2 .year-'。这些值大于热带雨林中的值。 Murase用相同的方法估计了山口县富川湾深8 m的S. patens群落的年净产量,获得了1,600.1 g干重.m-2。'年。饭田湾和富川湾两个值之间的差异可归因于调查点深度和个人长度的差异。饭田湾的S. patens平均个体长度约为4 m,而富川湾的约为2 m。 Mikami6)在伊豆半岛西莫达湾深度1-4 m的S. patens群落中获得了7,663.5 g干重.m-2。'年的净产量,并测量了all的节段的光合活性。这个值比饭田湾相同物种的群落更大。 Mikamican所采用的光合作用方法估计的净产量包括DOM(溶解有机物)'2),而Taniguti和Yamada')和Murase5所应用的方法则不能。 Mikami还获得了2,381.2和5,657.3 g干重-m-2.yearl,分别作为S.ringgoldianum和S.horneri社区的年净产量。

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