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Primary production and phytoplankton community structure during a winter shelf-scale phytoplankton bloom off Western Australia

机译:西澳大利亚州冬季架子规模浮游植物开花期间的初级生产和浮游植物群落结构

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Regions of high primary production along the oligotrophic west coast of Australia between 34 and 22°S in May-June 2007 (midway through the annual phytoplankton bloom) were found around mesoscale features of the Leeuwin Current. At 31°S, an anticyclonic eddy-forming meander of the Leeuwin Current had a mixed layer depth of > 160 m, a depth-integrated chlorophyll a (Chi a)-normalised primary production of 24 mg C mg Chi a~(-1) day~(-1) compared to the surrounding values of <18 mg C mg Chi a~(-1) day~(-1). In the north between 27 and 24°S, there were several stations in > 1,000 m of water with a shallow (<100 m) and relatively thin layer of high nitrate below the mixed layer but within the euphotic zone. These stations had high primary production at depths of ~ 100 m (up to 7.5 mg C m~(-3) day~(-1)) with very high rates of production per unit Chi a (up to 150 mg C mg Chi a~(-1) day~(-1)). At 27-24°S, the majority of the phytoplankton community was the ubiquitous tropical picoplankters, Synechococcus and Prochlorococcus. There was a decline in the dominance of the picoplankters and a shift towards a more diverse community with more diatoms, chlorophytes, pra-sinophytes and cryptophytes at stations with elevated production. Photosynthetic dinoflagellates were negligible, but heterotrophic dinoflagellate taxa were common. Hapto-phytes and pelagophytes were also common, but seemed to contribute little to the geographical variation in primary production. The mesoscale features in the Leeuwin Current may have enhanced horizontal exchange and vertical mixing, which introduced nitrate into the euphotic zone, increasing primary production and causing a shift in phytoplankton community composition in association with the annual winter bloom.
机译:2007年5月至6月(在年度浮游植物浮游中途),在澳大利亚贫营养型西海岸34至22°S的高初级产区被发现在吕温洋流的中尺度特征附近。在31°S时,回旋流形成的反旋风涡流的混合层深度> 160 m,深度整合的叶绿素a(Chi a)归一化为24 mg C mg Chi a〜(-1天-1(-1)与周围的<18 mg C mg Chi a-1(-1)day〜(-1)的值进行比较。在北纬27至24度之间,在> 1,000 m的水中有多个水位,在混合层以下但在常光区内,有一个浅层(<100 m)和相对薄的高硝酸盐层。这些工位在〜100 m的深度(高达7.5 mg C m〜(-3)天〜(-1))具有很高的初级产量,每单位Chia的生产率很高(高达150 mg C mg Chi a 〜(-1)天〜(-1))。在27-24°S时,浮游植物群落的大部分为无处不在的热带微浮游动物,Synchococcuscus和Prochlorococcus。微型浮游生物的优势正在下降,而向产量更高的硅藻,绿藻类,原生植物和隐生植物更多的更多样化的社区转变。光合作用的鞭毛类可以忽略不计,但异养的鞭毛类群很常见。触附植物和象皮植物也很常见,但似乎对初级生产的地理变化贡献很小。 Leeuwin洋流中的中尺度特征可能增强了水平交换和垂直混合,这将硝酸盐引入到了富营养区,增加了初级生产力,并导致浮游植物群落组成的变化与每年的冬季开花有关。

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  • 来源
    《Marine biology》 |2013年第2期|355-369|共15页
  • 作者单位

    CSIRO Marine and Atmospheric Research, Private Bag No 5, PO Box 462, Wembley, WA 6913, Australia;

    CSIRO Marine and Atmospheric Research, Private Bag No 5, PO Box 462, Wembley, WA 6913, Australia;

    CSIRO Marine and Atmospheric Research, Private Bag No 5, PO Box 462, Wembley, WA 6913, Australia;

    CSIRO Marine and Atmospheric Research, Private Bag No 5, PO Box 462, Wembley, WA 6913, Australia;

    CSIRO Marine and Atmospheric Research, Private Bag No 5, PO Box 462, Wembley, WA 6913, Australia;

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