Bucolo Philip, Amsler Charles D, McClintock James B, Baker Bill J
Department of Biology, University of Alabama at Birmingham, Birmingham, Alabama, 35294, USA.
Department of Chemistry, University of South Florida, Tampa, Florida, 33620, USA.
J Phycol. 2012 Dec;48(6):1403-10. doi: 10.1111/j.1529-8817.2012.01221.x. Epub 2012 Aug 27.
Most macroalgal species along the Western Antarctic Peninsula (WAP) are defended against predation, many using chemical defenses. These subtidal communities are also mostly devoid of free living filamentous algae. However, one endo/epiphyte, Elachista antarctica, is found growing exclusively out of the palatable rhodophyte Palmaria decipiens. To understand this unusual and exclusive epiphytization, we tested whether macroalgal secondary metabolites such as those responsible for deterring sympatric grazers, affect the behaviors of the epiphyte's spores. Settlement, germination, and swimming behaviors of the epiphyte's motile spores were quantified in the presence of fractionated lipophilic and hydrophilic extracts of host P. decipiens and other rhodophytes from the shallow subtidal. Host P. decipiens was the only alga tested that did not inhibit spore settlement or germination. We also examined whether extracts from these chemically rich algae affect spore swimming behaviors and found spores to be chemotactically attracted to seawater soluble extract fractions of host P. decipiens. These results indicate that chemosensory behaviors of the epiphyte's spores to metabolites associated with these chemically defended macrophytes can explain this exclusive epiphyte-host interaction.
南极半岛西部(WAP)的大多数大型藻类物种都具有抵御捕食的能力,许多物种采用化学防御手段。这些潮下带群落大多也没有自由生活的丝状藻类。然而,有一种内生/附生植物,南极埃拉基藻,被发现仅生长在可口的红藻——欺骗掌叶藻上。为了理解这种不寻常且独特的附生现象,我们测试了大型藻类的次生代谢产物,比如那些用于威慑同域食草动物的代谢产物,是否会影响这种附生植物孢子的行为。在存在来自宿主欺骗掌叶藻以及浅潮下带其他红藻的亲脂性和亲水性提取物馏分的情况下,对这种附生植物游动孢子的附着、萌发和游动行为进行了量化。宿主欺骗掌叶藻是唯一一种测试后不会抑制孢子附着或萌发的藻类。我们还研究了这些富含化学物质的藻类提取物是否会影响孢子的游动行为,结果发现孢子在化学趋化作用下被宿主欺骗掌叶藻的海水可溶性提取物馏分所吸引。这些结果表明,这种附生植物孢子对与这些具有化学防御能力的大型植物相关的代谢产物的化学感应行为,可以解释这种独特的附生植物 - 宿主相互作用。