{"id":6441,"date":"2011-12-05T19:05:15","date_gmt":"2011-12-05T23:05:15","guid":{"rendered":"https:\/\/esa.org\/esablog\/?p=6441"},"modified":"2011-12-05T19:05:15","modified_gmt":"2011-12-05T23:05:15","slug":"waves-mightier-than-sun-otter-or-urchin-storm-disturbance-shapes-california-kelp-forests","status":"publish","type":"post","link":"https:\/\/esa.org\/esablog\/2011\/12\/05\/waves-mightier-than-sun-otter-or-urchin-storm-disturbance-shapes-california-kelp-forests\/","title":{"rendered":"Waves mightier than sun, otter or urchin: storm disturbance shapes California kelp forests"},"content":{"rendered":"<p><em>This post contributed by Liza Lester, ESA communications officer.<\/em><\/p>\n<p><a href=\"https:\/\/esa.org\/esablog-preprod\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone size-full wp-image-6443 img-fluid\" title=\"beached winter kelp at Santa Barbara\" src=\"https:\/\/esa.org\/esablog-preprod\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3.jpg\" alt=\"beached winter kelp at Santa Barbara\" width=\"553\" height=\"415\" srcset=\"https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3.jpg 1600w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3-300x225.jpg 300w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3-1024x768.jpg 1024w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3-768x576.jpg 768w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelp_wrack3-1536x1152.jpg 1536w\" sizes=\"auto, (max-width: 553px) 100vw, 553px\" \/><\/a><\/p>\n<p>As winter storms pick up along the California coast, a harvest of giant kelp comes ashore with the tides, torn from seafloor anchorages by the rough action of waves. <a title=\"Reed et al (2011) Wave disturbance overwhelms top-down and bottom-up control of primary production in California kelp forests. Ecology 92, 2108\" href=\"http:\/\/www.esajournals.org\/doi\/abs\/10.1890\/11-0377.1\">Waves are the most powerful force shaping the kelp forest<\/a>, superseding the influence of temperature, nutrients, and hungry animals, say University of California, Santa Barbara (UCSB) researchers in the November issue of <em>Ecology<\/em>.<\/p>\n<p>From Alaska to Baja California, kelp undulates in the currents of rocky coastal shallows, feeding and sheltering a host of sea creatures and birds. Americans harvest kelp for food and fish feed, and the kelp forest harbors commercially valuable fish and shellfish. In central and southern California, the giant kelp predominates. <em>Macrocysits pyrifera<\/em> anchors at depths of 6 to 150 feet, and is the largest alga in the world, reaching underwater heights of nearly 150 feet in a single season. Conversion of sunlight into kelp fuels an ecosystem.<\/p>\n<p>\u201cPrimary production is the amount of plant material produced per unit area of the Earth\u2019s surface per unit time. It\u2019s really the basis of all life on Earth for the most part,\u201d said Dan Reed, research biologist at the Marine Science Institute at UCSB, and principle investigator of the Santa Barbara Coastal Long Term Ecological Research project. In the kelp forest, the primary producer is the kelp itself. Reed and his colleagues wanted to know how periodic disturbances from large waves stacked up against other influences on kelp forest growth.<\/p>\n<p>Lack of nutrients, particularly nitrogen, slows the kelp\u2019s exuberant expansion, as do the teeth of small, but numerous, sea animals. Kelp is the favorite food of the sea urchin, as <a title=\"Japanese demand for roe has made the sea urchin fishery the most profitable in California. Roe quality and quantity is higher when urchins get their favorite food. But southern California divers are now competing with sea otters and kelp harvesters.\" href=\"http:\/\/articles.latimes.com\/2008\/feb\/19\/local\/me-herzik19\">commercial harvesters<\/a> of the fist-sized, spiky animal well know. Urchins do not climb the kelp stalks. They forage across the seafloor, devouring fallen kelp blades (analogous to leaves) and chunks. But their <a title=\"They chew through stone. &quot;Ever-sharp urchin teeth may yield tools that never need honing.' ScienceDaily 22 Dec 2010\" href=\"http:\/\/www.sciencedaily.com\/releases\/2010\/12\/101222162404.htm\">powerful, self-sharpening teeth<\/a> can also chew through the holdfasts of the kelp, releasing the giants to the mercies of the ocean currents, as graphically exhibited by <a title='youtube clip \"Army of Sea Urchins\" ' href=\"http:\/\/www.youtube.com\/watch?v=D3W4OCnHyCs\">time-lapse footage<\/a> in the BBC\u2019s documentary <em>Planet Earth<\/em>. In concentrated herds, unchecked urchins have been known to raze entire forests.<a href=\"https:\/\/esa.org\/esablog-preprod\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP.jpg\"><img loading=\"lazy\" decoding=\"async\" class=\"alignright size-medium wp-image-6442 img-fluid\" title=\"kelpbed2 (#5 RMP)\" src=\"https:\/\/esa.org\/esablog\/wp-content\/uploads\/2011\/12\/kelpbed2-5-RMP-199x300.jpg\" alt=\"giant kelp\" width=\"199\" height=\"300\" srcset=\"https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP-199x300.jpg 199w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP-680x1024.jpg 680w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP-768x1156.jpg 768w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP-300x452.jpg 300w, https:\/\/esa.org\/esablog\/wp-content\/uploads\/sites\/90\/2011\/12\/kelpbed2-5-RMP.jpg 900w\" sizes=\"auto, (max-width: 199px) 100vw, 199px\" \/><\/a><\/p>\n<p>The check on the urchin is the sea otter, a <a title='\"Ecosystems suffer if big predators are removed, says study.\" The Sacramento Bee, 2 Aug 2011' href=\"http:\/\/www.sacbee.com\/2011\/08\/02\/3810102\/uc-davis-other-authors-top-predator.html#ixzz1Ul9CfKs1\">top predator<\/a> of the kelp forest. The demands of the otters\u2019 high metabolisms drive them to eat up to a fourth of their body weight in invertebrates daily, and they like sea urchins. The otters are a classic example of a keystone species, an animal whose eating habits tip a crucial balance in a cascade of consumer-and-consumed reactions. The arrival of otters in new territory has changed relatively barren, stony seafloor into a canopy of kelp, seals, birds, and a multitude of small shelled creatures.<\/p>\n<p>The relative importance of \u201ctop-down\u201d consumption and \u201cbottom-up\u201d nutrition is a perennially popular conversation in ecology.<\/p>\n<p>\u201cMost scientists have realized at this point the both are important. That said, I think there are still scientists out there who are beholden to the fact that they study consumers, and that the world is controlled by consumption,\u201d said Reed. The contrary can be true of researchers focused on the physical influences on primary production. \u201cThey are vying for recognition that their theories are more important. What we need to do is understand which factors are important in specific conditions.\u201d<\/p>\n<p>How do stormy seas shape the kelp forests, and by consequence, the animals and microorganisms they feed? The UCSB group couldn\u2019t create a perfect experiment, controlling all variables\u2014sea otters, urchins, kelp, nutrients and waves. The scale of the experiment would be impossible (as well as unethical, Reed added). But they could take advantage of natural variation along the California coast.<\/p>\n<p><a title=\"caused by prevailing winds planetary rotation, and geography--see NOAA's explanation\" href=\"http:\/\/oceanmotion.org\/html\/background\/upwelling-and-downwelling.htm\">Upwelling cold water<\/a> on California\u2019s central coast brings nutrients up from the ocean floor that help kelp grow. The central coast of California is also home to nearly 3000 <a title=\"&quot;Otters are the spotted owl of marine preditors on the west coast,&quot; said Reed.&quot;It's pretty difficult for shellfish industries to compete with them.&quot; \" href=\"http:\/\/latimesblogs.latimes.com\/unleashed\/2010\/02\/trouble-in-conservationville-hungry-sea-otters-compete-with-fishermen-for-sea-urchins-in-california-.html\">sea otters<\/a>, the carefully protected descendents of a small group that escaped extinction from the nineteenth century fur trade. So from both \u201cbottom-up\u201d and \u201ctop-down\u201d perspectives, the warmer, urchin-ridden coasts of southern California would be expected to host less kelp.<\/p>\n<p>But Reed and Siegel\u2019s group saw the opposite, and they think the reason is waves. While southern California does get storms, it does not have the consistently stormy weather of central California.<\/p>\n<p>\u201cIn central California big waves happen every year. Large storms come in during the winter and pretty much take out the forest,\u201d Reed said. \u201cWe found that the proportion of the canopy that\u2019s lost is on average twice as high in central California as southern California.\u201d<\/p>\n<p>The team measured the mass of the kelp by calibrating satellite images with <a title=\"Partnership for Interdisciplinary Studies of Coastal Oceans\" href=\"http:\/\/www.piscoweb.org\/\">dive data<\/a> from 17 <a title=\"Santa Barbara Coastal Long Term Ecological Research\" href=\"http:\/\/sbc.lternet.edu\/\">long term research sites<\/a>, a project made possible when <a title=\"Originally designed for a 3 year mission, the satellite is dying after 28 heroic years of data collection. See the USGS page for amazing images.\" href=\"http:\/\/landsat.usgs.gov\/\">Landsat 5<\/a>\u2019s 25-year image library became available to the public, free of charge. David Siegel, director of the Earth Research Institute at UCSB, specializes in understanding the oceans through remote sensory data and imagery. His graduate student, Kyle Cavenaugh, sifted the Landsat 5 images to track fluctuations in kelp mass and match them with diver\u2019s measurements of kelp, wave height measurements from buoys, numbers of sea urchins, concentrations of nitrogen in the water, and ranges of sea otters. With the satellite data, the group could extrapolate data from long term research sites to hundreds of miles of California coast, over an eight year span.<\/p>\n<p>Reed said the giant kelp\u2019s prodigious growth rate is handy for investigating disturbance as a force shaping ecosystems. In forests on land, major disturbances such as fire are infrequent. Storms reshape kelp forests yearly. \u201cYou can get a kelp forest wiped out, and within a couple of years, it\u2019s back,\u201d he said, so the timescale is practical. But the group is more interested in interpreting kelp forest dynamics than scoring a theoretical point.<\/p>\n<p>\u201cIn terms of looking at future climate change, there are predictions for the ocean to get warmer,\u201d Reed said, \u201cbut also for the ocean to get stormier. If it does, then that\u2019s going to affect the kelp.\u201d And everything that depends on it, from urchins to otters to humans.<\/p>\n<hr>\n<ul>\n<li>Photo: Plate 1 from Reed et al.\u2019s <em>Ecology <\/em>paper. \u201cMounds of beached giant kelp (<em>Macrocystis pyrifera<\/em>) torn loose by large waves during a winter storm off Santa Barbara, California, USA.\u201d Credit, Shane Anderson.<\/li>\n<li>Want to learn more about giant kelp? Listen to ESA\u2019s <a title=\"from 1 Mar 2010\" href=\"..\/..\/..\/..\/..\/..\/fieldtalk\/?p=184\"><em>Field Talk<\/em> podcast with marine population geneticist Filipe Alberto<\/a>, \u201cStepping stones of diversity: the Santa Barbara landscape and giant kelp genetics.\u201d<\/li>\n<\/ul>\n","protected":false},"excerpt":{"rendered":"<p>This post contributed by Liza Lester, ESA communications officer. As winter storms pick up along the California coast, a harvest of giant kelp comes ashore with the tides, torn from seafloor anchorages by the rough action of waves. Waves are the most powerful force shaping the kelp forest, superseding the influence of temperature, nutrients, and hungry animals, say University of&#8230;<\/p>\n","protected":false},"author":36,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"ngg_post_thumbnail":0,"footnotes":""},"categories":[2],"tags":[1038,1324,1325,1326,36,419,1327,879,1328,988,1212,1329,1095,1070],"class_list":["post-6441","post","type-post","status-publish","format-standard","hentry","category-research","tag-california","tag-disturbance","tag-kelp","tag-keystone-species","tag-marine","tag-nitrogen","tag-satellite","tag-sea-otters","tag-sea-urchins","tag-shellfish","tag-storms","tag-trophic-cascade","tag-weather","tag-winter"],"_links":{"self":[{"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/posts\/6441","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/users\/36"}],"replies":[{"embeddable":true,"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/comments?post=6441"}],"version-history":[{"count":0,"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/posts\/6441\/revisions"}],"wp:attachment":[{"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/media?parent=6441"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/categories?post=6441"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/esa.org\/esablog\/wp-json\/wp\/v2\/tags?post=6441"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}