Showing posts with label ecosystem-based management. Show all posts
Showing posts with label ecosystem-based management. Show all posts

Thursday, 30 September 2021

Changing sea levels drive the loss of kelp forests on a rocky shore

In this paper recent published in GeoHazards we evaluated the relationship between sea-level change and the severity of impacts in the major habitat-forming seaweed beds that sustain life on rocky shores.

Threshold effects of relative sea-level change in intertidal ecosystems
https://doi.org/10.3390/geohazards204001641


The 7.8 Mw Kaikōura earthquake affected a large section of the South Island’s east coast and led to a major re-assembly of ecological communities and coastal resource use. To understand the drivers of change and recovery in nearshore ecosystems, we quantified the variation in sea-level change caused by tectonic uplift and evaluated relationships with ecological impacts with a view to establishing the minimum threshold and overall extent of the major effects.

For this assessment we needed to quantify the degree of vertical uplift from the earthquake as close as possible to our post-earthquake study sites in the new intertidal zone. Challenges for this included the availability of elevation data within this area since it was previously covered by water at high tide.We used a methodology based on LiDAR data from the closest adjacent areas to landward that also incorporated an assessment of tilt effects that could lead to uneven ground level displacements, and two time periods to address the potential for continued displacement subsequent to the main seismic event. We also included two different sensitivity analyses to validate the approach used, and assessed interactions with substrate types.

Findings
We found that co-seismic uplift accounted for the majority of  the sea-level change at most locations. However, some changes were detected in the period after the initial earthquake that result from the effects of reef weathering and movement of mobile gravels along the coast. 

Vegetation losses were evident in equivalent intertidal zones at all of the uplifted study sites. Nine of ten uplifted sites suffered severe (>80%) loss in habitat-forming algae and they included the lowest uplift values (0.6 m). The results indicate a functional threshold of approximately one-quarter of the tidal range above which major impacts were sustained. This pattern wasn't entirely explained by the previous position of zone boundaries between the main habitat-forming species in relation to their intertidal position, suggesting that other factors  (additional to sea-level changes) were involved.

One of the interesting effects involved previously subtidal algae such as bull kelp (Durvillaea spp.) individuals that were uplifted into the low intertidal zone where they ought to persist - but did not. This suggests that additional post-dearthquake stressors had contributed to the degree of impact, since otherwise we would have expected to find more survivors in our lower intertidal study areas. Similar effects were found for Hormosira in the mid-intertidal zone. Continuing research has been investigating the nature of these factors. These 'double whammy' situations are evidently important to the regeneration of ecosystems and ecosystem services following a major disturbance, and may also affect the severity of observed mortality events.

Wednesday, 19 August 2020

Risk factors for coastal conservation revealed by the Canterbury earthquakes

We're pleased to announce publication of the companion paper to ‘Coastal tectonics and habitat squeeze’ in the international journal Science of the Total Environment.

dx.doi.org/10.1016/j.scitotenv.2020.141241

This paper investigates the resilience of coastal vegetation to the effects of relative sea-level change which is the subject of very few empirical studies due to the scarcity of sea-level change events of appreciable magnitude in modern times. The novel opportunity provided by the Canterbury earthquakes allowed us to design a robust impact assessment to quantify effects and identify anthropogenic factors that influenced the pattern of losses or gains. 

The findings illustrate opportunities for managing risks to coastal vegetation types such as saltmarsh which are threatened by sea-level rise. 

The conservation of these characteristic ecosystems is of global importance for the sequestration and storage of blue carbon alongside many other ecosystem services that include considerable habitat values for characteristic wildlife such as waders and shorebirds in the Christchurch case.

In summarising results from the study we derived four key principles for building the resilience of coastal ecosystems that will be of interest to coastal managers worldwide.


Thursday, 20 June 2019

Kaikōura earthquake recovery - loss of connectivity and the necessity of a cross‐ecosystem perspective

Article just published in Aquatic Conservation: Marine and Freshwater Resources from our Kaikōura earthquake recovery work.

The Kaikōura earthquake in southern New Zealand: Loss of connectivity of marine communities and the necessity of a cross‐ecosystem perspective.
https://doi.org/10.1002/aqc.3122

Monday, 3 June 2019

Stuff article on Kaikōura whitebait

Great article by Sophie Trigger at the Marlborough Express that features our recent work investigating earthquake impacts on river mouths along the Kaikōura coast.

We were able to locate several whitebait spawning sites and made some interesting discoveries with many of them occurring on flood events. Read more about an ecological experiment to rescue eggs stranded high on the riverbank with the help of the Environment Canterbury flood management team.
https://www.stuff.co.nz/environment/112863187/kaikura-whitebait-discovery-could-have-flowon-effects

Tuesday, 26 March 2019

Whitebait spawning in Lyell Creek Waikōau

Nice article in the Kaikōura Star on our surpise finding of whitebait spawning sites in downstown Kaikōura.

The spawning habitat in this area has benefitted from riparian restoration work in Lyell Creek / Waikōau since the earthquakes.

Monday, 25 March 2019

Whitebait spawning surveys in Kaikōura coastal rivers

This summer we've been working
to fill a knowledge gap about whitebait in streams and rivers along the Kaikōura coast. Knowing where they are is useful for recovery planning in the same areas post-earthquake as well as for restoration projects in local waterways.

Our survey programme started with fish trapping to find out which species were living in which rivers, after which we selected waterways that were suspected to have good īnanga populations. They included seven catchments close to Kaikōura (Oaro, Kahutara, Lyell / Waikōau, Middle, Swan, Harnetts and Blue Duck) as well as other sites in Marlborough. After four months of surveying we discovered at least one spawning event in all of these streams and rivers and were able to map the spawning locations including some large sites!

Monday, 11 June 2018

Earthquakes cause the relocation of spawning habitat on a catchment scale

The story of how whitebait spawning sites shifted to new areas after the Canterbury earthquakes - and became exposed to new vulnerabilities.
This spatial ecology study reveals how and where we can take action to protect them.


Read more here

Tuesday, 5 June 2018

Using artificial habitats as a natural habitat detection tool


We have a new paper published in the journal Ecological Indicators that describes the science behind using artificial habitats (such as straw bales) to as a detection tool.

We used this approach to help identify īnanga spawning habitat in degraded waterways where egg mortality can make it difficult to find the eggs directly.

Read more here

Wednesday, 1 November 2017

Evaluation of Christchurch City Council's riparian management trial

Christchurch City Council (CCC) recently changed its riparian vegetation clearance practices for a trial period in the summer of 2016/17. While the trial has wider objectives around improved environmental outcomes, īnanga spawning habitat is directly affected by bank cutting and other forms of vegetation clearance. A survey of īnanga (Galaxias maculatus) spawning habitat was completed in April 2017 to evaluate effects of the trial.

Benefits of the trial included increasing the availability of high quality spawning habitat and the discovery of new spawning sites. The Avon/Ōtākaro supported a relatively high area of occupation (AOO) of spawning sites for a single month in comparison to other years. In the Heathcote/Ōpāwaho spawning was found at new sites including upstream of Opawa Road. However, egg production was relatively low in the Heathcote/Ōpāwaho versus the same month in previous years. This suggests a shift in the month of peak spawning activity or a possible adult population decline and requires consecutive month surveys to confirm the actual trend.

The full report is available on the CCC website here:
Response of īnanga spawning habitat to riparian vegetation management

Monday, 19 June 2017

Floodplain planning - a case study on regeneration oppportunities in a post-disaster setting

We're pleased to announce the findings of a three-part study on ecological 'regeneration' opportunities for the red-zoned lands in Avon / Ōtākaro river corridor. The study was supported by Avon-Ōtākaro Network in collaboration with Avon-Ōtākaro Forest Park and Greening the Red Zone.

This study provides an analysis of considerations for land-use planning (including sea level rise), with a focus on opportunities for ecological restoration and building resilience to climate change.

Monday, 12 June 2017

NZ's largest known area of inanga spawning found in Christchurch waterways!

An unexpected result of our earthquake studies was the discovery that  īnanga spawning habitat had expanded, and was more extensive than ever previously recorded in Christchurch's waterways.

Further surveys in 2016 found that even larger areas were being used. The total area of spawning was around 2x
the next largest area recorded anywhere in New Zealand !

Read more >>

Monday, 5 June 2017

New spawning sites found in Aromahana Lagoon in Greymouth

Dr. Mike Hickford and I recently visited an community restoration project on Cobden Island in the Grey River and nearby Aromahana Lagoon. Our main goal was to scope out a survey strategy for monitoring īnanga spawning in this area. Time was short but we did manage to find two new spawning sites. 

This is an innovative floodplain restoration project on an impressive scale. Thanks to Henk Stengs at DOC for showing us around!

Read more >>




Friday, 4 November 2016

Resilience research on whitebait featured in UC Chronicle

The September 2016 issue of the Chronicle He Kupu Whakamahara ran a story on our research into the resilience of whitebait spawning sites in Ōtautahi Christchurch following the earthquakes.

Follow the link here to the article online

Some recent publications relating to this work:

Monday, 27 June 2016

Ngāi Tahu Research Centre seminar: earthquake recovery in Ōtautahi Christchurch watwerways


Results from our research into the effects of the Canterbury earthquakes on īnanga spawning sites in the Avon Heathcote Estuary / Ihutai catchment in Ōtautahi Christchurch. It's a story of the resilience and recovery of an iconic New Zealand species following a major disturbance. Thanks to the Ngāi Tahu Research Centre and UC Audio Visual unit the recent seminar was videoed. View the clip on U-tube here.

Thursday, 17 March 2016

New report on earthquake effects

The Waterways Centre for Freshwater Research and the Marine Ecology Research Group are pleased to provide a new report on the distribution of īnanga spawning sites in Ōtautahi Christchurch. Thanks to the Engineering New Zealand / Water NZ Rivers Group for supporting this work.
Highlights include comprehensive information on changes in relation to the Canterbury earthquakes, and a summary of the key implications for waterways management.



Wednesday, 16 March 2016

Comparative study of coastal hydrosystems

Over the 2016 summer we are surveying eight coastal hydrosystems for a comparative study. Four study sites are in Canterbury and four on the West Coast. The study sites have been chosen to represent a range of different rivermouth and estuarine environments and a wide range of data are being collected to characterise each site in ecosystem terms. Look out for more news from these surveys in the coming months.

Tuesday, 1 December 2015

2015 hottest year on record?

This recent information from NOAA is worth a look. It that shows very warm global conditions have prevailed since January.
 
via GIPHY

Read more about the trend versus historical averages on the Think Progress site here.

And some recent comment on the 10 things you need to know about climate change with implications for New Zealand.

There's a lot going on in the lead-up to the COP21 climate change summit in Paris ... watch this space!

Thursday, 1 October 2015

Whaka Inaka project gaining media attention


Whaka Inaka: Causing Whitebait is a joint collaboration between EOS Ecology, Ngāi Tahu, and the University of Canterbury (UC). We recently receiving funding from the Department of Conservation Community Fund, and together with support from Brian Mason Trust, and businesses such as Ravensdown the project is getting underway!

Friday, 11 September 2015

Coastal Restoration Trust award

A big thank you to the Dunes Trust  for adding their support to our to our dune management case study.

Visit www.dunestrust.org.nz for more information on conservation and restoration New Zealand’s dune ecosystems.

Tuesday, 4 August 2015

Collaboration with NIWA to develop salinity models

The Resilient Shorelines team would like to thank the Brian Mason Scientific & Technical Trust and also NIWA for bringing their support to this exciting research.

An interesting though unexpected finding of this work was the discovery of a leak in the Woolston Tidal Barrage. The model calibration was excellent in the lower estuary and in the Avon / Ōtākaro. However there was a strong  anomaly between the modelled versus observed salinity datasets for the Heathcote / Ōpāwaho that have been influenced by the tidal barrage leakage. Read more about it here in the Brian Mason Trust report on 'Development of a fine-scale salinity model for the Avon Heathcote Estuary Ihutai'.

Read more here

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