Berliner Boersenzeitung - How restoration can help coral reefs

EUR -
AED 4.280203
AFN 77.000073
ALL 96.57559
AMD 443.823316
ANG 2.086262
AOA 1068.739166
ARS 1671.282351
AUD 1.755774
AWG 2.097853
AZN 1.98038
BAM 1.956318
BBD 2.346322
BDT 142.527767
BGN 1.954785
BHD 0.439375
BIF 3442.01206
BMD 1.165474
BND 1.5091
BOB 8.050133
BRL 6.360338
BSD 1.164909
BTN 104.741102
BWP 15.477101
BYN 3.349173
BYR 22843.286986
BZD 2.342911
CAD 1.610941
CDF 2601.337209
CHF 0.937187
CLF 0.027427
CLP 1075.962229
CNY 8.240016
CNH 8.238437
COP 4478.461378
CRC 569.050786
CUC 1.165474
CUP 30.885056
CVE 110.295172
CZK 24.239177
DJF 207.444969
DKK 7.468665
DOP 74.559757
DZD 151.547804
EGP 55.36114
ERN 17.482107
ETB 180.69398
FJD 2.630941
FKP 0.873749
GBP 0.874746
GEL 3.140953
GGP 0.873749
GHS 13.251455
GIP 0.873749
GMD 85.079658
GNF 10122.638857
GTQ 8.923479
GYD 243.723536
HKD 9.068365
HNL 30.68213
HRK 7.537128
HTG 152.500409
HUF 382.475294
IDR 19452.9819
ILS 3.756907
IMP 0.873749
INR 105.10185
IQD 1526.097836
IRR 49081.01224
ISK 148.982371
JEP 0.873749
JMD 186.459408
JOD 0.826376
JPY 181.18333
KES 150.637314
KGS 101.920781
KHR 4664.235923
KMF 491.829497
KPW 1048.92586
KRW 1710.636421
KWD 0.357768
KYD 0.970853
KZT 589.13358
LAK 25261.585409
LBP 104320.495171
LKR 359.323672
LRD 205.036969
LSL 19.743447
LTL 3.441342
LVL 0.704984
LYD 6.332678
MAD 10.759551
MDL 19.821167
MGA 5196.37693
MKD 61.591075
MMK 2447.025873
MNT 4134.371135
MOP 9.341635
MRU 46.45531
MUR 53.751762
MVR 17.95086
MWK 2020.035266
MXN 21.197224
MYR 4.795336
MZN 74.485711
NAD 19.743447
NGN 1690.751905
NIO 42.871176
NOK 11.786181
NPR 167.583406
NZD 2.015885
OMR 0.448105
PAB 1.165009
PEN 3.915838
PGK 4.943289
PHP 68.783904
PKR 326.59264
PLN 4.230548
PYG 8012.123043
QAR 4.24628
RON 5.089639
RSD 117.393521
RUB 89.601892
RWF 1694.949126
SAR 4.375093
SBD 9.59254
SCR 15.753107
SDG 701.037435
SEK 10.947267
SGD 1.511124
SHP 0.874407
SLE 27.621604
SLL 24439.401222
SOS 664.576099
SRD 45.02106
STD 24122.955112
STN 24.506389
SVC 10.193657
SYP 12886.454671
SZL 19.728228
THB 37.129082
TJS 10.68857
TMT 4.090813
TND 3.41735
TOP 2.806181
TRY 49.586523
TTD 7.897872
TWD 36.329569
TZS 2855.410928
UAH 48.906159
UGX 4121.074317
USD 1.165474
UYU 45.56266
UZS 13936.752734
VES 296.673618
VND 30723.638259
VUV 141.443193
WST 3.250054
XAF 656.130861
XAG 0.019942
XAU 0.000277
XCD 3.149751
XCG 2.099547
XDR 0.816016
XOF 656.130861
XPF 119.331742
YER 278.023491
ZAR 19.796503
ZMK 10490.655378
ZMW 26.933137
ZWL 375.282096
  • RBGPF

    0.0000

    78.35

    0%

  • CMSC

    -0.0500

    23.43

    -0.21%

  • NGG

    -0.5000

    75.41

    -0.66%

  • CMSD

    -0.0700

    23.25

    -0.3%

  • RIO

    -0.6700

    73.06

    -0.92%

  • RELX

    -0.2200

    40.32

    -0.55%

  • SCS

    -0.0900

    16.14

    -0.56%

  • GSK

    -0.1600

    48.41

    -0.33%

  • VOD

    -0.1630

    12.47

    -1.31%

  • RYCEF

    -0.0500

    14.62

    -0.34%

  • AZN

    0.1500

    90.18

    +0.17%

  • BTI

    -1.0300

    57.01

    -1.81%

  • BCC

    -1.2100

    73.05

    -1.66%

  • BCE

    0.3300

    23.55

    +1.4%

  • BP

    -1.4000

    35.83

    -3.91%

  • JRI

    0.0400

    13.79

    +0.29%

How restoration can help coral reefs
How restoration can help coral reefs / Photo: Lillian SUWANRUMPHA - AFP

How restoration can help coral reefs

Record-high sea temperatures are bleaching coral reefs worldwide and putting a new focus on attempts to restore these key marine ecosystems.

Text size:

Here is an overview of how coral restoration is being done around the world:

- How is coral sourced? -

Restoration begins with obtaining coral, sometimes by breaking it off from a healthy reef. These pieces can be broken into smaller bits in a process called microfragmentation.

Each piece can become a new coral.

Another option involves collecting "fragments of opportunity" -- coral pieces broken off by natural causes such as storms.

Conservationists can also propagate from egg bundles collected during reef spawning, though this is perhaps the most difficult approach.

Spawning is brief, generally happening just once a year, and is affected by many factors, including the lunar phase and water temperature.

- What happens next? -

Coral microfragments generally go into a "nursery" until they grow sturdy enough to be transplanted to an existing reef or an artificial structure.

Fragments of opportunity are treated similarly. If big enough, they can be transplanted directly to natural or artificial reefs.

Bundles of coral eggs and sperm collected during spawning will develop into larvae that can then be settled onto reefs or, more commonly, grown on artificial foundations before being transplanted to their final homes.

- What else is involved? -

Other techniques are used to bolster coral restoration, including mineral accretion technology.

This involves sending a low-voltage electrical current through seawater to encourage minerals to dissolve and crystallise on artificial reef structures, speeding up coral growth.

The technique has had mixed results, with some studies reporting better growth and more resilient corals, but others finding no significant benefits.

Other interventions include substrate stabilisation, which shores up reef foundations, and algae removal.

- What corals are used? -

Restoration projects heavily favour quick-growing branching corals.

The delicate branches of these corals are more susceptible to becoming fragments of opportunity, and are also easier to microfragment than massive or encrusting corals.

Their fast-growing nature gives restoration projects quicker results, though focusing on only one type of coral can reduce ecosystem diversity.

- Does it work? -

Coral restoration projects report survival rates of around 60-70 percent, according to a study published in 2020.

But around half the projects in the study failed to properly measure whether they achieved the goals stated at the outset, including reef function.

Monitoring was also often brief, at a median of just one year, far less than the time needed for a reef to form, according to the authors.

Still, the projects can produce real benefits.

A 2024 study of artificial reefs in Indonesia found that within four years the structures had a coral carbonate budget -- a measure of reef wellbeing -- that was nearly equal to nearby healthy natural reef.

- What are other considerations? -

Some experts worry that coral restoration is too often presented as panacea for reviving reefs, and point out that transplants will only survive if the surrounding conditions are right.

That means first addressing climate change, which causes the warm temperatures that lead to coral bleaching.

"Well-designed and managed restoration projects have an important role to play, but there is only so much they can do if radical action on the climate is not taken almost immediately," warned Lisa Bostrom-Einarsson, the marine ecologist who led the 2020 study.

And other stressors, from blast fishing to sedimentation, must also be tackled for reefs to have a future.

Reef restoration also rarely offers a one-for-one replacement of destroyed ecosystems.

The Indonesia reefs examined in the 2024 study are still largely made up of transplanted corals, with little sign yet that "natural recruits" are taking root and building reef diversity.

Building reefs through microfragmentation also limits genetic diversity and can put reefs at risk if disease takes hold.

Still, well-done restoration offers considerable benefits, including coastal protection and boosting marine life.

That also helps local communities dependent on fishing or tourism.

"Restoration will not save corals at the current rate we're losing them," said Gavin Miller, a marine scientist with the Global Reef organisation in Thailand.

"It's more about these localised impacts and the scale and the awareness that you can raise from there."

(P.Werner--BBZ)