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Australian researchers have located what is believed to be the largest plant in the world โ€“ and they estimate it’s at least 4,500 years old.

The ancient and incredibly resilient seagrass stretching across 180km was located by researchers from The University of Western Australia and Flinders University.

The discovery of the single plant or โ€˜cloneโ€™ of the seagrass Posidonia australis in the shallow, sun-drenched waters of the World Heritage Area of Shark Bay in WA is detailed in a new study published in Proceedings of the Royal Society B.


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Evolutionary biologist Dr Elizabeth Sinclair, from UWAโ€™s School of Biological Sciences and the UWA Oceans Institute, is a senior author of the study. She says the project began when researchers wanted to understand how genetically diverse the seagrass meadows in Shark Bay were, and which plants should be collected for seagrass restoration.

โ€œWe often get asked how many different plants are growing in seagrass meadows and this time we used genetic tools to answer it,โ€ Dr Sinclair says.

UWA student researcher Jane Edgeloe, lead author of the study, said the team sampled seagrass shoots from across Shark Bayโ€™s variable environments and generated a โ€˜fingerprintโ€™ using 18,000 genetic markers.

โ€œThe answer blew us away โ€“ there was just one!โ€ Ms Edgeloe said. โ€œThatโ€™s it, just one plant has expanded over 180km in Shark Bay, making it the largest known plant on earth.

โ€œThe existing 200km2 of ribbon weed meadows appear to have expanded from a single, colonising seedling.โ€

Flinders University ecologist Dr Martin Breed, co-author of the study, said the research presents a real ecological conundrum.

โ€œThis single plant may in fact be sterile; it doesnโ€™t have sex. How itโ€™s survived and thrived for so long is really puzzling. Plants that donโ€™t have sex tend to also have reduced genetic diversity, which they normally need when dealing with environmental change,โ€ Dr Breed said.

โ€œOur seagrass has seen its fair share of environmental change too. Even today, it experiences a huge range of average temperatures; from 17 to 30 ยฐC. Salinities from normal seawater to double that. And from darkness to extreme high light conditions. These conditions would typically be highly stressful for plants. Yet, it appears to keep on going.

โ€œHow does it do it? Well, we reckon its genes are very well-suited to its local, but variable, environment and it also has subtle genetic differences across its range that help it deal with the local conditions,โ€ Dr Breed said.

Dr Sinclair said what makes this seagrass plant unique from other large seagrass clones, other than its enormous size, is that it has twice as many chromosomes as its oceanic relatives, meaning it is a polyploid.

โ€œWhole genome duplication through polyploidy โ€“ doubling the number of chromosomes โ€“ occurs when diploid โ€˜parentโ€™ plants hybridise. The new seedling contains 100 per cent of the genome from each parent, rather than sharing the usual 50 per cent,โ€ Dr Sinclair said.

โ€œPolyploid plants often reside in places with extreme environmental conditions, are often sterile, but can continue to grow if left undisturbed, and this giant seagrass has done just that.

โ€œEven without successful flowering and seed production, it appears to be really resilient, experiencing a wide range of temperatures and salinities plus extreme high light conditions, which together would typically be highly stressful for most plants.โ€

The researchers have now set up a series of experiments in Shark Bay to understand how this plant survives and thrives under such variable conditions.

IMAGE CREDIT: Flinders University, The University of Western Australia


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