Showing posts with label Asteraceae. Show all posts
Showing posts with label Asteraceae. Show all posts

Tuesday, 2 January 2024

Hieracium elizabethae-reginae: A new species of Hawkweed from Gloucestershire, England.

Hawkweeds (Hieracium spp.) are herbaceous flowering plants in the Aster Family (Asteraceae), closely related to Dandelions. There are numerous species in Europe, Africa, Asia, and North and South America, though the precise number of species is open to dispute, as most Hawkweeds are triploid (have three sets of chromosomes, which means that they cannot reproduce sexually (which requires an even number of chromosomes sets, which can then divide and recombine); the plants instead produce seeds asexually that are genetically identical to the parent plant. These triploid species are thought to have arisen by hybridization of diploid species (i.e. species with two sets of chromosomes that can reproduce sexually). This has led to some dispute over the classification of Hawkweeds, with American botanists tending to regard only the diploid, sexual, species as truly valid taxa with other plats regarded as hybrids of these, while in Europe botanists have tended to recognize the triploid, asexual, varieties as species as well, arguing that they may be of hybrid origin, and incapable of reproducing sexually, but are clearly successful organisms capable of sustaining large stable populations and competing against diploid plants.

In June 2022, botanist John Warren was searching on Painswick Beacon, a hill in East Gloucestershire, England for Hieracium subplanifolium, a rare endemic Hawkweed last seen in the area in 1986, when he came across a glossy-leaved Hawkweed, which differed from Hieracium subplanifolium in lacking hairs on the bracts at the base of the flowers. The Plants were subsequently shown to Hawkweed expert Tim Rich, also a botanist, who was unable to identify them, and suggested they might be a new species. They then consulted two further Hawkweed experts, Brian Burrow and David McCosh, neither of whom was able to identify the Plants.

In a paper published in the journal British & Irish Botany on 28 December 2023, John Warren and Tim Rich formally describe the Painswick Hawkweed Plants as a new species, which they name Hieracium elizabethae-reginae, in honour of Her Majesty Queen Elizabeth II as it was first discovered on her Platinum Jubilee Weekend 2-5 June 2022. Queen Elizabeth II passed away on 8 September 2023.

Hieracium elizabethae-reginae, in its natural habitat. Warren & Rich (2023).

Hieracium elizabethae-reginae is a flattened perennial herb, with flower stems which reach 45 cm tall. These stems are stout, green or purple, and have a sparce covering of white hairs. The leaves are glossy, up to 9 cm long, and become reddish as they age, the underside is often purple, and has a covering of white hairs. Stems can produce multiple mid-yellow flowers.

The new species has been found at only two sites, both in Gloucestershire. About 400 Plants are present on Painswick Beacon, all growing within an area of about 70 m by 20 m on a steep west-facing calcareous grassland. It was also found at the Barrow Wake nature reserve, about 7 km to the northeast of Painswick Beacon, where about 100 Plants were found within an area of about 100 m by 20 m, on a very steep west-facing grassland with small cliffs and outcrops of a former Oolite limestone quarry. All of the Plants at both sites were growing at altitudes of between about 220 m and 230 m above sealevel.

Based upon the small number of Plants discovered, and the very limited area within which they are found, Hieracium elizabethae-reginae is assessed to be Endangered under the terms of the International Union for the Conservation of Nature's Red List of Threatened Species. Warren and Rich note that both populations lie within designated Sites of Special Scientific Interest, and therefore receive a degree of protection.

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Saturday, 10 December 2016

Understanding the world's highest Vascular Plant community.

Rising global temperatures have led to Plant communities migrating upwards in mountain ranges across the globe, colonising areas formerly covered by snow and glaciers. However this process is not simply dependent on temperature, as Plants usually grow in some form of soil layer, with root structures that form complex relationships with Fungi and other micro-organisms in this soil and soil is typically absent or very limited on the snow and ice covered upper slopes of mountains, with microbial communities, if present at all, quite different to those found in Plant-supporting soils at lower altitudes.

In a paper published in the journal Microbial Ecology on 31 May 2016, Roey Angel of the Max Planck Institute for Terrestrial Microbiology and the Department of Microbiology and Ecosystem Science at the University of Vienna, Ralf Conrad, also of the Max Planck Institute for Terrestrial Microbiology, Miroslav Dvorsky and Martin Kopecky of the Institute of Botany of the The Czech Academy of Sciences, Milan Kotilínek of the Department of Botany at the University of South Bohemia, Inga Hiiesalu, also of the Institute of Botany of the The Czech Academy of Sciences, Fritz Schweingruber of the Swiss Federal Research Institute and Jiří Doležal, also of the Institute of Botany of the The Czech Academy of Sciences and of the Department of Botany at the University of South Bohemia describe the highest known Vascular Plant community yet discovered, discovered at an altitude of 6150 m above sea level on Mount Shukule II in the Ladakh Region of Jammu and Kashmie State, India, part of the southwestern spur of the Tibetan Plateau in the  Northwestern Himalayas.

Angel et al. found six species of plants growing on a sparse patch of undeveloped calcareous soil on a southwest-facing small boulder field, close to the summit of Mount Shukule II. The area has an arid climate, with the summer monsoon which brings rain to much of the region blocked by the main Himalaya Range to the south and the westerly winds which bring winter rain to the Himalayas blocked by the Hindu Kush range to the west.

The first of these was Draba alshehbazii, a perenial herbaceous Brasica (the group of plants that also includes Cabbages and Rape) that forms dense cusions up to 2 cm in height and 5 cm in diameter, with a single main taproot and numerous lateral roots. This plant has previously been described in the Ladakh Region and western Xizang (Tibet) in China, at altitudes of between 5700 and 6000 m.

Draba alshehbazii, samples collected at 6150 m above sea level on Mount Shukule II in the Ladakh Region of Jammu and Kashmir. Angel et al. (2016).

The second plant found was Draba altaica, another cushion-forming perennial herbaceous Brasica, forming cushions up to 8 cm in height and 5 cm in diameter, with a similar main tap root and numerous lateral root system, which has previously been recorded widely in Central Asia, from southern Siberia and Kazakhstan to Mongolia. This species has been recorded as low as 3420 m, but appears to have an optimum altitude of about 5500 m.

Draba altaica, growing on Mount Shukule II in the Ladakh Region of Jammu and Kashmir at an altitude of 6150 m. Angel et al. (2016).

The third plant found was Ladakiella klimesii, another perennial herbaceous Brasica, which forms cushions up to 3 cm in height and 10 cm in diameter, again with a single long taproot and numerous lateral roots. This plant has previously been found in eastern Ladakh and western Xizang at altitudes of 5350 to 6150 m, with an optimum altitude of 5800 m.

Ladakiella klimesii, growing on Mount Shukule II in the Ladakh Region of Jammu and Kashmir at an altitude of 6150 m. Angel et al. (2016).

The fourth plant found was Poa attenuata, a perennial Grass forming tussocks up to 30 cm in height, with an adventitious root system (root system in which numerous roots arise from a system of underground stems). This is a widely distributed plant in Central Asia, found from southern Siberia and continental Central Asia to the humid East Himalayas, at altitudes from 3250 m to 6150 m, though it has optimum altitude of between 5000 and 5500 m.

Poa attenuata, growing on Mount Shukule II in the Ladakh Region of Jammu and Kashmir at an altitude of 6150 m. Angel et al. (2016).

The fifth plant found was Saussurea gnaphalodes, a perennial herbaceous Aster (the group of Plants that also includes Daisies, Sunflowers and Thistles), which reaches 6 cm in height and forms low density stands, with rosettes connected by a system of underground stems connected to a single deep tap root. This Plant is found across Central Asia from East Kazakhstan to Tibet, at altitudes of 4650 to 6150 m, with an optimum altitude of between 5200 and 5600 m.

Saussurea gnaphalodes, growing on Mount Shukule II in the Ladakh Region of Jammu and Kashmir at an altitude of 6150 m. Angel et al. (2016).

The final plant found was Waldheimia tridactylites, another herbaceous perennial Aster, reaching 5 cm in height, which grows from a thick woody rhizome (underground stem), which puts out many prostrate branches and few adventitious roots. This Plant is found across Central Asia from Kazakhstan to Mongolia at altitudes of 3600 to 6150 m, with an optimum altitude of 4500 to 5000 m.

Waldheimia tridactylites, growing on Mount Shukule II in the Ladakh Region of Jammu and Kashmir at an altitude of 6150 m. Angel et al. (2016).

A TMS data logger was used to record the soil (10 cm bellow ground level) and air temperature (10 cm above ground level), as well as soil moisture and air humidity at 6150 m on Mount Shukule II from August 2011 to September 2012. In addition the air temperature (3 cm above ground) and humidity were recorded at 5900 m on the mountain from August 2008 to June 2013 using a HOBO U23 Pro v2 logger.

The average soil temperature at 6150 m on Mount Shukule II between August 2011 and September 2012 was −8.7 °C. The lowest air temperature recorded was on 10 January 2016, when it fell to −36 °C, the highest air temperature was recorded on 15 June 2012, when the air reached 28.2 °C; this was also the day with the greatest range of air temperatures recorded (42.4 °C), with the lowest temperature that day being −14.1 °C. The vegation season (when the soil, surface and air temperature was above 0 °C, and vegetative growth therefore theoretically possible) lasted from mid May to mid September, with an average soil temperature of 2.71 °C, an average surface temperature of 3.62 °C and an average air temperature of 2.97 °C. However it is likely that growth was restricted to a far shorter season when temperatures rose above 5 °C; this lasted 12 days in the soil and 17 days above ground level. Throughout the vegetation season the nighttime air temperature regularly fell to -7 °C, with a minimum vegetation season air temperature of -16.2 °C recorded on 17 June 2012. However the soil retained more heat during this period, seldom falling below 0 °C and often staying as warm as 3 °C. 

Above 5800 m all precipitation typically falls as snow, with soil  moisture derived from melting snow. Based upon soil moisture measurements at 5800 m, the study area is thought to have had snowfall or snow-cover for 273 days in 2009, 228 days in 2010, 132 days in 2011 and 141 days in 2012.

All of the Plants were growing under stressful, sub-optimal conditions, but appeared to be stable and, in a way thriving. All of these Plants produce woody tissues, with four (Ladakiella klimesii, Draba altaica, Waldheimia tridactylites and Saussurea gnaphalodes) producing anular growth rings on their tap roots that can be used to estimate their age. Of the plants examined the Ladakiella klimesii Plants had an average age of 15 years, while all the others were under 10 years old. This suggests that the colonies were of fairly recent origin, having migrated upslope in response to rising temperatures.

The soil in which the Plants were growing was poorly developed and had only a rather limited Bacterial community dominated by by members of the order Sphingomonadales (Alphaproteobacteria). However the soil around the roots of the Plants hosted a much more diverse Bacterial community, comparable in diversity to that found around plants at much lower altitudes, still dominated by the Sphingomonadales, but joined by significant levels of Sphingobacteriales (Bacteroidetes), Rhizobiales (Alphaproteobacteria) and Burkholderiales (Betaproteobacteria). This Bacterial community is similar to that seen in desert communities found in deserts (hot and cold) at lower altitudes, but is quite different to that seen in the temperate soils found in lower high-altitude soils in the Himalayas. Since the Plants lacked any mycorrhizal (Fungal) root associations, they were presumed to be dependent on associations with these soil Bacteria to recover nutrients from the sparse soil.

See also...

http://sciencythoughts.blogspot.co.uk/2016/09/psora-altotibetica-new-species-of-high.htmlhttp://sciencythoughts.blogspot.co.uk/2016/09/didymodon-hengduanensis-new-species-of.html
http://sciencythoughts.blogspot.co.uk/2016/04/understanding-role-of-bears-in-enabling.htmlhttp://sciencythoughts.blogspot.co.uk/2015/05/groundwater-systems-beneath-mcmurdo-dry.html

http://sciencythoughts.blogspot.co.uk/2015/01/the-fate-of-soil-microbes-during-end.htmlhttp://sciencythoughts.blogspot.co.uk/2012/11/how-bar-headed-geese-cross-himalayas.html
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Tuesday, 5 May 2015

Chionolaena barclayae, a new species of Gnaphalid Aster from Colombia.


In 1959 botanists Harriet Barclay and Pedro Juajibioy collected some samples of a woody shrub from the Páramo de Macotama above the valley of Río Ancho in the Sierra Nevada de Santa Marta in northern Colombia and sent them to the South American mountain plant specialist José Cuatrecasas for identification. This was identified as a member of the Aster tribe Gnaphalieae, but at the time the taxonomy of this group was poorly understood, and he was not able to make any more detailed designation.

In a paper published in the journal PhytoKeys on 5 February 2015, Harold Robinson of the Department of Botany at the National Museum of Natural History formally describes Barclay and Juajibioy’s material as new species in the genus Chionolaena.

The new species is named Chionolaena barclayae, presumably in honour of Harriet Barclay, though no explanation is given. It is a small woody shrub reaching about 20 cm high, producing pinkish or reddish flowers. It is known only from Barclay and Juajibioy’s material, collected on high rocky outcrops in the Sierra Nevada de Santa Marta.

Chionolaena barclayae, material collected by Barclay and Juajibioy in 1959. Robinson (2015).

See also…

The Austral Islands are a group of eight volcanic islands to the south of the Society Islands in the southern Pacific Ocean. Rapa is the second largest of...

Living in limestone habitats requires special adaptations from plants; as such areas tend to have thin layers of alkaline soil over porous bedrock, leading to frequent periods of aridity. Since exposed limestones are most frequently found in upland areas surrounded by areas of lowlands with different environmental conditions, the...

Hawkweeds (Hieracium spp.) are herbaceous flowering plants in the Aster Family (Asteraceae), closely related to Dandelions. There are numerous species in Europe, Africa, Asia, and North and South America, though the precise number of species is open to dispute, as most Hawkweeds are triploid (have three sets of chromosomes, which means that they cannot reproduce sexually (which requires an even number of chromosomes sets, which can then...

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Thursday, 18 December 2014

A new species of Burr Marigold from Rapa in the Austral Islands, French Polynesia.


The Austral Islands are a group of eight volcanic islands to the south of the Society Islands in the southern Pacific Ocean. Rapa is the second largest of these, covering about 40 km2, and reaching about 650 m above sea-level. The island is generally rugged with many steep basalt cliffs, and a small area of cloud forest on the top of its highest peak, Mont Perau. It is also extremely remote, being nearly 1200 km southeast of Tahiti, 3700 km northeast of the north island of New Zealand, and 8500 km southwest of the Baja Peninsula in Mexico. As such it has a high rate of endemism among its plants and animals, with 238 native (i.e. not introduced by man) plants (152 flowering plants plus 86 ferns) including 85 species found only in the Austral Islands (65 flowering plants plus 20 ferns) and 73 are found only on the island of Rapa (53 flowering plants plus 20 ferns), though many of these are threatened by introduced animals, most notably Cows and Goats.

In a paper published in the journal PhytoKeys on 3 October 2014, Vicki Funk of the US National Herbarium in Washington DC and Kenneth Wood of the National TropicalBotanical Garden in Hawai’i describe a new species of Burr Marigold from Rapa. The species is was discovered by a National Geographic Society expedition to the island in March-April 2002, which included scientists from the New York Botanical Garden, the Délégationà la Recherche de la Polynésie Française and the National Tropical Botanical Garden. This expedition was originally planned to last for a month, but a delayed supply ship trapped the scientists for two months. The leader of this expedition, Timothy Motley of the New York Botanical Garden subsequently died, and the whereabouts of the majority of the specimens collected by the first expedition is unknown. A second expedition visited the island in December 2002 and collected more specimens, which were sent to the Paris Herbarium, however these also appear to have been lost.

The new species is placed in the genus Rapa, and given the specific name meyeri, in honour of Jean-Yves Meyer of the Délégation à la Recherche de la PolynésieFrançaise, for his research on the plants of Rapa and work on preserving the islands biodiversity. The species is a small sub-shrub reaching 25 cm tall with 3-4 branches reaching about 8 cm. It has fleshy, toothed leaves and yellow flowers. The species was found growing high on a cliff, and could be collected only by rope.

Bidens meyeri: Close up of a flowering plant, note the gloved finger holding the plant. Jean-Yves Meyer in Funk & Wood (2014).

Bidens meyeri is considered to be Critically Endangered under the terms of the International Union for the Conservation of Nature’s Red List of Threatened Species, as it is known from only two specimens growing on a single ledge on a northeast facing cliff 272 m above sea-level. The cliff had several small ledges with granular soil, and patches of steep slope with patches of low forest and shrubland. This environment is threatened by potential fires, habitat degradation, feral goats and competition with introduced plants.

Jean-Yves Meyer climbing with Bidens in his teeth, note yellow flowering plant on the cliff face just above his left hand. Ron Englund in Funk & Wood (2014).

See also…

Living in limestone habitats requires special adaptations from plants; as such areas tend to have thin layers of alkaline soil over porous bedrock, leading to frequent periods of aridity. Since exposed limestones are most frequently found in upland areas surrounded by areas of lowlands with different environmental conditions, the...

Hawkweeds (Hieracium spp.) are herbaceous flowering plants in the Aster Family (Asteraceae), closely related to Dandelions. There are numerous species in Europe, Africa, Asia, and North and South America, though the precise number of species is open to dispute, as most Hawkweeds are triploid (have three sets of chromosomes, which means that they cannot reproduce sexually (which requires an even number of chromosomes sets, which can then...

http://sciencythoughts.blogspot.co.uk/2012/09/new-species-of-daisy-from-brazil.html New species of Daisy from Brazil.                 Daisies of the genus Trichocline are found across southern South America, with a single species from Australia. They are small perennial herbs with red, yellow, orange, or rarely white flowers found on sandy or rocky grasslands, shrublands, or human-modified areas such as roadsides with exposed soil, mostly at high...


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Tuesday, 14 October 2014

A new species of Chicory from Taiwan.


Living in limestone habitats requires special adaptations from plants; as such areas tend to have thin layers of alkaline soil over porous bedrock, leading to frequent periods of aridity. Since exposed limestones are most frequently found in upland areas surrounded by areas of lowlands with different environmental conditions, the plants found in them are often highly endemic (have very localized distributions).

In a paper published in the journal PLoS One on 8 October 2014, KohNakamura of the Biodiversity Research Center at Academia Sinica, Shih-Wen Chung of the Botanical Garden Division of the Taiwan Forestry Research Institute, Yoshiko Kono and Meng-Jung Ho, also of the Biodiversity Research Center at Academia Sinica, Tian-Chuan Hsu, also of the Botanical Garden Division of the Taiwan Forestry Research Institute and Ching-I Peng, again of the Biodiversity Research Center at Academia Sinica, describe a new species of Chicory from the Taroko National Park in northeast Taiwan.

The new species is placed in the genus Ixeridium, and given the specific name calcicola. It is dwarfed compared to closely related species (a common adaptation to limestone environments), reaching only 10-30 cm tall, with oblong or lance-shaped leaves and yellow flowers.

Ixeridium calcicola in the wild. Nakamura et al. (2014).

Most members of the genus Ixeridiumhave seven pairs of chromosomes, whereas Ixeridium calcicola was found to have eight, causing Nakamura et al. to consider placing it in the related genus Ixeris, where eight chromosomes is more usual. However a full genetic analysis suggested strongly that the new species belonged within Ixeridium rather than Ixeris, the additional chromosome being due to the splitting of one of the longer chromosomes. This is also likely to have led to the species becoming reproductively isolated, as it is very difficult for plants to hybridize with even closely related species if they have different numbers of chromosomes.

Ixeridium calcicola was found growing only on moist rocky ridges and limestone cliffs at altitudes of 1150-2250 m. A total of five populations were discovered, three of them within the Taroko National Park. Since even the sites within the park are vulnerable to human disturbance, and the areas where the plant grows are naturally prone to landslides, particularly after Earthquakes of periods of heavy rainfall, Nakamura et al. suggest that the plant should be considered vulnerable under the terms of the International Union for the Conservation of Nature’s Red List of ThreatenedSpecies.

See also…

Hydrangeas are perennial woody plants related to Dogwoods and Silkleafs. Most species form small shrubs, but some grow to tree sizes, and there are some lianas (woody vines) in the group. Hydrangeas are most abundant and diverse in eastern Asia, but they are found as far west as the Himalayas, and also throughout the Americas. Most Hydrangeas have white flowers, but some species produce pink or blue flowers in response to...

Hawkweeds (Hieracium spp.) are herbaceous flowering plants in the Aster Family (Asteraceae), closely related to Dandelions. There are numerous species in Europe, Africa, Asia, and North and South America, though the precise number of species is open to dispute, as most Hawkweeds are triploid (have three sets of chromosomes, which means that they cannot reproduce sexually (which requires an even number of chromosomes sets, which can then...



http://sciencythoughts.blogspot.co.uk/2012/09/new-species-of-daisy-from-brazil.html New species of Daisy from Brazil.                 Daisies of the genus Trichocline are found across southern South America, with a single species from Australia. They are small perennial herbs with red, yellow, orange, or rarely white flowers found on sandy or rocky grasslands, shrublands, or human-modified areas such as roadsides with exposed soil, mostly at high...

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Thursday, 27 March 2014

A new species of Hydrangea from Mexico and Central America.

Hydrangeas are perennial woody plants related to Dogwoods and Silkleafs. Most species form small shrubs, but some grow to tree sizes, and there are some lianas (woody vines) in the group. Hydrangeas are most abundant and diverse in eastern Asia, but they are found as far west as the Himalayas, and also throughout the Americas. Most Hydrangeas have white flowers, but some species produce pink or blue flowers in response to changes in soil pH, a trait which has made them popular with gardeners. As such they have been introduced to many parts of the world beyond their home ranges, in some places, most notably the Azores, becoming destructive invasive species.

In a paper published in the journal Phytotaxa on 17 March 2014, Marie-Stéphanie Semain of the  Instituto de Ecología of the Centro Regional del Bajío in Mexico and the Research Group on Spermatophytes at the Department of Biology at the University of Gent, Francisco Hernández Najarro of the Herbario of the Secretaria de Medio Ambiente e Historia Natural and Esteban Manuel Martínez Salas of the Herbario Nacional de México at the Departmento de Botánica at the Instituto de Biologica at the Universidad Nacional Autónoma de México describe a new species of Hydrangea from Mexico and Central America.

The new species is given the name Hydrangea albostellata, a reference to the white hairs present on the leaves and flowering stems of the plant. It is a climbing liana reaching 35 m in height, with male and female flowers born on separate plants. Hydrangea albostella is found in cloud forests at altitudes of between 1200  and 2300 m from Chiapas State in southeastern Mexico through Central America as far as Costa Rica.

Branch of
Hydrangea albostellata with four inflorescences, all inflorescence bracts already shed in lower right one where the flower buds are visible, lower left inflorescence partially opened, apical inflorescences still covered by all inflorescence bracts. Semain et al. (2014).

Climbing a 
Hydrangea host tree with specific equipment (note, the Hydrangea is the vine on the tree, not the tree being climbed). Samain et al. (2014).


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Friday, 2 August 2013

A new species of Hawkweed from Bulgaria.

Hawkweeds (Hieracium spp.) are herbaceous flowering plants in the Aster Family (Asteraceae), closely related to Dandelions. There are numerous species in Europe, Africa, Asia, and North and South America, though the precise number of species is open to dispute, as most Hawkweeds are triploid (have three sets of chromosomes, which means that they cannot reproduce sexually (which requires an even number of chromosomes sets, which can then divide and recombine); the plants instead produce seeds asexually that are genetically identical to the parent plant. These triploid species are thought to have arisen by hybridization of diploid species (i.e. species with two sets of chromosomes that can reproduce sexually). This has led to some dispute over the classification of Hawkweeds, with American botanists tending to regard only the diploid, sexual, species as truly valid taxa with other plats regarded as hybrids of these, while in Europe botanists have tended to recognize the triploid, asexual, varieties as species as well, arguing that they may be of hybrid origin, and incapable of reproducing sexually, but are clearly successful organisms capable of sustaining large stable populations and competing against diploid plants.

In a paper published in the journal Phytotaxa on 20 May 2013, Zbigniew Szeląg of the Institute of Botany at Jagiellonian University, and Vladimir Vladimirov of the Department of Plant and Fungal Diversity and Resources at the Institute of Biodiversity and Ecosystem Research at the Bulgarian Academy of Sciences, describe a new species of Hawkweed from the central Rhodopes Mountains of southern Bulgaria.

Specimen of Hieracium crinitopannosum from by the road from Devin town to Mihalkovo village in the central Rhodopes Mountains of southern Bulgaria. Szeląg & Vladimirov (2013).

The new species is named Hieracium crinitopannosum; it is thought to be a hybrid between Hieracium crinitum and Hieracium petrovae, two diploid species found in the Rhodopes Mountains (Hieracium petrovae) and nearby Vacha River valley (Hieracium crinitum). Hieracium crinitopannosum is a 25-55 cm robust Hawkweed that flowers (pointlessly) in July and August and sets seeds in September. It is found growing in open spaces on eroded and rocky slopes in stands of a several dozen to a few hundred in the central Rhodopes Mountains of southern Bulgaria; Szeląg & Vladimirov suggest that it is likely that it is also found across the border in northern Greece.

The approximate location of the area where Hieracium crinitopannosum was discovered. Google Maps.


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Thursday, 20 September 2012

New species of Daisy from Brazil.

Daisies of the genus Trichocline are found across southern South America, with a single species from Australia. They are small perennial herbs with red, yellow, orange, or rarely white flowers found on sandy or rocky grasslands, shrublands, or human-modified areas such as roadsides with exposed soil, mostly at high altitudes.

In a paper published in the journal Phytotaxa on 23 January 2012, Eduardo Pasini of the Programa de Pós-Graduação em Botânica at the Universidade Federal do Rio Grande do Sul and Mara Rejane Ritter of the Departamento de Botânica at the Universidade Federal do Rio Grande do Sul describe a new species of Trichocline  from southern Brazil and adjacent areas of Uruguay.

The new species is named Trichocline cisplatina, with cisplatina meaning beside the Platina, referring to the Río de la Plata. The plants were found in the Brazilian State of Rio Grande do Sul and Rocha Province, Uruguay. They grew on rocky or sandy soils on grasslands, shrublands and disturbed soils, on coastal plains up to an altitude of 400 m.

Map showing the known distribution of Trichocline cisplatina (black circles), and the closely related Trichocline catharinensis (black squares). Pasini & Ritter (2012).

Trichocline cisplatina is a herbaceous plant reaching 23 cm in total height when flowering. It is considered to by Vulnerable under the terms of the International Union for the Conservation of Nature's Red List, due to introduced commercial Pines and European Gorse in its range.

(Top) Photograph of Trichocline cisplatina in the wild. (Bottom) Line drawing of Trichocline cisplatinaPasini & Ritter (2012).

Environments colonized by Trichocline cisplatina. (Top) Sandy grassland. (Bottom) Hillside with shrubland vegetation. Pasini & Ritter (2012).


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