Journal of Ethnopharmacology 159 (2015) 209–214

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Research Paper

A study of medicinal plants used as ethnoveterinary: Harnessing potential phytotherapy in Bheri, District Muzaffarabad (Pakistan) Muhammad Jamil Ahmed n, Ghulam Murtaza Department of Botany, University of Azad Jammu and Kashmir, Muzaffarabad, Pakistan

art ic l e i nf o

a b s t r a c t

Article history: Received 5 June 2014 Received in revised form 6 November 2014 Accepted 8 November 2014 Available online 20 November 2014

Ethnopharmacological relevance: Medicinal plants are utilized for handling health care system and in preventing a variety of diseases. A survey was conducted to document the rapidly disappearing traditional knowledge of medicinal plants in union council Bheri, District Muzaffarabad, Azad Kashmir, Pakistan. Materials and methods: Questionnaire format was used to collect the medicinal uses of plants. The 180 informants were interviewed from six villages in total, 30 from each village (20 male and 10 female) regarding the ethnoveterinary uses of plants in several ailments. For the reliability of ethnoveterinary knowledge, the informant consensus factor (FIC), and fidelity level (FL) were calculated and the literature cited was surveyed. The medicinal information was gathered from local inhabitants, healers, shepherds and old men and women of different age groups. Results: A total of 24 medicinal plant species used as ethnoveterinary were found belonging to 22 genera and 19 families. The most dominant family was Polygonaceae (3 species) followed by Araceae, Asteraceae, Lamiaceae each with 2 species and remaining families having one species. The important medicinal plant species showed the highest fidelity level (FL) such as: Rumex nepalensis, Primula denticulata, (100%) used for dysuria, red urination, Skimmia laureola (100%), Swertia paniculata (99%), and Angelica glauca (97%), used for ague, cold, shivering, gastric ailments, Melia azedarach (100%), used to reduce intestinal worm load in cattle showing the conformity of knowledge on these species. Highest FIC was recorded for foot and mouth diseases and ectoparasite (1) followed by ague (0.98) and dysuria (0.99) depicting that a few species were used to cure various animals' ailments. Conclusions: The findings of the research revealed that merely a few species are used as ethnoveterinary medicine supported by pharmacology study. Due to anthropogenic pressure the extinction of each species from the areas could result in disappearing knowledge regarding century's old traditional methods of curing diseases from these plant species. & 2014 Elsevier Ireland Ltd. All rights reserved.

Keywords: Ethnoveterinary Medicinal plants Informants consensus factor Fidelity level Bheri

1. Introduction District Muzaffarabad, Azad Kashmir lies between latitude 331–361 in the North and longitude 731–751 in the East and comprises an area of 13,297 square kilometers. The topography of the district falls into the hilly zone. Azad Jammu and Kashmir (AJ&K) is very plentiful in natural beauty. Recently, an ethnoveterinary survey in union council Bheri, District Muzaffarabad and remote areas of different ecological zones ranging from temperate to alpine zone was carried out. The study areas lay between 73.501 and 73.581 East longitude and 34.501 and 34.571 North latitude and comprise a total area of 6700 square kilometers. These areas are rich in natural beauty and medicinal flora. The total population of union council Bheri, mentioned in that survey, was about 2500 and almost evenly distributed.

n

Corresponding author. Tel.: þ 92 3345096143; fax: þ 92 5822 960431. E-mail address: [email protected] (M. Jamil Ahmed).

http://dx.doi.org/10.1016/j.jep.2014.11.016 0378-8741/& 2014 Elsevier Ireland Ltd. All rights reserved.

The climate of the area fluctuates with the elevation. It is very cold during the winter, with heavy snowfall. The minimum temperature ranges from 3.2 1C to 22.8 1C while the average daily temperature ranges from 15.9 1C to 37.6 1C from January to June respectively. The average yearly rainfall is 1540.7 mm. The farm animal population in the region was 2921 herds of cattle, 3265 sheep, 2185 goats, 75 donkeys, 125 horses and mules and 996 chickens in 2012. Plants have been used throughout human evolution. This interaction established allopathic medicinal industry for further exercises and exploring the bioactive constituents of medicinal plant species worldwide (Cardozo et al., 2004). The ethnoveterinary traditional knowledge has been reported worldwide, for instance, in India (Sri and Vikrama, 2010), Nigeria (Musa et al., 2008), Africa (Toyang et al., 2007), Zimbabwe (Matekaire and Bwakura, 2004) and in Pakistan (Hussain et al., 2008; Khan et al., 2010) to cure numerous livestock diseases. The ethno-veterinary studies explore the information regarding diseases and their control, remedies and clinical practices for treatment and prevention, management, feeding, breeding strategies and the human

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resources that carry information and experiences (Mathias, 2004). Ethnoveterinary practice for the treatment of parasitic diseases in cattle of Cholistan Desert, Pakistan, has been reported (Farooq et al., 2008) and 35 plant species of greater Cholistan Desert of Pakistan were collected and are being used for the treatment of various diseases of cattle (Khan, 2009). It has been described that the leaves and fruits of Azadirachta indica have anti-parasitic and anti-coccidal potential significantly validated in animals (Tipu et al., 2006). The methanolic extract has been practiced for anti-hepatotoxic activity against carbon tetrachloride induced liver toxicity in experimental rats and revealed significant anti-hepatotoxic activity of the methanolic extract at the concentration of 100 mg/kg (Karan et al., 1999). Plants infusion is used to treat east coast fever of cattle (Tabuti et al., 2003) and treatment of mastitis in cattle, especially buffaloes (Dilshad et al., 2010). The local people are highly dependent on herbal remedy to treat various

ailments (Nigam and Sharma., 2010) and in a report, 24 plant species of ethnoveterinary importance were found useful for curing various livestock ailments, such as gastrointestinal disorders, fever, cough, respiratory tract infection, urinary tract diseases, promote lactation, wound healing, placenta removal, deworming, carminative and flatulence in the Arab system of medicine (Sher and Alyemeni., 2011).

2. Material and methods 2.1. Field study An extensive survey in the rural and remote areas of different ecological zones ranging from temperate to alpine was carried out during the month of March and October in 2012 for the present

Table 1 List of ethnoveterinary practices of important plants in Bheri, District Muzaffarabad, AJK, and Pakistan. S. Scientific name no.

Family

1

Amaranthus viridis L.

2

Arisaema flavum (Forssk.) Schoot Arisaema jacquemontii Blume

Amaranthaceae. Safed kannar Araceae Toosh

3

4

5

6 7 8 9

Senecio chrysanthemoides DC. Lactuca brunoniana (DC.) Wall. ex C.B. Clarke Impatiens scabrida DC. Leptopus cordifolius Decne. Quercus oblongata D. Don Swertia paniculata Wall.

Vernacular. name

Parts used

Lv, Se Glycosides, saponone,tannin (Ahmed et al., 2013) Lv

Araceae

Tooshganda Wp

Asteraceae

Bghoo

Ae

Asteraceae

Korijari

Wp

Balsaminaceae Phyllanthaceae

Pale ponytail Kurkani

Fagaceae Gentianaceae.

Ailments

Decoctions

Malarial fever

Infusion,

Mouth and foot diseases of cattle Cholera, flu, dysentery, dyspepsia and inflammation of gut and snake bite Anthelmintic, antiscorbutic and diaphoretic

As whole plant

Coumarine, alkaloid, flavonoid (Joshi et al., 2013)

Decoction

Pinworms

The whole plant

Laxative, diuretic

R, Lv

Powder

Anthelmintic

Reen

Lv, Br

Decoction

Malyjari

WP

(Swerchirin ),alkaloid, flavonoids. (Brahmachari et al., 2004)

Fr

Aescin, aesculuside, β sitosterol, decanoic acid,quercetin (Harpreet and Arvind., 2013) Flavonoid, alkaloid, cardiac glycoside, terpenes (Ashfaq et al., 2012) sesquiterpene hydrocarbons (Padalia, and Verma, 2011)

Astringent, diuretic, antiasthma and anorexia. Mala, Ague (characterized by cold, shivering) and indigestion and constipation General weakness, Stimulant

naphthoquinone alkaloid (Rastogi and Mehrotra, 1990, 1991, 1995).

Aesculus indica (Wall. Sapindaceae ex Cambess.) Hook.

Bankhorr

11

Mentha longifolia (L.) L. Isodon rugosus (Wall. ex Benth.) Codd Melia azedarach L. Ficus palmata Forssk.

Lamiaceae

Safedpodina Ae

Lamiaceae

Peemar

Ae

Meliaceae Moraceae

Drek Pagaaar

Se Lv

13 14

Ethnoveterinary practices

The whole plant

10

12

Bioactive components

Alkaloids, steroids, flavonoids, (Saklani and Chandra, 2012) Indigoferin, β-sitosterol (Tariq et al., 2011) Luteolin, rhamnetin, luteolin-dimethylethe, (Ruana et al., 2013)

Decoction /dried plant powder is mixed with gurr and flour Powder

Infusion Infusion

Anti-cholera, anti-dyspepsia, anti-emetic Against flea

Powder Whole

Anthelmintic Anorexia

As fodder

Milk and meat

As fodder

Antimicrobial, diuretic and bactericidal Antimicrobial, diuretic and bactericidal Hepatitis, malarial fever, dysuria and red urination

15

Indigofera heterantha Leguminosae Brandis Papilionaceae

Kainthi

Tw

16

Fagopyrum acutatum (Lehm.) Mansf. ex K. Hammer Fagopyrum esculentum Moench Rumex nepalensis Spreng.

Polygonaceae

Khattra

Ae

Polygonaceae

Khattra

Ae

Flavonoid, protein, (Hagels. 1999)

As fodder

Polygonaceae

Hulla

Wp

Quinone betasitosterol;,glucopyranos, galactopyranoside, (Rastogi and Mehrotra, 1990, 1991, 1995)

Decoction

Primulaceae

Chiatpatra

Wp

Decoction

Ranunculaceae

Muneeri

Ae

Powder

Rosaceae

Karleee

Ae

As fodder

Rutaceae

Neera

Lv

Saxifragaceae

Butpeewa

Rh

Apiaceae

Choora

Wp

17 18

19 20 21 22 23 24

Primula denticulata Sm. Aquilegia pubiflora Wall. ex Royle Sorbaria sorbifolia (L.) A. Braun Skimmia laureola Franch. Bergenia ciliata (Haw.) Sternb. Angelica glauca Edgew.

Fatty aster and quinone alkakloid (Sultanaa et al., 2005) Steroid, terpenoids, flavonides, anthraquinone. (Uddin et al., 2012) Courmarine (Kapoor et al., 1972)

Powder, decoction Powder Decoction

Hepatic fever, dysuria and hemoglobinuria The herb is fatal to cattle in large amount. Anthelmintic Stimulant, Cold, shivering (ague) diarrhea, dysentery, and anti worms chronic stomachic and intestinal trouble ague and cold shivering

M. Jamil Ahmed, G. Murtaza / Journal of Ethnopharmacology 159 (2015) 209–214

study. The voucher specimens were collected from different localities of the area during the field work. The survey localities include the following six villages: Chowki, Bheri, Seri, Doba, Baseri, and Domelaan. The following allied areas were also included in the survey: Baandda and lower Makra (Fig. 4). These areas were particularly selected for study due to dense population. The collected plant samples were identified with the help of flora of Pakistan (Ali and Nasir, 1970–2002) and also verified online using plant databases (The Plant List, 2013) 〈http://www.theplantlist.org〉 and 〈http://apps.kew.org/wcsp/home.do〉. The collected specimens were mounted on herbarium sheets and deposited in the herbarium of Department of Botany University of AJ&K. The study of plants is used in term of number and type of uses attributed to the species was carried out.

4. Discussion Ethnobotany is the most significant instrument to examine the natural resource management of indigenous people and to keep open the fast disappearing knowledge regarding plants. In the present survey, the folk veterinary uses were revealed from local nomadic, veterinary practitioner and shepherds. A total of 24 plant species in 22 genera and 19 families were found which are used to treat several diseases of animals and poultry by the people of the union council Bheri and their modes of remedy preparation were decoction, infusion, poultice and in the powder form (Table 1). Several previous studies have been reported regarding the role of medicinal plants for treating several ailments of cattle practiced in Azad Kashmir (Ishtiaq et al., 2006). It has been explored that the ethnoveterinary uses of 58 plants , prescribes dosage and mode of

2.2. Data collection Informants were interviewed individually in the local language (Hindku). Semi-structured interviews addressed questions regarding informants' details: name, age, gender, education, occupation, religion and data about medicinal plant and its use: included plant local names, name of diseases treated, effectiveness of plant, plant parts used, method of collection, marketability of species, abundance, habitat, other parts or herbs used along with (if any), methods of remedy preparation, remedy preservation, mode of administration (Cotton, 1996). The Prior Informed Consent (PIC) was obtained verbally before commencing each interview. Ethical guidelines followed the International Society of Ethnobiology Code of Ethics (International Society of Ethnobiology, 2008). Prior to data collection, survey was held along with a veterinarian and a community leader who were well informed about local healers and shepherds. Initial survey led to the identification of a total of 210 people out of which 180 people were key respondents who gave their consent for providing the ethnoveterinary traditional knowledge. The total number of informants involved in the ethnomedicinal survey was 180 (120 male and 60 female). The age of the individuals ranged from 35 to 90 year (average 45). Answers of respondents were translated into English and noted down by the interviewer.

Fig. 1. The percentage of plants parts used by local people.

2.3. Data analysis Information consensus factor (ICF) was calculated for each category to identify the agreement of the informants on the reported cure. ICF was calculated by equation [ICF¼nur nt/nur 1] where nur is the number of use citation in each category and nt is the number of species used. The fidelity level (FL), the percentage of informants claiming the use of a certain plant for the same major purpose, was calculated by, [Np/N  100]. Where Np is the number of informants who claimed the use of a plant species for a particular use and N is the number of informants who used the plants. Such methods are helpful in the selection of plants for further studies (Alexiades, 1996; Andrade-Cetto, 2009).

Fig. 2. The method used for the preparation of remedy.

3. Results A detailed description regarding the ethnoveterinary uses of 24 medicinal plants, plants scientific names, families, vernacular names and plant parts used, method of preparation to cure various ailments of livestock in Bheri, District Muzaffarabad is given in the table (Table 1). Results showed that in the study areas, most dominant families with respect to species number were Polygonaceae (3) followed by Araceae, Asteraceae, Lamiaceae (each 2) and remaining families having one species (Fig. 3).

211

Fig. 3. Species distribution among different families.

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administration to livestock in Nepal (Bhattari, 1992). The 19 plant species relating to 14 ailments of animals were used as veterinary medicines to cure livestocks diseases by local people of Poonch Valley Azad Kashmir (Khan et al., 2012). As far as their utilization is concerned, the roots, rhizome, bark, leaves, and stem were the chief characters of plant species used while decoctions and infusions were the primary methods of preparation (Figs. 1 and 2). The medicinal plants were under high biotic pressure that leads to threat of species extinction in these fields. The poisonous plants were: Aquilegia pubiflora and Leptopus cordifolius. Out of total 24 species Melia azedarach, Skimmia laureola, Rumex nepalensis, Primula deticulata, Swertia paniculata and Angelica glauca were commonly used to treat chills and fever, dysuria, hemonglobinuria and other infirmities in all study areas. The ethnomedicinal uses are supported by pharmacology study, but only a few species have not yet practiced as ethnomedcine braced by pharmacology studies such as Aquilegia pubiflora, Sorbaria sorbifolia, Lactuca brunoniana, Primula denticulata, Aquilegia pubiflora, and Quercus oblongata. These species have not yet screen for phytochemical constituents. During the study, it was discovered that the medicinal plants are also being applied to treat human disease. Some of these medicinal plants were used to treat human diseases and were under the threat of extermination, such as Aconitum heterophyllum, Rheum webbanum, Taxus wallichiana, Trillium govanianum,

Valeriana jatamansi and Saussurea lappa. These were rather under a high biotic pressure due to excessive exploitation by local people, smuggling by foreigners and deforestation and fire wood extraction by the local community. Vegetation is affected by the people in many ways, such as having a great deal of livestock pressure, lumbering and dragging of wood logs that crushed the plants of those fields. Another factor that results in decreased vegetation of the survey areas was that, the excessive grazing by the cattle, goats and sheep of the local people, nomadic people and shepherds during the blooming seasons. The endangered species that include: Swertia paniculata and Angelica glauca are under a threat due to excessive collection and marketing. In the present study the FIC value ranges from 0.95 to 1 and FL ranges from 86 to 100% (Tables 2 and 3). The elderly people have better traditional knowledge and male individuals are more respondent than the females. Moreover, a high FIC value for a particular disease category might indicate the military position of the plants in treating this disease category and possibility of containing the important active constituents in these plants (Cakilcioglu et al., 2011; Kadir et al., 2012). The present investigation for the first time explored ethnoveterinary folk use, and also analyzed through a literature survey; exploring that most plant species are used as herbal medications in different countries of the universe. For instance the efficacy of Azadirachta indica, mentioned

Fig. 4. Location maps of the study areas.

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Table 2 Categories of ailments and informant consensus factor for ethnoveterinary. Disease categories

Ailments

Number of species (ns)

Number of use- Informants' reports (nUR) consensus factor (FIC)

Malarial fever Wound infections Viral diseases

Ague, cold shivering Healing,

04

168

0.98

02

140

0.99

Foot and mouth disease Urine Dysuria, disease pain, Anthelmintic Pinworms, round worms Stomach Dyspepsia, diseases dysentery Anorexia Ectoparasite Lice Respiratory Coughing, ailments sneezing

01

78

07

178

0.97

05

84

0.95

06

163

0.97

02 01 03

118 105 114

0.99 1 0.98

213

diseases from these plant species. However to authenticate such knowledge, detailed pharmacological studies must be explored for synthetic drug and conserve medicinal plants at global perspectives. Because the local healer collects plant unscientifically. The survey also drew attention to the preservation of the local plants, which have been used as food and traditional medicine to cure human related ailments.

Acknowledgments

1

The author thanks especially to Dr. Tanweer Akthar (taxonomist) who helped in identification of plant species and also local community; who shared their valuable traditional knowledge and experiences with us. This work is supported by Department of Botany, University of Azad Jammu and Kashmir Muzaffarabad, Pakistan. References

Table 3 Fidelity level value of medicinal plants commonly reported against a given veterinary ailment category. Medicinal plant

Therapeutic category

Np

N

FL value (%)

Angelica glauca, Skimmia laureola Rumex nepalensis Swertia paniculata Arisaema jacquomontii Primula deticulata Melia azedarach Mentha longifolia

Ague Ague Dysuria, pain, Ague Pinworms, round worms Ague, dysuria Anthelmintic Dysentery, flue

68 154 130 87 69 92 90 77

70 154 130 88 80 92 90 90

97 100 100 99 86 100 100 86

as an anthelmintic by livestock farmers, against gastrointestinal nematodes of sheep by Costa et al. (2006) and Iqbal et al. (2010). Skimmia laureola, Rumex nepalensis, Swertia paniculata, Angelica glauca and Primula denticulata are novel plant species normally used to treat complaints such as ague, dysuria, hepatitis, and dysentery by local dwellers in Bheri. The most common privilege diseases were ague, mouth and foot diseases, intestinal worms and hepatitis.

5. Conclusion Medicinal plants compete with the synthetic drugs due to biocompatibility, cost-effective and lesser or no side effects. As evolving time novel diseases are emerging in animals and human beings by irrational uses of antibiotics and increasing industrialization. Nowadays it is the need of the hour to work more extensively on the plants in the larger interest of humanity. Due to high biotic pressure the important medicinal plants were disappearing rapidly in the study areas. We concluded that plants having high FL mean that a few plant species were used for treating a particular disease in an area. The plants such as Rumex nepalensis and Primula denticulata have medicinal potential and are used for dysuria, red urination, Skimmia laureola, Swertia paniculata and Angelica glauca are used for ague, cold shivering, gastric ailments. These have been smuggled. Thus the issue for conservation of the species diversity is the theme of the international concern. Extermination of the each endangered species from the areas could result in disappearing knowledge regarding century's old traditional methods of curing

Ahmed, S.A., Hanif, S., Iftkhar, T., 2013. Phytochemical profiling with antioxidant and antimicrobial screening of Amaranthus viridis L. leaf and seed extracts. Journal of Medical Microbiology 3, 164–171. Alexiades, M., 1996. Collecting ethnobotanical data. An introduction to basic concepts and techniques (Edited by). In: Alexiades, M., Sheldon, J.W. (Eds.), Selected Guideline for Ethnobotanical Research: A Field Manual, 1996. The New York Botanical Garden, Bronx, New York, pp. 53–94. Ali, S.I., Nasir, E., 1970–2002. Flora of Pakistan, National Herbarium, NARC, Islamabad and Department of Botany, University of Karachi, Karachi. Fasc. No. 1–207. Andrade-Cetto, A., 2009. Ethnobotanical study of the medicinal plants from Tlanchinol, Hidalgo, Mexico. Journal of Ethnopharmacology 122, 163–171. Ashfaq, M., Shah, K.W., Ahmad, S., Singh., D., 2012. Preliminary phytochemical screening of alcoholic & aqueous extracts of Mentha longifolia linn leaves. International Journal of Biological and Pharmaceutical Research 3, 384–386. Bhattari, N.K., 1992. Folk use of plants in veterinary medicines in central Nepal. Fitoterapia 63, 497–506. Brahmachari, G., Mondal, S., Gangopadhyay, A., Gorai, D., Mukhopadhyay, B., Saha, S., Brahmachari, Arun K., 2004. Swertia (Gentianaceae): chemical and pharmacological aspects. Chemistry and Biodiversity 1, 1627–1651. Cakilcioglu, U., Khatun, S., Turkoglu, I., Hayta, S., 2011. Ethnopharmacological survey of medicinal plants in Maden (Elazig-Turkey). Journal of Ethnopharmacology 137, 469–486. Cardozo, P.W., Calsamiglia, S., Ferret, A., Kamel, C., 2004. Effect of natural plant extracts on ruminal protein degradation and fermentation profile in continuous culture. Journal of Animal Science 82, 3230–3236. Costa, C.T.C., Bevilaqua, C.M.L., Maciel, M.V., Camurca-Vasconcelos, A.L.F., Morias, S.M., Monteiro, M.V.B., Farias, V.M., daSilva, M.V., Souza, M.M.C., 2006. Anthelmintic activity of Azadirachta indica A. Juss against sheep gastrointestinal nematodes. Veterinary Parasitology 137, 306–310. Cotton, C.M., 1996. Ethnobotany: Principles and Applications Chichester. John Wiley and Sons Ltd., New York. Dilshad, S.M.R., Rehman, N.U., Ahmad, N., Iqbal, A., 2010. Documentation of ethnoveterinary practices for mastitis in dairy animals in Pakistan. Pakistan Veterinary Journal 30, 167–171. Farooq, Z., Iqbalb, Z., Mushtaqa, S., Muhammad, G., Iqbala, M.Z., Arshadd, M., 2008. Ethnoveterinary practices for the treatment of parasitic diseases in livestock in Cholistan desert (Pakistan). Journal of Ethnopharmacology 118, 213–219. Hagels, H., 1999. Fagopyrum esculentum Moench. Chemical review. In Zbornik BFUL 73, 29–38. Harpreet, S., Arvind, K., 2013. Phytochemical analysis of Aesculus indica seeds extracts. Innovare Journal of Ayurvedic Sciences 1, 13–15. Hussain, A., Khan, M.N., Iqbal, Z., Sajid, M.S., 2008. An account of the botanical anthelmintics used in traditional veterinary practices in Sahiwal Districtof Punjab, Pakistan. Journal of Ethnopharmacology 119, 185–190. Iqbal, Z., Lateef, M., Jabbar, A., Gilani, A.H., 2010. In vivo anthelmintic activity of Azadirachta indica A.Juss.seeds against gastrointestinal nematodes of sheep. Veterinary Parasitology 168, 342–345. International Society of Ethnobiology, International Society of Ethnobiology Code of Ethics, 2008, 〈http://ethnobiology.net/code-of-ethics〉. Ishtiaq, M., Khan, M.A., Hanif, W., 2006. Ethno veterinary medicinal uses of plants from Samahni valley District Bhimber, (AJK). Asian Journal of Plant Sciences 5, 390–396. Joshi, S., Shrestha, K., Bajracharya, D.M., 2013. Secondary metabolite variation in some species of Senecio L. from Nepal Himalaya. The Pharma Innovation – Journal 2, 70–76. Kadir, M.F., Sayeed, M.S.B., Mia, M.M.K., 2012. Ethnopharmacological survey of medicinal plants used by indigenous and tribal people in Rangamati, Bangla-desh. Journal of Ethnopharmacology 144, 627–637. Kapoor, S.K., Sharma, Y.N., Zaman, A., 1972. Extractives of Angelica glauca. Phytochemistry 1, 475–476.

214

M. Jamil Ahmed, G. Murtaza / Journal of Ethnopharmacology 159 (2015) 209–214

Karan, M., Vasisht, K., Handa, S.S., 1999. Antihepatotoxic activity of Swertia chirata on carbon tetrachloride induced hepatotoxicity in rats. Phytotherapy Research 13, 24–30. Khan, F.M., 2009. Ethnoveterinary medicinal usage of flora of greater Cholistan desert Pakistan. Pakistan Veterinary Journal 29, 75–80. Khan, M.A., Khan, M.A., Mazhar, Hussain, 2012. Ethno veterinary medicinal uses of plants of Poonch valley Azad Kashmir. Pakistan Journal of Weed Science Research 18, 495–507. Khan, M.N., Sajid, M.S., Khan, M.K., Iqbal, Z., Hussain, A., 2010. Gastrointestinal helminthiasis: prevalence and associated determinants in domestic ruminants of district TobaTek Singh, Punjab, Pakistan. Parasitology Research 107, 787–794. Mathias, E., 2004. Ethnoveterinary medicine: harnessing its potential. Veterinary Bulletin 78, 27–37. Matekaire, T., Bwakura, T.M., 2004. Ethnoveterinary medicine: a potential alternative to orthodox animal health delivery in Zimbabwe. International Journal of Applied Research Veterinary Medicine 2, 269–273. Musa, U., Abdu, P.A., Dafwang, I.I., Katsayal, U.A., Edache, J.A., Karsin, P.D., 2008. Ethnoveterinary remedies used for the management of Newcastle disease in some selected local government areas of Plateau State Nigeria. Nigerian Journal of Pharmaceutical Sciences 7, 126–130. Nigam, G., Sharma, N.K., 2010. Ethnoveterinary plant of Jhansi District, Uttar Pradesh. Indian Journal of Traditional Knowledge 9, 664–667. Padalia, R.C., Verma, R.S., 2011. Comparative study of volatile oil compositions of two Plectranthus species from northern India. Natural Product Research 25, 1727–1732. Rastogi, R.P., Mehrotra, B.N., (Eds.), Compendium of Indian Medicinal Plants, Volume 1(1990), 2(1991), 3(1993) 4(1995). Published by Central Drug Research Institute, Lucknow and National Institute of Science Communication, New Delhi. Ruana, H.S., Caoc, L., Chena, Z.B., Jiaa, G.Y., Zhenga, X.L., Qin, X.G., 2013. Phytochemistry and pharmacology of Fagopyrum dibotrys (D. Don) H. Hara: a review. Journal of Medicinal Plants. Research 7, 2792–2800.

Saklani, S., Chandra, S., 2012. Phytochemical Screening of Garhwal Himalaya Wild Edible Fruit Ficus palmata. International Journal of Pharm Tech Research 4, 1185–1191. Sher, Z., Alyemeni, M.N., 2011. Pharmaceutically important plants used in traditional system of Arab medicine for the treatment of livestock ailments in the kingdom of Saudi Arabia. African Journal of Biotechnology 10, 9153–9159. Sri, B.N., Vikrama, C.P., 2010. Ethnoveterinary practices in India – a review. Veterinary World 3, 549–551. Sultanaa, N., Atta-ur-Rahman, Khan, T.H., 2005. Tyrosinase inhibitor fatty ester and a quinolone alkaloid from Skimmia laureola. Zeitschrift für Naturforschung 60, 1186–1191. Tabuti, J.R., Dhillion, S.S., Lye, K.A., 2003. Ethnoveterinary medicines for cattle (Bos indicus) in Bulamogi County, Uganda: plant species and mode of use Arisaema flavum (Forssk) Schoot. Journal of Ethnopharmacology 88, 279–286. Tariq, S.A., Ahmad, M.N., Obaidullah, Khan A., Choudhary, M.I., Ahmad, W., Ahmad, M., 2011. Urease inhibitors from Indigofera gerardiana Wall. Journal of Enzyme Inhibition and Medicinal Chemistry 26, 480–484. Tipu, M.A., Akthar, M.S., Anjum, M.I., Raja, M.L., 2006. New dimension of medicinal plants as animal feed. Pakistan Veterinary Journal 26, 144–148. Toyang, N.J., Wanyama, J., Nuwanyakpa, M., Django, S., 2007. Ethnoveterinary Medicine: A Practical Approach to the Treatment of Cattle Diseases in SubSaharan Africa, Second ed. Agromisa Foundation and CTA, Wageningen, The Netherlands, pp. 17–19. Uddin, G., Rauf, A., Arfan, M., Qaisar, M.A.M., Saadiq, M., Atif, M., 2012. Preliminary phytochemical screening and antioxidant activity of Bergenia caliata. MiddleEast. Journal of Scientific Research 11, 1140–1142. The Plant List, 2013. Version 1.1. Published on the Internet. 〈http://www.theplant list.org〉 (accessed 01.01.13.).

A study of medicinal plants used as ethnoveterinary: harnessing potential phytotherapy in Bheri, District Muzaffarabad (Pakistan).

Medicinal plants are utilized for handling health care system and in preventing a variety of diseases. A survey was conducted to document the rapidly ...
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