Ichthyofaunal Study in Trans-Himalayan Rakchham-Chhitkul Wildlife Sanctuary in Baspa (Sangla) Valley, District Kinnaur, Himachal Pradesh, India

Similar documents
Biodiversityof Marine Ornamental Fish in West Bengal: Issues of Sustainability and Livelihood Security

DOWNLOAD OR READ : THE TROUT FISHERMEN PDF EBOOK EPUB MOBI

Chhomrong Report

The Land Where Continents Collided. Physical Geography and Climate of South Asia

THE DIET OF Lutra canadensis IN THE UPPER COLORADO RIVER SYSTEM

CHAPTER 2 DIVERSITY OF HONEYBEES IN TAMIL NADU, INDIA

COLLEGE OF FISHERIES CENTRAL AGRICULTURAL UNIVERSITY (IMPHAL) Lembucherra, Tripura

ATLANTIC SALMON NEWFOUNDLAND AND LABRADOR, SALMON FISHING AREAS 1-14B. The Fisheries. Newfoundland Region Stock Status Report D2-01

Tracking Drowning Trends in Himachal Pradesh during

Report. On Fish Diversity in Wangchuck Centennial National Park

WFC 10 Wildlife Ecology & Conservation Nov. 29, Restoration Ecology: Rivers & Streams. Lisa Thompson. UC Cooperative Extension

STUDY PERFORMANCE REPORT

Study of Fish Fauna, Species Diversity and Relative Abundance of Fishes in River Asan in Western Dehradun, Uttrakhand

Freshwater Fisheries in Iceland

Spatial Distribution and Seasonal Variability of Rainfall in a Mountainous Basin in the Himalayan Region

N.V. Nanda Kumar, A. Nagarjuna and D.C. Reddy

Probabilistic models for decision support under climate change:

CONSERVING BIODIVERSITY AND SUSTAINING S LIVELIHOODS ALONG THE MEKONG RIVER IN LUANG PHRABANG, XAYABOURI AND

We would also like to thank Dr. Martin O Grady (CFB) and No. 3 Operational Wing, Irish Air Corps (Aer Chór na héireann) for the aerial photographs.

Burns Paiute Tribe Fisheries Department. Evaluate The Life History Of Native Salmonids Within The Malheur Subbasin Project #

Fish Survey Report and Stocking Advice for Loch Milton. (Loch a Mhuilinn), May 2011

Amendment to a Biological Assessment/Evaluation completed for the Coon Creek Land Disposal completed December Grand Valley Ranger District

DOWNLOAD OR READ : TROUT STREAMS OF WESTERN NEW YORK PDF EBOOK EPUB MOBI

Canon Envirothon Wildlife Curriculum Guidelines

The Blue Heron Slough Conservation Bank

Nordatlantisk Fiskeriministerkonference i Shediac 29. august 2017

niche requirements, interspecific

Ecology. Professor Andrea Garrison Biology 3A Illustrations 2014 Cengage Learning unless otherwise noted

Cold-transitional Stream

Alberta Conservation Association 2009/10 Project Summary Report. Project Name: Crowsnest Drainage Sport Fish Population Assessment Phase 1

in Northern Alaska Dolly Varden & Arctic Char Distribution for Alaska and Chukotsk Peninsula

COMPARATIVE STUDY OF ICHTHYOFAUNA AND FISHERY POTENTIAL OF PERENNIAL TANKS OF KOLHAPUR DISTRICT, (MAHARASHTRA)

Table: IUCN Red List Assessment Results

MT - GEOGRAPHY - (73) - SEMI PRELIM - II : PAPER - 6

STUDY GUIDE. Physical Features. The Land. Chapter 23, Section 1. Landforms. Rivers. Natural Resources. Terms to Know DRAWING FROM EXPERIENCE

The Rufford Foundation Final Report

IMPLEMENTING REGULATIONS OF THE WILDLIFE CONSERVATION LAW. Authorized by the Republic of China Wildlife Conservation Law, amended October 29, 1994.

ELECTRO-FISHING REPORT 2016 UPPER TWEED

Fisheries Management Zone 10:

Fish Conservation and Management CONS 486

Project Name: Distribution of Sport Fish in the Waterton River Tailwater, 2014

Ichthyofaunal diversity of the Drinjača catchment area

Length-Weight Relationship and Condition Factor of Catla catla in Chhirpani Reservoir, Chhattisgarh, India

DOWNLOAD OR READ : WILD LIFE IN THE ROCKY MOUNTAINS PDF EBOOK EPUB MOBI

Status of Predatory Ichthyofauna Diversity of Malda and Murshidabad District of West Bengal: An Approach towards Biodiversity Management

Map Showing NAFO Management Units

Lake Chelan Kokanee Spawning Ground Surveys 2012 Final Report

NEVADA DEPARTMENT OF WILDLIFE STATEWIDE SPORT FISHERIES MANAGEMENT

Alberta Conservation Association 2017/18 Project Summary Report

SNOW LEOPARD TRAIL SNOW LEOPARD TRAIL Feb 10-23, 2019

AREAS BEYOND NATIONAL JURISDICTION: INDIAN OCEAN DEVELOPING COASTAL STATES TUNA MANAGEMENT WORKSHOP

Causes of Tiger (Panthera tigris) Population Decline, and Potential Consequences if the Decline Continues

no-take zone 1 of 5 Channel Islands National Marine Sanctuary, California

NATIONAL BIORESOURCE DEVELOPMENT BOARD Dept. of Biotechnology Government of India, New Delhi

AMERICAN FISHERIES SOCIETY HUMBOLDT CHAPTER CALIFORNIA-NEVADA CHAPTER 1990 NORTHEAST PACIFIC CHINOOK & COHO SALMON WORKSHOP PROCEEDINGS

Appendix Template for Submission of Scientific Information To Describe Ecologically or Biologically Significant Marine Areas

Cold Small River. A Brief Ecological Description of this Michigan River Type

Arizona Game and Fish Department Region I Fisheries Program. Chevelon Canyon Lake Fish Survey Report Trip Report April 2015

WILDLIFE CONSERVATION ACT ANGLING REGULATIONS

Seafood Watch Standard for Salmon Fisheries. Public comment period 3: Comment Form

Little Kern Golden Trout Status:

Your web browser (Safari 7) is out of date. For more security, comfort and. the best experience on this site: Update your browser Ignore

Trophy Hunting- Pakistan. A successful community-based programme by Tahir Rasheed

WFC 50 California s Wild Vertebrates Jan. 11, Inland Waters (Lakes and Streams) Lisa Thompson

Biodiversity and Conservation Biology

A Cost Effective and Efficient Way to Assess Trail Conditions: A New Sampling Approach

Stillwater Status Report: Lough Muck, County Donegal

Chagrin River TMDL Appendices. Appendix F

Angling in Manitoba (2000)

FISHERIES BLUE MOUNTAINS ADAPTATION PARTNERSHIP

ASSESSMENT OF ARTISANAL FISHING GEARS IMPACT ON KING FISH (Scomberomorus commerson) IN THE KENYAN MARINE ECOSYSTEM.

Cold-transitional Small River

White-tailed Deer: A Review of the 2010 Provincially Coordinated Hunting Regulation

FWCP External Projects Delivered by Stakeholders and First Nations

Snow leopard (Panthera uncia) Conservation WWF-India Initiative. Aishwarya Maheshwari Species Conservation Programme WWF-India

Black Sturgeon Regional Plan

REBOUND. on the. It was the winter of 2000/2001, and it seemed like the snow

Fish Diversity in a Kumaun Himalayan River, Kosi, at Almora Uttarakhand. India.

Bay of Fundy Estuary Profile

Alberta Conservation Association 2016/17 Project Summary Report. Peter Aku, Mandy Couve, Kevin Fitzsimmons, Troy Furukawa, Chad Judd and Mike Rodtka

Alberta Conservation Association 2018/19 Project Summary Report

Water Framework Directive Fish Stock Survey of Glencar Lough, August 2013

Impact of introduction of culture based fisheries on fish production in two perennial reservoirs in Sri Lanka

Seasonal variations of hydro-chemistry in certain ephemeral streams in a tropical climate, northeastern India

LUTREOLA - Recovery of Mustela lutreola in Estonia : captive and island populations LIFE00 NAT/EE/007081

1. INTRODUCTION. and political development has, in the past, been largely related to the availability and

NEVADA DEPARTMENT OF WILDLIFE STATEWIDE FISHERIES MANAGEMENT

Michigan Dept. of Natural Resources Status of the Fishery Resource Report Page 1. Weber Lake Cheboygan County, T34N, R3W, Sec.

2010 Wildlife Management Unit 501 moose and deer

DOWNLOAD OR READ : TROUT IN THE DESERT PDF EBOOK EPUB MOBI

Broken Bar W Ranch TETON VALLEY, IDAHO. Hunting Ranching Fly Fishing Conservation

NEVADA DEPARTMENT OF WILDLIFE STATEWIDE FISHERIES MANAGEMENT

Madeline Midas, Asia Williams, Cindy Cooper U. S. Air Force Academy, 2354 Fairchild Drive, USAF Academy, CO, 80840

State of San Francisco Bay 2011 Appendix O Steelhead Trout Production as an Indicator of Watershed Health

Salmon Five Point Approach restoring salmon in England

Aquatic biodiversity conservation and the case of salmonid stocking: Identifying drivers for policy change

First Nations Fish Habitat Program Discussion Workbook

NEVADA DEPARTMENT OF WILDLIFE STATEWIDE FISHERIES MANAGEMENT FEDERAL AID JOB PROGRESS REPORT F STREAM FISHERIES MANAGEMENT WESTERN REGION

NINA Aquatic Research Station, Ims

Tiger Conservation: Capacity Building Training for Forest Frontline Staff, Namdapha Tiger Reserve, Arunachal Pradesh

Transcription:

International Journal of Biology; Vol. 9, No. 1; 2017 ISSN 1916-9671 E-ISSN 1916-968X Published by Canadian Center of Science and Education Ichthyofaunal Study in Trans-Himalayan Rakchham-Chhitkul Wildlife Sanctuary in Baspa (Sangla) Valley, District Kinnaur, Himachal Pradesh, India Rakesh Kumar Negi 1 & H.S. Banyal 2 1 Government College, Sunni, Shimla, H.P., India 2 Abhilashi University, Chailchowk, Mandi, H.P. - 175028, India Correspondence: Rakesh Kumar Negi, Government College, Sunni, Shimla, H.P. India. E-mail: rkrajputgc@gmail.com Received: December 21, 2016 Accepted: December 29, 2016 Online Published: December 31, 2016 doi:10.5539/ijb.v9n1p36 URL: http://dx.doi.org/10.5539/ijb.v9n1p36 Abstract The Trans-Himalayan landscape is a high elevation land. The area is characterized by extreme cold, low precipitation and rugged terrain of mountains. Biodiversity is the variety and variability of all forms of life on earth that plays a great role in human existence. This includes diversity within species, between species and of ecosystems. The exploration of Rakchham-Chhitkul Wildlife Sanctuary present in the Baspa (Sangla) valley situated in remote tribal district of Kinnaur in Himachal Pradesh, formed by the two of world s greatest mountain ranges namely Great Himalayan range and Dhauladhar ranges in India revealed the presence of 2 species of fish belonging to 2 genera, 1 families and 1 order. It was noticed that both species of fish were exotic species which were introduced in India in early twentieth century from European countries. Keywords: Biodiversity, Icthyology, Trout, Trans-Himalayan, Kinnaur 1. Introduction Himalayan mountains are the most magnificent and youngest mountain systems in the world. The proportion of endemic taxa is substantial in the entire Himalayan Range and this ecoregion has been designated as a global biodiversity hotspot (Mittermier et al., 2004). The Trans-Himalayan landscape is a high elevation land with average altitude of about 4,000 m. The area is characterized by extreme cold, low precipitation and rugged terrain of mountains. Biodiversity may be defined as the variety and variability among living organisms and the ecological complexes in which they occur. It encompasses the variety and variability of all forms of life on earth. It is necessary for our existence as well as valuable in its own right (Wanjui, 2013). It is measured most commonly, at the level of species. The fishes are a group of animals formed of aquatic cold-blooded vertebrates possessing gills for respiration throughout life and limbs, if any, are in the shape of fins and primarily depend on water as a medium to live in. These are consumed by human world over as they are rich in proteins, vitamins, and other nutrients. They are also good indicator of the ecological well being of the waters they inhabit. This group comprises about half the total number of vertebrates with a total of 32447 valid species (www.fishbase.org). The described number of species is 27,977 belonging to 62 orders, 515 families and 4,494 genera and valid number of extant species on earth is estimated to be close to 32,500 (Nelson 2006). Noteworthy is the fact that about 12000 species or 42.72%, normally live in freshwater lakes and rivers that cover only 1% of the earth s surface and account for a little less than 0.01% of its water while remaining around 16000 species live in salt water covering a full 70% of earth surface. India considered as one of the mega biodiversity country is home to 2,546 species of fish belonging to 969 genera, 254 families and 40 orders out of which 930 species belonging to 326 genera, 99 families and 20 orders are the fresh water species (Talwar & Jhingram 1991). From amongst the 4 living classes of fishes, India harbours 2 classes, viz., Chondrichthyes (those with cartilaginous skeleton) and Osteichthyes (those with bony skeleton). The cartilaginous fishes, Chondrichthyes are represented by 131 species belonging to 67 genera, 28 families and 10 orders, and Osteichthyes by 2,415 species in 902 genera, 226 families and 30 orders of which five families notably the family Parapsilorhynchidae are endemic to India (Barman, 1998). Out of the 2200 species listed so far, 36

1440(65.45%) belongs to the marine ecosystem, 143(6.50%) to the brackish waters, 54(24.73%) to the warm freshwater domain, and 73(3.32%) cold freshwater regime. The checklist of Menon (1999) lists 446 primary freshwater species under 33 families and 11 orders from the Indian region alone. Of the primary freshwater species 68% are constituted by the Cyprinoids, 18% by Siluroids and 14% by other groups. Jayaram (1999) listed 852 freshwater species of fishes under 272 genera, 71 families and 16 orders, including both primary and secondary freshwater fishes from India, Bangladesh, Myanmar, Nepal, Pakistan and Sri Lanka. Himachal Pradesh has only 1.7% of total geographical area of the country but contributes more than 4% of its fish species with 104 species belonging to 48 genera, 14 families and 8 orders (Mehta and Uniyal, 2005). The streams in Himachal Pradesh falls under two categories, the general water streams and trout water streams with estimated length of 600 and 2400 kms respectively, thus presenting suitable habitats for the fish fauna. The fish species distribution in the Himalayan streams depends on the flow rate, nature of substratum, water temperature and the availability of food; however water temperature is the most important limiting factor affecting geographical distribution and local occurrence within one water system. Because of the extreme climatic conditions, the fish fauna in Trans-Himalayan region of the state is not very high as evidenced by the reporting of 5 species from Kinnaur and only 2 species from Lahaul & Spiti district (Mehta and Uniyal, 2005). Similiarly, only three species of fish were reported from Pin Valley National Park, Lahaul & Spiti district of Himachal Pradesh (Mehta and Sharma, 2008) 2. Study Area Present study has been conducted in Rakchham- Chhitkul Wildlife Sanctuary located in the Baspa (Sangla) valley with geo-coordinates of latitude 31 0 14 22 N - 31 0 28 37 N and longitudes 78 0 17 31 E - 78 0 31 30 E covering an area of about 304 Km 2 in the northeast corner of Kinnaur, a tribal district in Himachal Pradesh, India (Fig. 1). The Baspa river originating near the Indo-Tibet border from Baspa Bamak and Arsomang glaciers travels 72 Km through the valley giving it not only the water but also its name, joins the river Sutlej at Karchham. The Baspa (Sangla) valley is characterized by mountains covered by perpetual snow cover (Deota et al., 2011). These rugged, precipitous peaks represent two of the world s greatest mountain ranges namely Great Himalayan range and Dhauladhar ranges on the right and left bank of Baspa river respectively. The altitude of Baspa valley ranges from 2,800 masl to 5,486 masl. The temperature varying from -15 C to 18 C, mean rainfall 463 mm and annual snowfall 1,130 mm. The ecological characteristics changes very sharply in the mountains due to steep gradient. Thus there is a great variation in climatic conditions in the valley. The parts of the sanctuary up to altitude 3,450 m get good precipitation in the form of rain or snow but beyond that the precipitation is scanty and mainly in the form of snow. The forest type of this sanctuary includes Lower Western Himalayan Temperate Forest, Upper Western Himalayan Temperate Forest and Sub-Alpine Birch-Fir Forest. The sanctuary area is fed with numerous snow-fed perennial and seasonal streams. The ichthyofauna of Himachal Pradesh has engaged the attention of many distinguished investigators since long, who have conducted studies on diversity of fishes in different parts of the state (McClelland 1839, 1842; Stenidachner 1867, Hora 1927, Menon 1951, 1954, 1962, 1974, 1987, 1999, Bhatanagar 1973, Tilak and Husain 1977, Sharma and Tandon 1990, Mehta 2000, Dhanze and Dhanze 2004, Jagtap 2013, Singh and Banyal, 2013). In a recent study, the distribution, conservation and abundance status of fish fauna of state were discussed which includes 81 fish species comprising of 49 genera, 18 families and 6 orders (Sharma and Sidhu 2016). In the past, a few attempts have been made to study the fish fauna of Trans-Himalayan region of Himachal Pradesh (Mehta and Uniyal 2005, Mehta and Sharma 2008, Kumar 2010). However, the present study area of Rakchham-Chhitkul wildlife sanctuary has received very little attention of the investigators due to severe cold climate, and inaccessible habitat. Only a few studies have been conducted on diversity and ecology of larger vertebrates of this sanctuary area (Wynter-Blyth, 1948; Narang, 1989; Negi and Banyal, 2015 a&b). The present study is the first of its kind and will act as baseline literature for further studies on the biodiversity of thus far neglected area. 3. Methodology The present work is an attempt to study the abundance and diversity of fish fauna of the study area. The study area was divided in to three altitudinal zones viz., Zone-I: The area from Sangla to Kharogla (2700 to 3000 m) which support the forests of lower level fir like Tosh, Zone-II: The area from Rakchham to Mastarang (3050 to 3300 m) supporting the forests of Deodar and Blue pine and Zone-III: Area from Chhitkul to Dumti (3450 to 4200 m) supporting the tracts of blue pine, birch & rhododendron forests, and alpine meadows. The survey was conducted during June 2012 to June 2013 at various locations situated at different altitudes. Apart from the Baspa River which is the main river of the valley various spring water channels situated at different altitudes were also explored. Fish fauna of the area were studied by periodically trapping them using drag nets. These specimens were 37

photographed for identification and were then transferred back to the water body. No specimens were killed or brought to laboratory during the present study. Identification of these specimens was based on morphological characters. Fishes were identified with the help of keys and diagnostic character given in Talwar and Jhingran (1991) and Jayaram (1999). Figure 1. Map of Baspa valley, the study area in District Kinnaur, Himachal Pradesh, India (Source: mapsofindia.com and diagrammatic map of Baspa Valley) 4. Results and Discussion Present study revealed the presence of 2 species of fishes, belonging to two genera of Family Salmonidae, Order Salmoniformes and Class Actinopterygii. During present study these species were recorded in zone I & II while they were absent and not recorded in zone III. Table 1. Systematic list of fishes observed in Rakchham-Chhitkul Wildlife Sanctuary, Baspa (Sangla) Valley, District Kinnaur, Himachal Pradesh (India) S. No Zoological Name Common Name Class Order Family 1 Oncorhynchus mykiss Walbaum, 1792, Rainbow trout Actinopterygii Salmoniformes Salmonidae 2 Salmo trutta fario Linnaeus 1758, Brown trout. Actinopterygii Salmoniformes Salmonidae It was observed that the two species recorded, were the exotic species introduced in this region. Five species of salmonids were introduced in the Himalayas between 1905 and 1969 from Europe, North America and Canada. 38

These were: brown trout, rainbow trout, eastern brook trout (Salvelinus fontinalis), splake (hybrid between lake and brook trouts), and the land-locked variety of Atlantic salmon (Salmo salar). Of these, brown trout is now well established, with a number of self-sustaining populations in the streams of the Himalayas. Rainbow trout has failed to establish itself in the stream ecosystem but it is cultured in fish farms. The government has setup fish seed farms to produce the seeds of these exotic fishes and stock it in rivers and reservoirs with an aim to replenishing the harvested stocks from these water bodies. The study area has a small trout farm in zone I on the left bank of Baspa in Sangla which was established in 1965. This hatchery is producing seed of Rainbow trout (Oncorhynchus mykiss), and Brown trout (Salmo trutta fario). The fishes were recorded most frequently from the areas nearer to this trout farm. In addition to the river Baspa, the fishes were also recorded from spring water channels in the village of Rakchham and in the Nashi and Nagasti area of Chhitkul village. These spring water channels provide unique microhabitats to these fishes as the temperature in these water bodies remains comparatively high and they do not freeze during winters. The population of fishes were more in areas with low altitudes, while as the altitude increases there was marked decrease in population of these fishes. The study area has of late witnessed various development activities. With its lofty snow capped peaks, mountain streams, magnificent biodiversity and fascinating ethnic diversity the valley, over the years has developed as a favoured tourist destination leading to the arrival of large number of tourists every year. The unregulated growth of tourism industry can make an upbeat destination lose its scenic charm and tranquillity. The visitors are offered angling activity which is going to be detrimental to these exotic species. The research in such protected areas can not only add to the body of human knowledge but also generate information useful for the efficient management of our national parks and wildlife sanctuaries and forests. Acknowledgements RKN is grateful to Chairman, Department of Biosciences, H.P. University, Shimla for providing the necessary technical facilities required for this study. References Barman, R. P. (1998). Pisces. In Faunal Diversity in India. Zoological Survey of India, Kolkata (pp. 418-426). Bhatanagar, G. K. (1973). On a collection of fish from Bhakra reservoir, Sutlej river and closely associated waters. Journal of Inland Fisheries Society of India, 5, 134-136. Deota, B. S., Trivedi, Y. N., Kulkarni, A. V., Bahuguna, I. M., & Rathore, B. P. (2011). RS and GIS in mapping of geomorphic records and understanding the local controls of glacial retreat from the Baspa Valley, Himachal Pradesh, India. Current Science, 100(10). Dhanze, R., & Dhanze, J. R. (2004). Fish diversity of Himachal Pradesh. In Fish diversity in protected habitats. NATCON, Publication, U.P. Jagtap, H. S. (2013). Fish Fauna of Himachal Pradesh: A Case Study. International Journal of Scientific Research, 2(7). Jayaram, K. C. (1999). The fresh water fishes of the Indian region. Narendra Publishing House, Delhi, p 551. Kumar, A. (2010). Hydrological conditions of River Beas and its fish fauna in Kullu Valley, Himachal Pradesh, India. Environment Conservation Journal, 11, 7-10. McClelland, J. (1839). Indian Cyprinidae. Asiatic Research, 19, 262-450. McClelland, J. (1842). On the freshwater fishes collection by William Griffith. Calcutta Journal of Natural History, 2, 560-589. Mehta, H. S., & Sharma, I. (2008). Pisces. In: Fauna of Pin Valley National Park. Zoological survey of India publication, Kolkata, 34, 75-84. Mehta, H. S., & Uniyal, D. P. (2005). Pisces. In: Fauna of Western Himalaya (Part 2). Zoological Survey of India, Kolkata, 255-268. Menon, A. G. K. (1951). Note on fishes in the Indian Museum. XLVII. On two new species of the genus Nemachilus from Kangra Valley, Punjab. Indian Museum of science, 49, 227-230. Menon, A. G. K. (1954). Fish geography of Himalayas. Proceedings of the national institute of sciences, India, 20, 467-493. Menon, A. G. K. (1962). A distribution list of fishes of the Himalayas. Journal of Zoological Society of India, 14, 23-32. 39

Menon, A. G. K. (1974). A checklist of fishes of the Himalayan and the Indo-Gangetic plains. Special publication no. 1. Inland Fisheries Society of India, Barrackpore, India, p 136. Menon, A. G. K. (1987). Pisces, 4 (I). In: Fauna of India and the Adjacent Countries. Zoological Survey of India, Kolkata, p 259. Menon, A. G. K. (1999). Checklist of freshwater fishes of India. Records of Zoological Survey of India, 175, 366. Mittermeier, R. A., Gil, R. P., Hoffmann, M., Pilgrim, J., Brooks, T., Mittermeier, C. G., dafonseca, G. A. B. (2004). Hotspots revisited: Earth s biologically richest and most endangered terrestial ecosystems. Cemex, Mexico. Narang, M. L. (1989). Birds of Sangla Valley. Newsletter for Birdwatchers, 29(5-6), 8. Negi R. K., & Banyal, H. S. (2015b). Status, Diversity and Ecology of Mammals of Trans-Himalayan Rakchham-Chhitkul Wildlife Sanctuary in Baspa (Sangla) Valley, District Kinnaur, Himachal Pradesh, India. IOSR Journal of Pharmacy and Biological Sciences (IOSR-JPBS), 10(4), 06-12. http://dx.doi.org/10.9790/3008-10450612 Negi, R. K., & Banyal, H. S. (2015a). Avifauna of Rakchham- Chhitkul Wildlife Sanctuary District Kinnaur, Himachal Pradesh, India. IOSR Journal of Pharmacy and Biological Sciences (IOSR-JPBS), 10(2), 18-25 DOI: 10.9790/3008-10241825 Nelson, J. S. (2006). Fishes of the World (pp. 1-601). Fourth Edition, John Wiley and Sons, Inc.. Sharma, I., & Sidhu, A. K. (2016). Faunal Diversity of all Vertebrates (excluding Aves) of Himachal Pradesh. Biological Forum An International Journal, 8(1), 1-26, 2249-3239. Sharma, V. K., & Tandon, K. K. (1990). The fish and fisheries of Himachal Pradesh state of India. Publication of Fish Bulletin, 14, 41-46. Singh, V., & Banyal, H. S. (2013). Study on fish species recorded from Khajjiar lake of Chamba district, Himachal Pradesh, India. I.J.S.N., 4(1), 96-99. Stenidachner, F. (1867). Ichthyologische Notizen. IV. Sitzungsberichte der Konigl Akademie der Wissenschaften zu Munchen, 55, 517-534. Talwar, P. K., & Jhingram, A. G. (1991). Inland fishes of India and adjacent countries. Oxford publication, New Delhi, 1-2: 1-1158. Tilak, R., & Husain, H. (1977). A checklist of fishes of Himachal Pradesh. Zool. Jb. Syst. Bd., 104, 265-301. Wanjui, J. (2013). Biodiversity Conservation Needs and Method to Conserve the Biological Diversity. J Biodivers Endanger Species, 1, 113. http://dx.doi.org/10.4172/2332-2543.1000113 Wynter-Blyth, M. A. (1948). An expedition to Sangla in Kunawar. J. Bombay Nat. Hist. Soc., 47(4), 565-585. Copyrights Copyright for this article is retained by the author(s), with first publication rights granted to the journal. This is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/). 40