Processing-And-Drying-Of-Tropical

Total Page:16

File Type:pdf, Size:1020Kb

Processing-And-Drying-Of-Tropical Processing and Drying of Tropical Fruits Processing and Drying of Tropical Fruits Editors: Chung Lim Law, Ching Lik Hii, Sachin Vinayak Jangam and Arun Sadashiv Mujumdar 2017 Processing and Drying of Tropical Fruits Copyright © 2017 by authors of individual chapter ISBN: 978-981-11-1967-5 All rights reserved. No part of this publication may be reproduced or distributed in any form or by any means, or stored in a database or retrieval system, without the prior written permission of the copyright holder. This book contains information from recognized sources and reasonable efforts are made to ensure their reliability. However, the authors, editor and publisher do not assume any responsibility for the validity of all the materials or for the consequences of their use. Preface Tropical fruits are abundant source of nutrients and bio-active compounds that provide numerous health benefits and have been proven in many scientific studies. In today’s fast moving society and ever changing food habit of consumers have led to the development of natural food products to fulfill not only the nutritional needs but also product specifications demanded by consumers. This e-book aims to present the latest research works carried out by researchers worldwide for drying and preservation of tropical fruits ranging from the very common (e.g. mango, pineapple) to the more exotic selections (e.g. ciku, durian, dragon fruit). By converting fresh tropical fruits into dried products via advanced drying/dehydration techniques, this helps to provide an alternative choice of healthy fruit snacks especially to consumers residing outside tropical climate regions. This e-book and also several others can be freely downloaded from Prof. Mujumdar’s website (http://www.arunmujumdar.com/e-books.htm) for topics ranging from drying & dehydration, mathematical modelling to advanced food processing. To date, 19 e-books have been published by contributing authors from academia and industry. The readers are therefore encouraged to share the reading materials from this website to academics, students, industrial practitioners and libraries at no cost. On behalf of the editorial board, we would like to extend our appreciation to the contributing authors for their time and effort in preparing the respective e-book chapters. Chung Lim Law, University of Nottingham, Malaysia Campus [email protected] Ching Lik Hii, University of Nottingham, Malaysia Campus [email protected] Sachin Vinayak Jangam, NUS, Singapore [email protected] Arun S. Mujumdar, McGill University, Canada [email protected] Contributors List of Contributors Noranizan Mohd Adzahan Faculty of Food Science and Technology Universiti Putra Malaysia, 43400 UPM, Serdang Selangor, Malaysia Tel: +60389468392, Email: [email protected] Shitapan Bai-Ngew PD-FIP, Department of Product Development, Faculty of Agro-Industry Kasetsart University, Bangkok, 10900, Thailand Tel: +66 562-5010, E-mail: [email protected] Chaleeda Borompichaichartkul Department of Food Technology, Faculty of Science, Chulalongkorn University, 254 Payathai Road, Patumwan, Bangkok 10330, Thailand Tel: +662-218-5518, Email: [email protected] Javier Mauricio Castellanos-Olarte Facultad de Ingeniería Mecánica Grupo de Investigación en Desarrollo Tecnológico, Mecatrónica y Agroindustria (GIDETECHMA) Universidad Pontificia Bolivarariana Seccional Bucaramanga Autopista Piedecuesta Kilometro 7 Campus UPB, 681007 Bucaramanga, Colombia, Tel: +57 7 679 6220, E-mail: [email protected] Eric Wei Chiang Chan Faculty of Applied Sciences UCSI University No. 1, Jalan Menara Gading, UCSI Heights, 56000 Cheras, Kuala Lumpur, Malaysia. Tel: +603-91018880, E-mail: [email protected] Siew Lian Chia Faculty of Food Science and Technology Universiti Putra Malaysia, 43400 UPM, Serdang Selangor, Malaysia Tel: +6038946 6000, Email: [email protected] Chien Hwa Chong School of Engineering Taylor’s University, Malaysia Tel: +60169320389, Email: [email protected] Gun Hean Chong Faculty of Food Science and Technology Universiti Putra Malaysia, 43400 UPM, Serdang Selangor, Malaysia Tel: +60389468414, Email: [email protected] Carlos Julio Cortés-Rodríguez Facultad de Ingeniería, Departamento de Ingeniería Mecánica y Mecatrónica Universidad Nacional de Colombia- Sede Bogotá Ciudad Universitaria, 111321 Bogotá, Colombia Tel: (57-1) 316 5000 Ext. 11211, Email: [email protected] Sandra Patricia Cuervo-Andrade Facultad de Ingeniería Mecánica Grupo de Investigación en Desarrollo Tecnológico, Mecatrónica y Agroindustria (GIDETECHMA). Universidad Pontificia Bolivarariana Seccional Bucaramanga Autopista Piedecuesta Kilometro 7 Campus UPB, 681007 Bucaramanga, Colombia, Tel: +57 7 679 6220, E-mail: [email protected] Adam Figiel Faculty of Life Sciences and Technology Wroclaw University of Environmental and Life Sciences, Poland Tel: +48 71 320 57 30, Email: [email protected] Rarisara Impaprasert Department of Microbiology, Faculty of Science King Mongkut's University of Technology Thonburi, 126 Pracha-Uthis Rd., Thung-Khru, Bangkok 10140, Thailand Tel: +662-470-8915, Email: [email protected] Chung Lim Law Faculty of Engineering The University of Nottingham, Malaysia Campus Tel: +60389248169, Email: [email protected] Sin Yee Lee Faculty of Food Science and Technology Universiti Putra Malaysia, 43400 UPM, Serdang Selangor, Malaysia Tel: +603-8946 6000, Email: [email protected] Diana Cristina Sinuco León Facultad de Ciencias, Departamento de Química, ¬ Grupo de Investigación Bioprospección de Compuestos Volátiles Universidad Nacional de Colombia-Sede Bogotá Ciudad Universitaria, 111321 Bogotá, Colombia Tel: 57-1-3165000 ext 14443, Email:[email protected] Prabhat K Nema Department of Food Engineering National Institute of Food Technology Entrepreneurship and Management Kundli, Sonepat – 131028, Haryana, India Tel: +91-1302281100, Email: [email protected] Rachna Sehrawat Department of Food Engineering National Institute of Food Technology Entrepreneurship and Management Kundli, Sonepat – 131028, Haryana, India Tel: +918222827173, Email: [email protected] Choon Hui Tan Faculty of Applied Sciences UCSI University No. 1, Jalan Menara Gading, UCSI Heights, 56000 Cheras, Kuala Lumpur, Malaysia. Tel: +603-91018880, E-mail: [email protected] Nantawan Therdthai PD-FIP, Department of Product Development, Faculty of Agro-Industry Kasetsart University, Bangkok, 10900, Thailand Tel: +66 562-5010, E-mail: [email protected] Aneta Wojdyło Department of Fruit and Vegetable Processing Wrocław University of Environmental and Life Sciences, Poland Tel: 71 320 7706, Email: [email protected] Chen Wai Wong Faculty of Applied Sciences UCSI University No. 1, Jalan Menara Gading, UCSI Heights, 56000 Cheras, Kuala Lumpur, Malaysia. Tel: +603-91018880, E-mail: [email protected] Table of Contents Chapter Title/Authors Page 1 The Effects of Drying Methods on the Antioxidant and Other 1 Bioactive Properties of Fruits E.W.C. Chan, C.H. Tan and C.W. Wong 2 Drying methods as means of increasing the availability of 25 tropical fruits C. W. Wong, C. H. Tan and E. W. C. Chan 3 Alternative approaches in drying to improve nutritional and 39 textural property of mango and jackfruit based snacks. C. Borompichaichartkul and R. Impaprasert 4 Drying of Durian Flour and Product Quality 59 N. Therdthai and S. Bai-Ngew 5 Drying and Dehydration of Pitaya Fruits (Hylocereus spp.) 75 S. Y. Lee, S. L. Chia, Noranizan, M. and G. H. Chong 6 Drying of Ciku (Manilkara zapota) Using Advanced Hybrid 103 Dryers C. H. Chong, A. Figiel, A. Wojdyło and C.L. Law 7 Drying of Mango Products 123 R. Sehrawat and P. K. Nema 8 Drying Process and Quality Evaluation of Guava (Psidium 145 guajava L). S. P. Cuervo-Andrade, D.C. Sinuco-León, C.J. Cortés- Rodríguez and J.M. Castellanos-Olarte Chan, E.W.C., Tan, C.H. and Wong, C.W., The Effects of Drying Methods on the Antioxidant and Other Bioactive Properties of Fruits, In Processing and Drying of Tropical Fruits, Ed. Law, C.L., Hii, C.L., Jangam, S.V., Mujumdar, A.S. 2017, ISBN - 978-981-11-1967-5, Published in Singapore, pp. 1-24. Chapter 1 The Effects of Drying Methods on the Antioxidant and Other Bioactive Properties of Fruits E.W.C. Chan, C.H. Tan and C.W. Wong Contents 1.1 Introduction 3 1.2 Phytochemicals and Bioactivities 4 1.3 Effects of Thermal Drying 10 1.4 Effects of Low-Temperature Drying 12 1.5 Effects of Drying Through Sublimation 12 1.6 Future Studies 14 1.7 Conclusion 15 References 16 Chan et al., The Effects of Drying Methods on the Antioxidant & Other Bioactive Properties of Fruits 1.1 INTRODUCTION Fruits are an important dietary component for promoting good health. Studies have shown that a daily intake of 3 to 5 servings of fruits can prevent non- communicable or chronic diseases such as cardiovascular and respiratory diseases, cancer and diabetes, that are not passed from person to person (He et al. 2007; Lichtenstein et al. 2006; Slavin and Lloyd 2012). Traditionally, fruits are highly recommended in dietary guides because of their high vitamin content, especially vitamin A and vitamin C. Indeed, much of the early research on the antioxidant properties of fruits was focused on vitamins. However, since 1990s, attention has shifted to other phytochemicals, most notably, the flavonoids, phenolic acids and other phenolic compounds (Miller and Rice-Evans 1997). These phenolic compounds have shown to be a greater
Recommended publications
  • LIST of OPERATIVE ACCOUNTS for the DATE : 23/07/2021 A/C.TYPE : CA 03-Current Dep Individual
    THE NEW URBAN CO-OP. BANK LTD. - RAMPUR , HEAD OFFICE LIST OF OPERATIVE ACCOUNTS FOR THE DATE : 23/07/2021 A/C.TYPE : CA 03-Current Dep Individual A/C.NO NAME BALANCE LAST OPERATE DATE FREEZE TELE NO1 TELE NO2 TELE NO3 Branch Code : 207 234 G.S. ENTERPRISES 4781.00 CR 30/09/2018 Normal 61 ST 1- L-1 Rampur - 244901 286 STEEL FABRICATORS OF INDIA 12806.25 CR 01/01/2019 Normal BAZARIYA MUULA ZARIF ST 1- POSITS INDIVIDUAL Rampur - 244901 331 WEEKLY AADI SATYA 4074.00 CR 30/09/2018 Normal DR AMBEDKAR LIBRARY ST 1- POSITS INDIVIDUAL Rampur - 244901 448 SHIV BABA ENTERPRISES 43370.00 CR 30/09/2018 Normal CL ST 1- POSITS INDIVIDUAL Rampur - 244901 492 ROYAL CONSTRUCTION 456.00 CR 04/07/2019 Normal MORADABAD ROAD ST 1- L-1 RAMPUR - 244901 563 SHAKUN CHEMICALS 895.00 CR 30/09/2018 Normal C-19 ST 1- POSITS INDIVIDUAL Rampur - 244901 565 SHAKUN MINT 9588.00 CR 30/09/2018 Normal OPP. SHIVI CINEMA ST 1- POSITS INDIVIDUAL Rampur - 244901 586 RIDDHI CLOTH HOUSE 13091.00 CR 30/09/2018 Normal PURANA GANJ ST 1- POSITS INDIVIDUAL Rampur - 244901 630 SAINT KABEER ACADEMY KANYA 3525.00 CR 06/12/2018 Normal COD FORM ST 1- POSITS INDIVIDUAL Rampur - 244901 648 SHIVA CONTRACTOR 579.90 CR 30/09/2018 Normal 52 ST 1- POSITS INDIVIDUAL Rampur - 244901 Print Date : 23/07/2021 4:10:05PM Page 1 of 1 Report Ref No : 462/2 User Code:HKS THE NEW URBAN CO-OP. BANK LTD.
    [Show full text]
  • Interaction of Putative Virulent Isolates Among Commercial Varieties Of
    Journal of Pharmacognosy and Phytochemistry 2020; 9(1): 355-360 E-ISSN: 2278-4136 P-ISSN: 2349-8234 JPP 2020; 9(1): 355-360 Interaction of putative virulent isolates among Received: 16-11-2019 Accepted: 18-12-2019 commercial varieties of mango under protected condition Devappa V Department of Plant Pathology, College of Horticulture, UHS Devappa V, Sangeetha CG and Ranjitha N Campus, GKVK Post, Bengaluru, Karnataka, India Abstract Sangeetha CG The present study was undertaken to know the interaction of the putative Colletotrichum gloeosporioides Department of Plant Pathology, isolates from different regions of Karnataka. The cultural characteristics among the 10 isolates studied, College of Horticulture, UHS showed that isolates Cg-1, Cg-2, Cg-4, Cg-5, Cg-6, Cg-7, Cg-8, Cg-10 were circular with smooth margin Campus, GKVK Post, both on 7th and 12th day of inoculation. Excellent sporulation was observed in Cg-8 and Cg-4 isolate, Bengaluru, Karnataka, India good sporulation was observed in Cg-3 and Cg-9 isolates whereas, medium sporulation in Cg-1, Cg-2, Cg-5, Cg-6 and Cg-7 isolates and poor sporulation was observed in Cg-10 isolate. Among the varieties Ranjitha N tested, none of them showed immune and resistant reaction to the disease under shade house condition. Department of Plant Pathology, Dasheri (20%) exhibited moderately resistant reaction, Totapuri (28%) and Himayudhin (29.70%) College of Horticulture, UHS Campus, GKVK Post, exhibited moderately susceptible reaction whereas, Mallika (35%) and Kesar (47.30%) exhibited Bengaluru, Karnataka, India susceptible reaction. Alphanso (62.50%), Neelam (56.20%) and Raspuri (75%) exhibited highly susceptible reaction.
    [Show full text]
  • Mangifera Indica L. Cv, Amrapali
    1/25/2019 PAG XXII Workshop 1. Economic Significane of Mango Sequencing Complex Genome (Mangifera indica L.) 13th Jan 2019 Annual production value of > 20 billion USD A Reference Assembly of the Highly Heterozygous Genome of Mango (Mangifera indica L. cv, Amrapali) Nagendra K. Singh ICAR- National Research Centre on Plant Biotechnology Pusa Campus, New Delhi-110012 Acknowledgements 1. Origin and Distribution of Mangifera species Funding Support: ICAR-NPTC; ICAR-Extra Mural National Partners (PIs) Anju Bajpai, ICAR-CISH Lucknow S.K. Singh, ICAR-IARI, New Delhi K.V. Ravishankar, ICAR-IIHR Bengaluru • Origin of genus Mangifera has been Mangifera casturi traced to Damalgiri hills of Meghalaya Kalimantan, Indonesia Anil Rai, ICAR-IASRI, New Delhi by 65 my old fossil of mango leaf (R. C. Mehrotra, Birbal Sahni Institute of ICAR-NRCPB Palaeobotany, Lucknow) Vandna Rai, Kishor Gaikwad, Amitha Sevanthi • Common mango (Mangifera indica L.) originated in India (Woodrow, 1904; RA/SRF Scott, 1992; Cole & Hawson, 1963; Mukherjee, 1971; Malo, 1985). Ajay Mahato, Pawan Jaysawal, Sangeeta Singh, Nisha Singh • Mughals (1556 -1605) had a 500 -1000 ha orchard with 1,00,000 mango trees Service Provider • 1,000 varieties of mango contribute Nucleome Informatics India about 39% of the total fruit production in India 1. Domestication and Dispersal of Mango Cultivars Outline Singh et al. 2016 1. Introduction 2. Improved ‘Amrapali’ assembly with BioNano optical fingerprinting 3. Annotation of protein-coding genes 4. Annotation of repeat elements 5. Centromere, telomere and non-coding RNA genes 6. Segmental duplications and phylogeny 7. Re-sequencing, SNP Discovery, association studies 8. Prospects 1 1/25/2019 2.
    [Show full text]
  • Annual Report 2013-14
    ANNUAL REPORT 2013-14 Dr. Y.S.R. Horticultural University Venkataramannagudem, West Godavari District – 534 101 www.drysrhu.edu.in Published by : Dr.Y.S.R. Horticultural University Administrative Office, P.O. Box No. 7, Venkataramannagudem-534 101, W.G. Dist., A.P. Phones : 08818-284312, Fax : 08818-284223, e-mail : [email protected] URL: www.drysrhu.edu.in Compiled by : Dr.B.Srinivasulu, Registrar Dr.M.B.Nageswararao, Director of Industrial & International Programmes, Dr.M.Lakshminarayana Reddy, Dean PG Studies Dr.D.Srihari, Controller of Examinations Dr.J.Dilip Babu, Director of Research Dr.M.Pratap, Dean of Horticulture Dr.K.Vanajalatha, Dean of Student Affairs Dr.G.Srihari, Director of Extension Edited by : Dr.R.V.S.K.Reddy, Director of Extension All rights are reserved. No part of this book shall be reproduced or transmitted in any form by print, microfilm or any other means without written permission of the Vice-Chancellor, Dr.Y.S.R. Horticultural University, Venkataramannagudem. Dr. B.M.C. REDDY Vice-Chancellor Dr. Y.S.R. Horticultural University Foreword I am happy to present the Sixth Annual Report of Dr.Y.S.R. Horticultural University. It is a compiled document of the University activities during the year 2013-14. Dr.YSR Horticultural University was established at Venkataramannagudem, West Godavari District, Andhra Pradesh on 26th June, 2007. Dr.YSR Horticultural University is second of its kind in the country, with the mandate for Education, Research and Extension related to horticulture and allied subjects. The university at present has 4 Horticultural Colleges, 6 Horticulture Polytechnics, 27 Research Stations and 3 KVKs located in 9 agro-climatic zones of the state.
    [Show full text]
  • Redalyc.ACTIVITY of the ENZYME POLYPHENOL OXIDASE AND
    REVISTA CHAPINGO SERIE HORTICULTURA ISSN: 1027-152X [email protected] Universidad Autónoma Chapingo México Díaz de León-Sánchez, F.; Rivera-Cabrera, F.; Bosquez-Molina, E.; Domínguez-Soberanes, J.; Álvarez-Hoppe, Y.; Pérez-Flores, L. J. ACTIVITY OF THE ENZYME POLYPHENOL OXIDASE AND SUSCEPTIBILITY TO DAMAGE FROM LATEX IN 'HADEN' AND 'TOMMY ATKINS' MANGOES REVISTA CHAPINGO SERIE HORTICULTURA, vol. 11, núm. 1, enero-junio, 2005, pp. 39-42 Universidad Autónoma Chapingo Chapingo, México Available in: http://www.redalyc.org/articulo.oa?id=60912502006 How to cite Complete issue Scientific Information System More information about this article Network of Scientific Journals from Latin America, the Caribbean, Spain and Portugal Journal's homepage in redalyc.org Non-profit academic project, developed under the open access initiative 39 ACTIVITY OF THE ENZYME POLYPHENOL OXIDASE AND SUSCEPTIBILITY TO DAMAGE FROM LATEX IN ‘HADEN’ AND ‘TOMMY ATKINS’ MANGOES F. Díaz de León-Sánchez1; F. Rivera-Cabrera1; E. Bosquez-Molina2; J. Domínguez-Soberanes2; Y. Álvarez-Hoppe1; L. J. Pérez-Flores1¶. 1Departamento de Ciencias de la Salud, 2Departamento de Biotecnología. Universidad Autónoma Metropolitana-Iztapalapa, Av. San Rafael Atlixco Núm. 186, Col. Vicentina, Iztapalapa, D. F. México. C. P. 09340. MÉXICO. Correo-e: [email protected], [email protected] (¶Corresponding author) ABSTRACT Damage from latex (DPL) represents a problem in Mexican mango, causing up to 10 % of annual losses. DPL begins when exuded latex touches the fruit’s skin, producing a superficial darkness that diminishes mango quality and commercial value. Previous studies in mango suggest that terpens favor damage from latex through the activation of polyphenoloxidases (PPO’s).
    [Show full text]
  • Effect of Spacing on Growth, Yield and Quality of Mango
    J Krishi Vigyan 2017, 5(2) : 50-53 DOI : 10.5958/2349-4433.2017.00011.3 Effect of Spacing on Growth, Yield and Quality of Mango S P Gaikwad 1 S U Chalak2 and A B Kamble3 National Agriculture Research Project, Ganeshkhind 411 007, Pune ( Maharashtra) ABSTRACT A ield experiment was conducted at NARP, Ganeshkhind, during 1992 to 2013 to study high density planting of mango variety Kesar. Accordingly plant density studies in mango was laid out in the year 1992 with spacing of 5 X 5 m, 5 X 10 m and 10 X 10 m, , in randomized block design at Ganeshkhind, Pune. The growth, yield and quality parameters were recorded for three years and pooled data (2010 -2012) was analyzed statistically. The results were signiicant and the yield and monetary returns were 125 per cent more over conventional spacing. The recommendation of planting of mango cv Kesar at spacing of 5 X 5 m with light pruning (15 – 20 cm terminal shoot) after harvest of fruits every year is recommended for higher fruit yield and monetary returns in mango growing area of Maharashtra. Key Words: Spacing, Growth, Yield, Quality, Mango INTRODUCTION MATERIALS AND METHODS Mango (Mangifera indica L.) is an important The present investigation was carried out fruit crop in the tropical and subtropical regions of at National Agriculture Research Project (Plain the world. High planting density is a technique that Zone) Ganeshkhind, Pune during the year 2010- has been widely used in mango orchards worldwide 2012. Veneer grafted plants of cv Kesar on local to increase earliness to improve handling and stalk were planted in deep black alluvial soil at cultural practices and to reduce costs (Oosthuyse, three different spacing’s viz.
    [Show full text]
  • Mango (Mangifera Indica L.) Leaves: Nutritional Composition, Phytochemical Profile, and Health-Promoting Bioactivities
    antioxidants Review Mango (Mangifera indica L.) Leaves: Nutritional Composition, Phytochemical Profile, and Health-Promoting Bioactivities Manoj Kumar 1,* , Vivek Saurabh 2 , Maharishi Tomar 3, Muzaffar Hasan 4, Sushil Changan 5 , Minnu Sasi 6, Chirag Maheshwari 7, Uma Prajapati 2, Surinder Singh 8 , Rakesh Kumar Prajapat 9, Sangram Dhumal 10, Sneh Punia 11, Ryszard Amarowicz 12 and Mohamed Mekhemar 13,* 1 Chemical and Biochemical Processing Division, ICAR—Central Institute for Research on Cotton Technology, Mumbai 400019, India 2 Division of Food Science and Postharvest Technology, ICAR—Indian Agricultural Research Institute, New Delhi 110012, India; [email protected] (V.S.); [email protected] (U.P.) 3 ICAR—Indian Grassland and Fodder Research Institute, Jhansi 284003, India; [email protected] 4 Agro Produce Processing Division, ICAR—Central Institute of Agricultural Engineering, Bhopal 462038, India; [email protected] 5 Division of Crop Physiology, Biochemistry and Post-Harvest Technology, ICAR-Central Potato Research Institute, Shimla 171001, India; [email protected] 6 Division of Biochemistry, ICAR—Indian Agricultural Research Institute, New Delhi 110012, India; [email protected] 7 Department of Agriculture Energy and Power, ICAR—Central Institute of Agricultural Engineering, Bhopal 462038, India; [email protected] 8 Dr. S.S. Bhatnagar University Institute of Chemical Engineering and Technology, Panjab University, Chandigarh 160014, India; [email protected] 9 Citation: Kumar, M.; Saurabh, V.; School of Agriculture, Suresh Gyan Vihar University, Jaipur 302017, Rajasthan, India; Tomar, M.; Hasan, M.; Changan, S.; [email protected] 10 Division of Horticulture, RCSM College of Agriculture, Kolhapur 416004, Maharashtra, India; Sasi, M.; Maheshwari, C.; Prajapati, [email protected] U.; Singh, S.; Prajapat, R.K.; et al.
    [Show full text]
  • Based DNA Fingerprinting of Selected Mango (Mangifera Indica L.) Genotypes in Bangladesh
    Vol. 11(7), pp. 104-119, October-December 2019 DOI: 10.5897/JHF2019.0597 Article Number: 5B1E80B62162 ISSN 2006-9782 Copyright ©2019 Author(s) retain the copyright of this article Journal of Horticulture and Forestry http://www.academicjournals.org/JHF Full Length Research Paper Morphological characterization and Simple Sequence Repeats (SSRs) based DNA fingerprinting of selected mango (Mangifera indica L.) genotypes in Bangladesh Md. Rezwan Molla1, Iftekhar Ahmed1, Md. Amjad Hossain1, Md. Shafiqul Islam2, Md. Aziz Zilani Chowdhury3, Dilruba Shabnam4 and Md. Motiar Rohman5* 1Plant Genetic Resources Centre, Bangladesh Agricultural Research Institute, Gazipur, Bangladesh. 2Regional Horticulture Research Station, Bangladesh Agricultural Research Institute, Chapainawabganj, Bangladesh. 3Crops Division, Bangladesh Agricultural Research Council, Farmgate, Dhaka, Bangladesh. 4Department of Agricultural Extension, Plant Quarantine Wing, Narayanganj, Bangladesh. 5Plant Breeding Division, Bangladesh Agricultural Research Institute, Gazipur, Bangladesh. Received 18 July 2019; Accepted 9 September 2019 Nineteen genotypes of mango including nine released varieties viz. BARI Aam-1, BARI Aam-2 (Laxmanbhog), BARI Aam-3, BARI Aam- 4 (Hybrid), BARI Aam-5, BARI Aam-6, BARI Aam-7, BARI Aam- 8, BARI Aam-9; one parental line viz. M- 3896 and nine Geographical Indication Crops (GIs) viz. Haribhanga, Surjapuri, Fazli, Gourmoti, Ashwina, Khirsapat, Gopalbhog, Langra and Ranipasand were characterized with a view to identifying the degree of morphological and molecular variation of mango within genotypes with their historical background their historical background, and to establish a permanent database for documentation of mango in Bangladesh. Wide variations were observed among GI crops and released varieties included in this study for plant, leaf, flower and fruit characters. Among 19 mango genotypes, eight were distinct by two traits and 11 by only single character.
    [Show full text]
  • Road Map for Developing & Strengthening The
    KENYA ROAD MAP FOR DEVELOPING & STRENGTHENING THE PROCESSED MANGO SECTOR DECEMBER 2014 TRADE IMPACT FOR GOOD The designations employed and the presentation of material in this document do not imply the expression of any opinion whatsoever on the part of the International Trade Centre concerning the legal status of any country, territory, city or area or of its authorities, or concerning the delimitation of its frontiers or boundaries. This document has not formally been edited by the International Trade Centre. ROAD MAP FOR DEVELOPING & STRENGTHENING THE KENYAN PROCESSED MANGO SECTOR Prepared for International Trade Centre Geneva, december 2014 ii This value chain roadmap was developed on the basis of technical assistance of the International Trade Centre ( ITC ). Views expressed herein are those of consultants and do not necessarily coincide with those of ITC, UN or WTO. Mention of firms, products and product brands does not imply the endorsement of ITC. This document has not been formally edited my ITC. The International Trade Centre ( ITC ) is the joint agency of the World Trade Organisation and the United Nations. Digital images on cover : © shutterstock Street address : ITC, 54-56, rue de Montbrillant, 1202 Geneva, Switzerland Postal address : ITC Palais des Nations 1211 Geneva, Switzerland Telephone : + 41- 22 730 0111 Postal address : ITC, Palais des Nations, 1211 Geneva, Switzerland Email : [email protected] Internet : http :// www.intracen.org iii ACRONYMS AND ABBREVIATIONS Unless otherwise specified, all references to dollars ( $ ) are to United States dollars, and all references to tons are to metric tons. The following abbreviations are used : AIJN European Fruit Juice Association BRC British Retail Consortium CPB Community Business Plan DC Developing countries EFTA European Free Trade Association EPC Export Promotion Council EU European Union FPEAK Fresh Produce Exporters Association of Kenya FT Fairtrade G.A.P.
    [Show full text]
  • OUTSTANDING WARRANTS As of 10/10/2017
    OUTSTANDING WARRANTS as of 10/10/2017 AGUILAR, CESAR JESUS ALEXANDER, SARAH KATHEREN ALLEN, RYAN MICHAEL A AGUILAR, ROBERTO CARLOS ALEXANDER, SHARRONA LAFAYE ALLEN, TERRELL MARQUISE AARON, WOODSTON AGUILERA, ROBERTO ALEXANDER, STANLEY TOWAYNE ALLEN, VANESSA YVONNE ABABTAIN, ABDULLAH AGUILIAR, CANDIDO PEREZ ALEXANDER, STEPHEN PAUL ALMAHAMED, HUSSAIN HADI M MOHAMMED A AHMADI, PAULINA GRACE ALEXANDER, TERRELL ALMAHYAWI, HAMED ABDELTIF, ALY BEN AIKENS, JAMAL RAHEEM ALFONSO, MIGUEL RODRIGUEZ ALMASOUDI, MANSOUR ABODERIN, OLUBUSAYO ADESAJI AITKEN, ROBERT ALFORD, LARRY ANTONIO MOHAMMED ALMUTAIRI, ABDULHADI HAZZAA ABRAMS, TWANA AKIBAR, BRIANNA ALFREDS, BRIAN DANIEL ALNUMARI, HESHAM MOHSMMED ABSTON, CALEB JAMES AKINS, ROBERT LEE ALGHAMDI, FAHADAHMED-A ALONZO, RONY LOPEZ ACAMPORA, ADAM CHRISTOPHER AL NAME, TURKI AHMED M ALHARBI, MOHAMMED JAZAA ALOTAIBI, GHAZI MAJWIL ACOSTA, ESPIRIDION GARCIA AL-SAQAF, HUSSEIN M H MOHSEB ALHARBI, MOHAMMED JAZAA ALSAIF, NAIF ABDULAZIZ ACOSTA, JADE NICOLE ALASMARI, AHMAD A MISHAA ALIJABAR, ABDULLAH ALSHEHRI, MAZEN N DAFER ADAMS, ANTONIO QUENTERIUS ALBERDI, TOMMY ALLANTAR, OSCAR CVELLAR ALSHERI, DHAFER SALEM ADAMS, BRIAN KEITH ALBOOSHI, AHMED ABALLA ALLEN, ANDREW TAUONE ALSTON, COREY ROOSEVELT ADAMS, CHRISTOPHER GENE ALBRIGHT, EDMOND JERRELL ALLEN, ANTHONY TEREZ ALSTON, TORIANO ADARRYL ADAMS, CRYSTAL YVONNE ALCANTAR, ALVARO VILCHIS ALLEN, ARTHUR JAMES ALTMAN, MELIS CASSANDRA ADAMS, DANIEL KENNETH ALCANTAR, JOSE LUIS MORALES ALLEN, CHADWICK DONOVAN ALVARADO, CARLOS ADAMS, DARRELL OSTELLE ALCANTARA, JESUS ALLEN, CHRISTOPHER
    [Show full text]
  • Economics Analysis of Mango Orchard Production Under Contract Farming in Taluka Tando Adam District Sanghar Sindh, Pakistan
    Journal of Biology, Agriculture and Healthcare www.iiste.org ISSN 2224-3208 (Paper) ISSN 2225-093X (Online) Vol.5, No.11, 2015 Economics Analysis of Mango Orchard Production under Contract Farming in Taluka Tando Adam District Sanghar Sindh, Pakistan Ms. Irfana NoorMmemon *1 Sanaullah Noonari 1 Muhammad Yasir Sidhu 2 Mmuhammad Usman Arain 2 Riaz Hhussain Jamali 2 Aamir Ali Mirani 2 Akbar Khan Khajjak 2 Sajid Ali Sial 2 Rizwan Jamali 2 Abdul Hameed Jamro 2 1. Assistant Professor, Department of Agricultural Economics, Faculty of Agricultural Social Sciences, Sindh Agriculture University, Tandojam Pakistan 2. Student, Department of Agricultural Economics, Faculty of Agricultural Social Sciences,Sindh Agriculture University, Tandojam Pakistan E-mail: [email protected] Abstract The present study has been designed to investigate cost of production, and returns per acre of mango fruit. A sample of 60 mango farmers was taken purposively from various villages in taluka Tando Adam district Sanghar Sindh Pakistan. The objective was to work out benefit cost ratio and net present worth of growing mango orchard. The mango growers in study area on average per farm spent a sum of Rs. 38000.00. This included Rs. 6000.00 for loading, Rs. 16000.00 for transportation and Rs. 6000.00 of unloading respectively in the study area. The mango grower in the study area on average per acre spent a total cost of production of Rs. 203762.00 this included Rs.80000.00, Rs.28847.00, Rs.56915.00 and Rs.38000.00 on fixed cost, labour costs, Capital Inputs and marketing costs respectively in the study area.
    [Show full text]
  • Understand Bearing Habit in Mango
    Mini Review Curr Trends Biomedical Eng & Biosci Volume 7 Issue 2 - August 2017 Copyright © All rights are reserved by Nimisha Sharma DOI: 10.19080/CTBEB.2017.07.555707 Understand Bearing Habit in Mango Nimisha Sharma1, Sanjay Kumar Singh1, Jai Prakash1, Manish Srivastav1, Ajay Kumar Mahato2 and Nagendra Kumar Singh2 1Division of Fruits and Horticultural Technology, ICAR-Indian Agricultural Research Institute, India 2ICAR- National Research Centre on Plant Biotechnology, New Delhi, India Submission: August 03, 2017; Published: August 21, 2017 *Correspondingauthor: Nimisha Sharma, Scientist, IARI, New Delhi, India, Email: Introduction commercial varieties of North India, namely, Dashehari, Langra India is the major producer of various fruit crops like and Chausa are biennial bearers, while south Indian varieties mangoes, banana, citrus, etc. In the world, although it’s relative like Totapuri Red Small, Bangalora, and Neelum are known to share in the world production has been gradually declining. The be regular bearers. Among the most important commercial decline in production is attributed not only due to the incidence varieties of the South, Neelum (Kazaladdu), Banganapalli (Sappatai), Bangalora (Kizhimooku, Totapuri) Kalepad and of pests and diseases, but also influenced by other factors like Senthura (Chinnaswarnarekha) are moderate to heavy bearers irregular bearing etc. Alternate bearer fruit cultivars present a poor germination percentage, lack of efficient rootstocks, and are considered to be fairly regular. Choice varieties such as serious economic problem to fruit growers. During a good year, Alphonso (Gundu), Imam Pasand (Himayuddin), Mulgoa, Peter a tree can be loaded with bumper yield; however, crop quality (Pairi, Nadusalai) etc., are mostly erratic in bearing.
    [Show full text]