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Gyanendra Pratap Singh | Akateeminen Kirjakauppa

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Physiological, Molecular, and Genetic Perspectives of Wheat Improvement
Shabir H Wani (ed.); Amita Mohan (ed.); Gyanendra Pratap Singh (ed.)
Springer (2020)
Kovakantinen kirja
205,70
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Physiological, Molecular, and Genetic Perspectives of Wheat Improvement
Shabir H Wani (ed.); Amita Mohan (ed.); Gyanendra Pratap Singh (ed.)
Springer (2021)
Pehmeäkantinen kirja
205,70
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Wheat Blast
Sudheer Kumar; Prem Lal Kashyap; Gyanendra Pratap Singh
Taylor & Francis Ltd (2020)
Kovakantinen kirja
170,80
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Translating Physiological Tools to Augment Crop Breeding
Mamrutha Harohalli Masthigowda (ed.); Krishnappa Gopalareddy (ed.); Rinki Khobra (ed.); Gyanendra Singh (ed.); Pratap Singh
Springer (2023)
Kovakantinen kirja
179,00
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Transcription Factors for Biotic Stress Tolerance in Plants
Shabir Hussain Wani (ed.); Vennampally Nataraj (ed.); Gyanendra Pratap Singh (ed.)
Springer (2022)
Kovakantinen kirja
134,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Maize Improvement : Current Advances in Yield, Quality, and Stress Tolerance under Changing Climatic Scenarios
Shabir Hussain Wani (ed.); Zahoor Ahmad Dar (ed.); Gyanendra Pratap Singh (ed.)
Springer (2023)
Kovakantinen kirja
161,20
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Wheat Science - Nutritional and Anti-Nutritional Properties, Processing, Storage, Bioactivity, and Product Development
Om Prakash Gupta; Sunil Kumar; Anamika Pandey; Mohd. Kamran Khan; Sanjay Kumar Singh; Gyanendra Pratap Singh
Taylor & Francis Ltd (2023)
Kovakantinen kirja
221,30
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Transcription Factors for Biotic Stress Tolerance in Plants
Shabir Hussain Wani (ed.); Vennampally Nataraj (ed.); Gyanendra Pratap Singh (ed.)
Springer (2023)
Pehmeäkantinen kirja
134,60
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Maize Improvement : Current Advances in Yield, Quality, and Stress Tolerance under Changing Climatic Scenarios
Shabir Hussain Wani (ed.); Zahoor Ahmad Dar (ed.); Gyanendra Pratap Singh (ed.)
Springer (2024)
Pehmeäkantinen kirja
161,20
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Translating Physiological Tools to Augment Crop Breeding
Mamrutha Harohalli Masthigowda (ed.); Krishnappa Gopalareddy (ed.); Rinki Khobra (ed.); Gyanendra Singh (ed.); Pratap Singh
Springer (2024)
Pehmeäkantinen kirja
179,00
Tuotetta lisätty
ostoskoriin kpl
Siirry koriin
Physiological, Molecular, and Genetic Perspectives of Wheat Improvement
205,70 €
Springer
Sivumäärä: 293 sivua
Asu: Kovakantinen kirja
Julkaisuvuosi: 2020, 18.12.2020 (lisätietoa)
Kieli: Englanti

World population is growing at an alarming rate and may exceed 9.7 billion by 2050, whereas agricultural productivity has been negatively affected due to yield limiting factors such as biotic and abiotic stresses as a result of global climate change. Wheat is a staple crop for ~20% of the world population and its yield needs be augmented correspondingly in order to satisfy the demands of our increasing world population. “Green revolution”, the introduction of semi-dwarf, high yielding wheat varieties along with improved agronomic management practices, gave rise to a substantial increase in wheat production and self-sufficiency in developing countries that include Mexico, India and other south Asian countries. Since the late 1980’s, however, wheat yield is at a standoff with little fluctuation. The current trend is thus insufficient to meet the demands of an increasing world population. Therefore, while conventional breeding has had a great impact on wheat yield, with climatechange becoming a reality, newer molecular breeding and management tools are needed to meet the goal of improving wheat yield for the future. With the advance in our understanding of the wheat genome and more importantly, the role of environmental interactions on productivity, the idea of genomic selection has been proposed to select for multi-genic quantitative traits early in the breeding cycle. Accordingly genomic selection may remodel wheat breeding with gain that is predicted to be 3 to 5 times that of crossbreeding. Phenomics (high-throughput phenotyping) is another fairly recent advancement using contemporary sensors for wheat germplasm screening and as a selection tool. Lastly, CRISPR/Cas9 ribonucleoprotein mediated genome editing technology has been successfully utilized for efficient and specific genome editing of hexaploid bread wheat. In summary, there has been exciting progresses in the development of non-GM wheat plants resistant to biotic and abiotic stress and/or wheatwith improved nutritional quality. We believe it is important to highlight these novel research accomplishments for a broader audience, with the hope that our readers will ultimately adopt these powerful technologies for crops improvement in order to meet the demands of an expanding world population.



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Physiological, Molecular, and Genetic Perspectives of Wheat Improvementzoom
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