|
Showing 1 - 2 of
2 matches in All Departments
The abiotic stresses like drought, temperature, cold, salinity,
heavy metals etc. affect a great deal on the yield performance of
the agricultural crops. To cope up with these challenges, plant
breeding programs world-wide are focussing on the development of
stress tolerant varieties in all crop species. Significant genomic
advances have been made for abiotic stress tolerance in various
crop species in terms of availability of molecular markers, QTL
mapping, genome-wide association studies (GWAS), genomic selection
(GS) strategies, and transcriptome profiling. The broad-range of
articles involving genomics and breeding approaches deepens our
existing knowledge about complex traits. The chapters are written
by authorities in their respective fields. This book provides
comprehensive and consolidated account on the applications of the
most recent findings and the progress made in genomics assisted
breeding for tolerance to abiotic stresses in many important major
crop species with a focus on applications of modern strategies for
sustainable agriculture. The book is especially intended for
students, molecular breeders and scientists working on the
genomics-assisted genetic improvement of crop species for abiotic
stress tolerance.
Abiotic stresses such as drought (water deficit), extreme
temperatures (cold, frost and heat), salinity (sodicity) and
mineral (metal and metalloid) toxicity limit productivity of crop
plants worldwide and are big threats to global food security. With
worsening climate change scenarios, these stresses will further
increase in intensity and frequency. Improving tolerance to abiotic
stresses, therefore, has become a major objective in crop breeding
programs. A lot of research has been conducted on the regulatory
mechanisms, signaling pathways governing these abiotic stresses,
and cross talk among them in various model and non-model species.
Also, various 'omics' platforms have been utilized to unravel the
candidate genes underpinning various abiotic stresses, which have
increased our understanding of the tolerance mechanisms at
structural, physiological, transcriptional and molecular level.
Further, a wealth of information has been generated on the role of
chromatin assembly and its remodeling under stress and on the
epigenetic dynamics via histones modifications. The book
consolidates outlooks, perspectives and updates on the research
conducted by scientists in the abovementioned areas. The
information covered in this book will therefore interest workers in
all areas of plant sciences. The results presented on multiple
crops will be useful to scientists in building strategies to
counter these stresses in plants. In addition, students who are
beginners in the areas of abiotic stress tolerance will find this
book handy to clear their concepts and to get an update on the
research conducted in various crops at one place
|
You may like...
Double Cut
Alfred Shaughnessy
Paperback
R359
Discovery Miles 3 590
|