Chapter 3
Influence of Significant Parameters
on Cellulase Production by Solid-State
Fermentation
M. Subhosh Chandra, P. Suresh Yadav, Pallaval Veera Bramhachari, and
Narasimha Golla
Abstract Cellulases become an area of unique attention in bioremediation methods
owing to their capability to breakdown cellulose. Development of cost-effective,
high titer of attractive enzymes by fungi is a challenge. The overproduction of
dynamic enzymes which cut various β-1,4-glycosidic bonds still wreck a challenge
and is the key blockage for the cellulosic biomass transformation. Microbes are an
eye-catching topic for production of cellulases because of their enormous prospective for production of cellulase, enzyme intricacy, and severe habitation variability.
Microbial cellulolytic enzymes are ideal because of their immense advantages in
number of industries. In fact, trend for cellulolytic enzymes is undeniably expanding
for their use in bioremediation, pharmaceuticals, pulp and paper, waste management,
food processing, and so on. Future research is ensuing into enhanced scientific
information in addition to the achievement of summit of the rising demands of
cellulase and associated enzymes for production of eco-friendly textiles, detergents,
bio-pulping, and bio-alcohols. Furthermore, it is opening novel paths for exploitation of a variety of agricultural residues and pollutants as a basis of renewable energy
in lieu of throwing away to cause environmental degradation. In years to come,
newest knowledge of outstanding cellulolytic enzymes and acceptance of various
biotechnological approaches will undoubtedly bring immense vision in the field of
green chemistry. Hence, the present book chapter focused on fungal cellulases in
bioremediation and factors affecting cellulases production by solid-state fermentation (SSF).
M. Subhosh Chandra · P. Suresh Yadav
Department of Microbiology, Yogi Vemana University, Kadapa, Andhra Pradesh, India
P. V. Bramhachari
Department of Biotechnology, Krishna University, Machilipatnam, Andhra Pradesh, India
N. Golla (*)
Applied Microbiology Laboratory, Department of Virology, Sri Venkateswara University,
Tirupati, Andhra Pradesh, India
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2021
M. Srivastava et al. (eds.), Bioenergy Research: Basic and Advanced Concepts, Clean
Energy Production Technologies, https://doi.org/10.1007/978-981-33-4611-6_3
73
Influence of Significant Parameters
on Cellulase Production by Solid-State
Fermentation
M. Subhosh Chandra, P. Suresh Yadav, Pallaval Veera Bramhachari, and
Narasimha Golla
Abstract Cellulases become an area of unique attention in bioremediation methods
owing to their capability to breakdown cellulose. Development of cost-effective,
high titer of attractive enzymes by fungi is a challenge. The overproduction of
dynamic enzymes which cut various β-1,4-glycosidic bonds still wreck a challenge
and is the key blockage for the cellulosic biomass transformation. Microbes are an
eye-catching topic for production of cellulases because of their enormous prospective for production of cellulase, enzyme intricacy, and severe habitation variability.
Microbial cellulolytic enzymes are ideal because of their immense advantages in
number of industries. In fact, trend for cellulolytic enzymes is undeniably expanding
for their use in bioremediation, pharmaceuticals, pulp and paper, waste management,
food processing, and so on. Future research is ensuing into enhanced scientific
information in addition to the achievement of summit of the rising demands of
cellulase and associated enzymes for production of eco-friendly textiles, detergents,
bio-pulping, and bio-alcohols. Furthermore, it is opening novel paths for exploitation of a variety of agricultural residues and pollutants as a basis of renewable energy
in lieu of throwing away to cause environmental degradation. In years to come,
newest knowledge of outstanding cellulolytic enzymes and acceptance of various
biotechnological approaches will undoubtedly bring immense vision in the field of
green chemistry. Hence, the present book chapter focused on fungal cellulases in
bioremediation and factors affecting cellulases production by solid-state fermentation (SSF).
M. Subhosh Chandra · P. Suresh Yadav
Department of Microbiology, Yogi Vemana University, Kadapa, Andhra Pradesh, India
P. V. Bramhachari
Department of Biotechnology, Krishna University, Machilipatnam, Andhra Pradesh, India
N. Golla (*)
Applied Microbiology Laboratory, Department of Virology, Sri Venkateswara University,
Tirupati, Andhra Pradesh, India
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2021
M. Srivastava et al. (eds.), Bioenergy Research: Basic and Advanced Concepts, Clean
Energy Production Technologies, https://doi.org/10.1007/978-981-33-4611-6_3
73
