Multifarious Activity of Silicon in Sugarcane Productivity Escalation: Regulatory Mechanisms and Future Outlook
Sathya Priya Ramalingam,
No information about this author
J. Shankara Narayanan,
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Srinivasan Radhakrishnan
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et al.
Silicon,
Journal Year:
2025,
Volume and Issue:
unknown
Published: Jan. 16, 2025
Language: Английский
Potency of Silicon for Enhanced Rice Productivity: A Revelation for Global Food Security
Gowru Srivani,
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G. Senthil Kumar,
No information about this author
M. Janaguiraman
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et al.
Silicon,
Journal Year:
2024,
Volume and Issue:
16(15), P. 5501 - 5523
Published: Aug. 3, 2024
Language: Английский
Silica Shield: Harnessing Phytoliths for Sustainable Plant Protection-A Comprehensive Exploration
R. Saranya,
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M. Suganthy,
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K. Ganesan
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et al.
Silicon,
Journal Year:
2024,
Volume and Issue:
16(16), P. 5771 - 5789
Published: Aug. 27, 2024
Language: Английский
Effect of Biochar on silica content and metabolomics against insect pests and mites of bhendi
P. Chandramani,
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Nithish kumar Ashok,
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P. Kannan
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et al.
Research Square (Research Square),
Journal Year:
2024,
Volume and Issue:
unknown
Published: Nov. 28, 2024
Abstract
Metabolomic
profiling
was
done
as
a
measure
of
confirmation
induced
host
plant
resistance
in
the
biochar
applied
bhendi
plants.
The
results
revealed
that
sugar
derivatives,
inositol
and
fucose-
meto
were
high
with
peak
area
0.14%
4.06%
respectively
treated
leaves
they
absent
untreated
leaves.
Among
fatty
acids,
docosahexaenoic
acid,
decadienedionic
acid
eicosanedioic
present
only
bhendi.
Seven
silicone
compounds
also
detected
GC-MS/MS
analysis
total
1.78%
Similarly
among
alcoholic
compounds,
benzyl
alcohol
is
0.34%.
organic
phthalic
2-propylphenyl
tetradecyl
ester
observed
0.10%.
highest
mean
silica
content
recorded
plants
which
negatively
correlated
insect
pests.
Hence
it
clearly
proved
metabolites
significantly
reduced
key
insects
mites
enhanced
pod
yield.
Language: Английский