Published 1986 | Version v1
Journal article

Effect of maize seed laser irradiation on plant photosynthetic activity

Description

Investigations were made with the two hybrids, H-708 and Px-20. The seeds were irradiated by a helium-neon quantum generator (L'vov-1 Electronica) with output power of 24 MW and 632.8 nm wave length. Once and twice irradiated seeds were sown on the 2nd, 5th and 10th day post irradiation. Changes in leaf area, chlorophyll content in the leaves, photosynthetic rate and its dependence on temperature and light, transpiration, stomatal resistance to CO2 and total dry matter of the overground plant part were traced. Seed irradiation with laser rays did not affect the chlorophyll content of the leaves. The photosynthetic rate did not depend on the cultivar characteristics of the crop. Single and repeated irradiation of the hybrid H-708 in most case enhanced photosynthetic rate, but a similar effect was not observed in Px-20. Transpiration and CO2 stomatal resistance were not equally affected by radiation. Laser rays enhanced the ability of the photosynthetic apparatus of the entire plants to use more efficiently high light intensities. The leaf area and the total plant dry matter increased in case of sowing on the 2nd and 5th day and a single irradiation and in case of sowing on the 5th and 10th day and twice repeated irradiations

Additional details

Publishing Information

Journal Title
Fiziol. Rast. (Sofia)
Journal Volume
12
Journal Issue
1
Series
Fiziol. Rast. (Sofia).
Journal Page Range
28-34
ISSN
0324-0290
CODEN
FIRAD

INIS

Country of Publication
Bulgaria
Country of Input or Organization
Bulgaria
INIS RN
19067348
Subject category
S60: APPLIED LIFE SCIENCES;
Resource subtype / Literary indicator
Numerical Data
Descriptors DEI
EXPERIMENTAL DATA; HELIUM-NEON LASERS; LASER RADIATION; MAIZE; PHOTOSYNTHESIS; PLANT GROWTH; SEEDS
Descriptors DEC
AMPLIFIERS; CEREALS; CHEMICAL REACTIONS; DATA; ELECTROMAGNETIC RADIATION; EQUIPMENT; GAS LASERS; GRAMINEAE; GROWTH; INFORMATION; LASERS; NUMERICAL DATA; PLANTS; RADIATIONS; SYNTHESIS