Variation in soil C and microbial functions across tree canopy projection and open grassland microenvironments
Academic Article
Publication Date:
2014
Short description:
Variation in soil C and microbial functions across tree canopy projection and open grassland microenvironments / Lai, R., Lagomarsino, A., Ledda, L., Roggero, P.p.. - In: TURKISH JOURNAL OF AGRICULTURE AND FORESTRY. - ISSN 1300-011X. - 38:1(2014), pp. 62-69. [10.3906/tar-1303-82]
abstract:
Abstract: This research was an attempt to study the effect of heavy metals lead and cadmium (0.05 mM and 0.3 mM) on growth and
antioxidant enzymes of seedlings of 2 mung bean genotypes (NM 19-19 and Azri mung-2006). Results revealed that germination
percentage and seedling length decreased when compared with the control for both genotypes. However, seedling length and
germination percentage was better in NM 19-19 as compared to Azri mung-2006. Elevated levels of protein were observed under metal
stress in both genotypes. Heavy metals induced oxidative stress in plants, causing membrane injury as observed by enhanced level of
malondialdehyde (MDA) contents. Increase in antioxidant enzymes activity was detected for guaiacol peroxidase (GPX) and catalase
(CAT). However, ascorbate (APX) activity decreased under stress for both genotypes. We observed more MDA content and GPX and
APX activity in Azri mung-2006 as compared to NM 19-19 when high concentrations of Pb and Cd were added. This revealed that NM
19-19 was tolerant whereas Azri mung-2006 was sensitive to Pb and Cd. It was further noticed that Cd imposed a more deleterious effect
than Pb on both genotypes.
antioxidant enzymes of seedlings of 2 mung bean genotypes (NM 19-19 and Azri mung-2006). Results revealed that germination
percentage and seedling length decreased when compared with the control for both genotypes. However, seedling length and
germination percentage was better in NM 19-19 as compared to Azri mung-2006. Elevated levels of protein were observed under metal
stress in both genotypes. Heavy metals induced oxidative stress in plants, causing membrane injury as observed by enhanced level of
malondialdehyde (MDA) contents. Increase in antioxidant enzymes activity was detected for guaiacol peroxidase (GPX) and catalase
(CAT). However, ascorbate (APX) activity decreased under stress for both genotypes. We observed more MDA content and GPX and
APX activity in Azri mung-2006 as compared to NM 19-19 when high concentrations of Pb and Cd were added. This revealed that NM
19-19 was tolerant whereas Azri mung-2006 was sensitive to Pb and Cd. It was further noticed that Cd imposed a more deleterious effect
than Pb on both genotypes.
Iris type:
1.1 Articolo in rivista
Keywords:
Ascorbate peroxidase; cadmium; catalase
List of contributors:
Lai, R; Lagomarsino, A; Ledda, L; Roggero, Pp
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