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TOLERANCE OF ANOXIA AND ETHANOL METABOLISM IN GERMINATING SEEDS   总被引:6,自引:1,他引:5  
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Oxamyl (2.5 μg cm-3sand) applied to the roots of cucumber seedlings significantly reduced the number of vermiform second stage juveniles of Meloidogyne incognita which developed into swollen forms for at least 30 days. However, when cucumber seedlings containing nematodes were removed from oxamyl-treated sand 10 days after the pesticide was applied and placed in clean sand a large proportion of the juveniles had become swollen after a further 18 days. This suggested the effect of oxamyl on nematode development was reversible. A single foliar application of oxamyl (25–100 μg) in distilled water was also found to significantly reduce development of second stage juveniles to saccate forms However, the use of various adjuvants with a threshold foliar treatment (25 μg oxamyl) failed to significantly improve its activity.  相似文献   
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The behaviour of the Sociable Weaver Philetairus socius was studied briefly in South Africa in 1969, and more extensively in aviaries in southern California for over three years (1972-75). The species was bred successfully in captivity, apparently for the first time. Building of the compound nest in nature is reviewed in the light of preceding accounts, both by ourselves and by others. The optimal preference for nest materials was experimentally determined. Male and female appear identical and there seems to have been no previous detailed account of the behaviour of Sociable Weavers based on distinctively colour-ringed individuals of known sex. Among the sex differences in behaviour are the amount and nature of building, dominance, malespecific song, and sex differences in relative share of incubation and in the care of nestlings and fledglings. In addition, we describe in detail for the first time certain rarely observed behavioural acts including precopulatory courtship and copulation. Allopreening and water bathing are very rare in this species, and the birds do not take dust baths.  相似文献   
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BOTANICAL BRIEFING: The Function and Metabolism of Ascorbic Acid in Plants   总被引:2,自引:0,他引:2  
Ascorbate is a major metabolite in plants. It is an antioxidantand, in association with other components of the antioxidantsystem, protects plants against oxidative damage resulting fromaerobic metabolism, photosynthesis and a range of pollutants.Recent approaches, using mutants and transgenic plants, areproviding evidence for a key role for the ascorbate–glutathionecycle in protecting plants against oxidative stress. Ascorbateis also a cofactor for some hydroxylase enzymes (e.g. prolylhydroxylase) and violaxanthin de-epoxidase. The latter enzymelinks ascorbate to the photoprotective xanthophyll cycle. Arole in regulating photosynthetic electron transport has beenproposed. The biosynthetic pathway of ascorbate in plants hasnot been identified and evidence for the proposed pathways isreviewed. Ascorbate occurs in the cell wall where it is a firstline of defence against ozone. Cell wall ascorbate and cellwall-localized ascorbate oxidase (AO) have been implicated incontrol of growth. High AO activity is associated with rapidlyexpanding cells and a model which links wall ascorbate and ascorbateoxidase to cell wall extensibility is presented. Ascorbate hasalso been implicated in regulation of cell division by influencingprogression from G1 to S phase of the cell cycle. There is aneed to increase our understanding of this enigmatic moleculesince it could be involved in a wide range of important functionsfrom antioxidant defence and photosynthesis to growth regulation. Ascorbic acid; ascorbate oxidase; cell division; cell wall; growth; oxidative stress; photosynthesis; ozone; vitamin C  相似文献   
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