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1.
Murraya koenigii (L.) Spreng. (Rutaceae), commonly known as ‘curry leaf tree’, is a popular spice and condiment of India. To explore the diversity of the essential‐oil yield and aroma profile of curry leaf, growing wild in foot and mid hills of north India, 58 populations were collected during spring season. M. koenigii populations were found to grow up to an altitude of 1487 m in north India. Comparative results showed considerable variations in the essential‐oil yield and composition. The essential‐oil yield varied from 0.14 to 0.80% in shade‐dried leaves of different populations of M. koenigii. Analysis of the essential oils by GC and GC/MS, and the subsequent classification by statistical analysis resulted in four clusters with significant variations in their terpenoid composition. Major components of the essential oils of investigated populations were α‐pinene ( 2 ; 4.5–71.5%), sabinene ( 3 ; <0.05–66.1%), (E)‐caryophyllene ( 11 ; 1.6–18.0%), β‐pinene ( 4 ; <0.05–13.6%), terpinen‐4‐ol ( 9 ; 0.0–8.4%), γ‐terpinene ( 8 ; 0.2–7.4%), limonene ( 7 ; 1.1–5.5%), α‐terpinene ( 6 ; 0.0–4.5%), (E)‐nerolidol ( 14 ; 0.0–4.1%), α‐humulene ( 12 ; 0.6–3.5%), α‐thujene ( 1 ; 0.0–2.5%), β‐elemene ( 10 ; 0.2–2.4%), β‐selinene ( 13 ; 0.2–2.3%), and myrcene ( 5 ; 0.5–2.1%). Comparison of the present results with those in earlier reports revealed new chemotypes of M. koenigii in investigated populations from Western Himalaya. The present study documents M. koenigii populations having higher amounts of sabinene ( 3 ; up to 66.1%) for the first time.  相似文献   

2.
Colletotrichum gloeosporioides is a destructive pathogen of many crop species causing diseases in many annual, biennial and perennial plants. A study was undertaken to find out the effect of biological and chemical agents together on the growth of C. gloeosporioides causing inflorescence die back in arecanut at the Department of Plant Pathology, CPCRI, Kasaragod. To reduce the release of chemical pesticides to the environment, integrated control strategies have been adopted extensively by combining both bioagents and chemical agents. So in the present study in vitro experiments were conducted with two compatible Trichoderma sp. viz., Trichoderma virens and Trichoderma viride and fungicides viz. Blitox 50 W and Mixol 72. The results indicated that all the treatments had a significant inhibitory effect on the growth of C. gloeosporioides and reduced its colony diameter. High percent inhibition was found when 0.05% of Mixol 72 was used with T. virens (87.61%). The least inhibition was shown by T. virens+0.05% Blitox 50 W (80.95%). It is concluded that the combination of bioagents with fungicides provided higher disease suppression than achieved with fungicides and bioagents when used alone.  相似文献   

3.
Pathogenicity test of the fungal pathogen Colletotrichum gloeosporioides (Penz.) Sacc., causal agent for anthracnose in eggplant (Solanum melongena L.), was performed in 28 commercially cultivated eggplant varieties by analysing the antigenic patterns of host and pathogen. Through initial screening following detached leaf inoculation technique and whole plant inoculation technique, Pusa purple long (Ppl) variety was found to be the most susceptible while Shamala variety (Shav) was the most resistant. Cross-reactive antigens (CRA) shared by susceptible varieties and C. gloeosporioides was detected by immunodiffusion and immunoelectrophoresis and indirect enzyme-linked immunosorbent assay (ELISA). Such antigens could not be detected between the resistant varieties and the pathogen and also between a nonpathogen (Alternaria porri) and all the test varieties. However, ELISA showed that low levels of common antigens were present between all combinations. The level of CRA was found to decrease with increasing resistance. Indirect immunogold labeling followed by silver enhancement revealed that CRA were concentrated mainly in the cell wall regions throughout the tissue. The level of CRA was found to correlate to the pathogenicity of C. gloeosporioides in different eggplant varieties. ELISA may therefore be used to screen the commercially cultivated eggplant varieties for resistance to C. gloeosporioides.  相似文献   

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5.
A new defoliating disease was observed on 20-year-old trees of Lecythis pisonis in Viçosa, Minas Gerais, Brazil. The disease is characterized by forming one or more large zonate epiphyllous leaf spots with a light brown to white center, followed by two to three zones gradually varying from brown to red-brown. On the corresponding abaxial leaf surface, the spots are lighter with a profuse greenish gray coloration caused by the fungal colonies. In PDA culture, the fungus is characterized by a slow growth of the colonies with brown-violet pigmentation at the reverse. Inoculation tests carried out on healthy plants of L. pisonis confirmed the pathogenicity of this fungus. Periconiella lecythidis sp. nov., the causal agent of the zonate leaf spot disease of L. pisonis is described, illustrated, discussed and compared with the other species of the genus Periconiella. The intricate generic affinity within a complex of morphologically similar hyphomycete genera consisting of Metulocladosporiella, Parapericoniella, Penidiella and Periconiella is discussed in detail.  相似文献   

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