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Effect of plant extracts as pre-storage seed treatment on storage fungi, germination percentage and seedling vigour of pea (Pisum sativum)

机译:植物提取物作为储存真菌的储存种子处理的影响,豌豆(Pisum Sativum)的萌发百分比和幼苗活力

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摘要

Eleven plant extracts, viz. Allium sativum (garlic), Adhatoda vasica (malabar nut), Vitex negundo (horseshoe vitex), Melia azadirachta (chinaberry tree), Tagetes erecta (aztec marigold), Cannabis sativa (cannabis), Lantana camara (lantana), Mentha piperata (Pepper mint), Curcuma longa (turmeric), Zingiber officinale (ginger) and Allium cepa (onion) were evaluated for their efficacy against storage rot fungi, germination percentage and seedling vigour of pea. All the plant extracts significantly reduced the storage rot fungi, i.e. Aspergillus sp., Alternaria alternata, A. solani, Phoma sp and Fusarium spp.; increased seed germination and seedling vigour index of pea. Vitex negundo and Melia azadirachta found equally effective with minimum storage rot of 1.94%, while the maximum storage rot was observed in control (13.84%) where no seed treatment was done. Maximum seed germination (89.08%) was found in the seed stored in cloth bags, while in plastic bags seed germination found was 88.40 per cent. Maximum germination (96.41%) was recorded in the seed treated with Mentha piperata, followed by the Tagetes erecta with 94.08 per cent seed germination. Maximum seedling length and dry matter was observed in Allium sativum treated seeds with 28.33 cm and 2.66 g. Maximum (2520) seedling vigour I was observed in Mentha piperata, similarly maximum (308) seedling vigour II was recorded in Mentha piperata. Minimum (2.37%) population of the mycoflora was obtained in seed treated with the Curcuma longa when stored in plastic boxes. Lowest (3.28%) mycoflora was observed in Vitex negundo treated seed when stored in cloth bags. Aspergillus sp. is the most frequently occurring fungi in storage of pea. Pea seeds developed less attack by storage fungi particularly with Alternaria alternata and A. solani while more association of Aspergillus spp., Phoma sp. and Fusarium spp. were observed with the seeds during storage period in different containers. However fewer microflora (16.40%) developed in cloth bags compared to plastic boxes (20.56%).
机译:十一植物提取物,viz。 Allium sativum(大蒜),adhatoda vasica(马拉巴螺母),Vitex negundo(马蹄铁vitex),Melia azadirachta(Chinaberry树),Tagetes Eerecta(Aztec Marigold),Cannabis Sativa(大麻),Lantana Camara(Lantana),Mentha Piperata(辣椒薄荷的),姜黄Longa(姜黄),Zingiber Officinale(Ginger)和Calium Cepa(洋葱)被评估了对储存腐败真菌,萌发百分比和豌豆幼苗活力的功效。所有植物提取物显着降低了腐败真菌,即Aspergillus Sp。,Alterararia alternata,A. solani,phoma sp和镰刀菌。豌豆的种子萌发和幼苗活力增加。 Vitex Negundo和Melia azadirachta发现,最小储存腐烂的1.94%,而在控制中观察到最大储存腐蚀(13.84%),没有种子处理。在储存在布袋中的种子中发现最大种子萌发(89.08%),而在塑料袋中发现,发现的种子萌发为88.40%。在用薄荷哌啶处理的种子中记录了最大萌发(96.41%),其次是Tagetes erecta,94.08%的种子萌发。在艾滋病治疗的种子中观察到具有28.33cm和2.66g的葱属的幼苗长度和干物质。在Mentha Piperata中观察到最大(2520)幼苗活力,同样最大(308)幼苗活力II在Mentha Piperata中记录。在储存在塑料盒中时,在用Curcuma Longa处理的种子中获得Mycoflora的最低(2.37%)。最低(3.28%)在储存在布袋中,在Vitex Negundo治疗的种子中观察到mycoflora。 aspergillus sp。是储存豌豆的最常发生的真菌。豌豆种子通过储存真菌的攻击较少,特别是alertaria alternata和a. solani,而曲霉属spp的更多协会。,phoma sp。和镰刀菌。在不同容器中的储存期间用种子观察。然而,与塑料盒(20.56%)相比,在布袋中发育的较少的微生物(16.40%)。

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