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Unravelling Effects of Temperature and Soil Moisture Stress Response on Development of Dry Root Rot [Rhizoctonia bataticola (Taub.)] Butler in Chickpea

机译:温度和土壤水分胁迫响应对鹰嘴豆干根腐病[Rhizoctonia bataticola(Taub。)]巴特勒发育的影响

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摘要

Erratic rainfalls and rise in temperature have become more frequent under the changing scenario of climate particularly in semiarid tropics. As a consequence of it, a drastic shift of chickpea diseases have been recorded throughout the major chickpea growing regions in India and elsewhere. Dry root rot (DRR) caused by Rhizoctonia bataticola (Taub.) Butler [Pycnidial stage: Macrophomina phaseolina (Tassi) Goid] was found as a potentially emerging constraint to chickpea production than wilt (Fusarium oxysporum f. sp. ciceris). Increasing incidence of DRR indicate strong influence of climate change variables such as temperature and moisture on the development of disease. The present study therefore was conducted to quantify the role of temperature and soil moisture associated with infection, colonization and development of DRR under controlled environment. The DRR incidence was significantly affected by high temperature and soil moisture deficit. Out of five temperature regimes (15?C, 20?C, 25?C, 30?C and 35?C) and four moisture levels (40%, 60%, 80% and 100%), a combination of high temperature (35?C) and soil moisture content (60%) predisposes chickpea to DRR. The study clearly demonstrates that high temperature coupled with soil moisture deficit is the climate change variables predisposing chickpea to R. bataticola infection, colonization and development.
机译:在气候变化的情况下,特别是在半干旱热带地区,不稳定的降雨和温度升高变得更加频繁。结果,在印度和其他地方的主要鹰嘴豆生长地区,都记录了鹰嘴豆疾病的急剧变化。发现比起枯萎病(Fusarium oxysporum f。c。ciceris),由巴氏根瘤菌(Taub。)巴特勒[Pycnidial阶段:菜豆(Tassi)Goid]引起的干根腐烂(Bird root rot(DRR))对鹰嘴豆的生产具有潜在的抑制作用。 DRR的发生率增加表明气候变化变量(例如温度和湿度)对疾病的发展有很大影响。因此,本研究旨在量化温度和土壤水分在受控环境下与DRR的感染,定植和发育相关的作用。高温和土壤水分不足严重影响了DRR的发生。在五个温度范围(15°C,20°C,25°C,30°C和35°C)和四个水分含量(40%,60%,80%和100%)中,高温组合35?C)和土壤含水量(60%)使鹰嘴豆容易发生DRR。这项研究清楚地表明,高温与土壤水分不足是气候变化的变量,使鹰嘴豆易受蝙蝠螺感染,定居和发展的影响。

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    Sharma, M; Pande, S;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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