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Effects of Temperature on Resistance in Phaseolus vulgaris Genotypes and on Development of Meloidogyne Species

机译:温度对菜豆基因型抗性和根结线虫种发育的影响

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摘要

Phaseolus vulgaris lines with heat-stable resistance to Meloidogyne spp. may be needed to manage root-knot nematodes in tropical regions. Resistance expression before and during the process of nematode penetration and development in resistant genotypes were studied at pre- and postinoculation temperatures of 24 °C and 24 °C, 24 °C and 28 °C, 28 °C and 24 °C, and 28 °C and 28 °C. Resistance was effective at all temperature regimes examined, with fewer nematodes in roots of a resistant line compared with a susceptible line. Preinoculation temperature did not modify resistance expression to later infections by root-knot nematodes. However, postinoculation temperatures affected development of Meloidogyne spp. in both the resistant and susceptible bean lines tested. The more rapid development of nematodes to adults at the higher postinoculation temperature of 28 °C in both bean lines suggests direct temperature effects on nematode development instead of on resistance expression of either of two gene systems. Also, resistance was stable at 30 °C and 32 °C.
机译:菜豆对Meloidogyne spp具有耐热稳定性。在热带地区可能需要管理根结线虫。在接种前和接种后温度分别为24°C和24°C,24°C和28°C,28°C和24°C和28的条件下研究了线虫在抗性基因型穿透和发育过程中的抗性表达°C和28°C。抗性在所有温度范围内均有效,与易感系相比,抗性系根部的线虫较少。接种前温度并未改变对根结线虫后来感染的抗性表达。然而,接种后的温度影响了根结线虫的形成。在测试的抗性和易感大豆品系中均如此。在两个豆系中较高的接种后温度(28℃)下,线虫向成虫的发展较快,这表明温度对线虫的发育有直接的影响,而不是对两个基因系统中任何一个的抗性表达都有直接的影响。另外,电阻在30°C和32°C时稳定。

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