首页> 美国卫生研究院文献>Journal of Nematology >Physiological Effects of Meloidogyne incognita Infection on Cotton Genotypes with Differing Levels of Resistance in the Greenhouse
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Physiological Effects of Meloidogyne incognita Infection on Cotton Genotypes with Differing Levels of Resistance in the Greenhouse

机译:根结线虫感染对温室中不同抗性水平棉花基因型的生理影响

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摘要

Greenhouse tests were conducted to evaluate (i) the effect of Meloidogyne incognita infection in cotton on plant growth and physiology including the height-to-node ratio, chlorophyll content, dark-adapted quantum yield of photosystem II, and leaf area; and (ii) the extent to which moderate or high levels of resistance to M. incognita influenced these effects. Cultivars FiberMax 960 BR (susceptible to M. incognita) and Stoneville 5599 BR (moderately resistant) were tested together in three trials, and PD94042 (germplasm, susceptible) and 120R1B1 (breeding line genetically similar to PD94042, but highly resistant) were paired in two additional trials. Inoculation with M. incognita generally resulted in increases in root gall ratings and egg counts per gram of root compared with the noninoculated control, as well as reductions in plant dry weight, root weight, leaf area, boll number, and boll dry weight, thereby confirming that growth of our greenhouse-grown plants was reduced in the same ways that would be expected in field-grown plants. In all trials, M. incognita caused reductions in height-to-node ratios. Nematode infection consistently reduced the area under the height-to-node ratio curves for all genotypes, and these reductions were similar for resistant and susceptible genotypes (no significant genotype × inoculation interaction). Our study is the first to show that infection by M. incognita is associated with reduced chlorophyll content in cotton leaves, and the reduction in the resistant genotypes was similar to that in the susceptible genotypes (no interaction). The susceptible PD94042 tended to have increased leaf temperature compared with the genetically similar but highly resistant 120R1B1 (P < 0.08), likely attributable to increased water stress associated with M. incognita infection.
机译:进行了温室试验以评估(i)棉花根结线虫感染对植物生长和生理的影响,包括高节比,叶绿素含量,光适应性II的暗适应量子产率和叶面积; (ii)中度或高水平的对隐身支原体的抗性影响这些效果的程度。在三个试验中一起测试了品种FiberMax 960 BR(易感隐孢子虫)和Stoneville 5599 BR(中度耐药),并将PD94042(种质易感)和120R1B1(遗传上与PD94042相似,但具有高度耐药性)配对。另外两个试验。与未接种的对照相比,用隐身梭状芽孢杆菌接种通常会导致根root等级和每克根的卵数增加,以及植物干重,根重,叶面积,棉铃数和棉铃干重的减少,从而证实我们温室种植植物的生长以与田间种植植物相同的方式减少。在所有试验中,南方根结线虫均导致身高/结节比例降低。线虫感染持续降低所有基因型的高度-节点比曲线下的面积,而对于抗性和易感基因型,这些降低幅度相似(无显着基因型×接种相互作用)。我们的研究首次表明,由隐孢子虫感染与棉叶中叶绿素含量降低有关,并且抗性基因型的减少与易感基因型的减少相似(无相互作用)。与遗传相似但抗性强的120R1B1相比,易感PD94042的叶片温度趋于升高(P <0.08),这可能是由于与隐枝隐孢子虫感染相关的水分胁迫增加所致。

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