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耐盐丰产小麦品种德抗961的耐盐生理机制 总被引:1,自引:1,他引:1
以山农215953(SN215953)为对照,室内200 mmol/L NaCl模拟盐胁迫条件,从幼苗生长和光合机构两个方面研究了德抗961的耐盐生理特性。结果表明:盐胁迫条件下德抗961(DK961)地上部生物量(鲜重、干重)、相对含水量均高于SN215953,而其株高显著大于SN215953,这有助于对细胞内的盐分进行稀释,即“稀盐”性,保护细胞质不受离子毒害。同时,德抗961叶片的希尔反应活力和Ca2+-ATPase活性受抑制的程度较小,光合能力相对较高。分析认为,以上两个方面可能是德抗961抗盐性强的重要原因。 相似文献
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为了构建羊布鲁菌16M(简称16M)的DK63-887基因缺失株(16MΔDK63-887),探讨该基因与16M介导自噬的关系。利用同源重组和抗性替换的方法,以卡那基因替换DK63-887基因,获得突变株16MΔDK63-887。将亲本株16M、疫苗株M5-90、突变株16MΔDK63-887在相同条件下振荡培养,观察其生长趋势变化;将各菌株置于不同外界环境中,观察其生存率;将各菌株侵染小鼠巨噬细胞,比较它们在宿主细胞内的生存能力及RT-qPCR检测自噬相关基因的表达。成功获得了布鲁菌DK63-887基因缺失株且在20代内未发生回复性突变现象。与亲本株相比,16MΔDK63-887在体外培养生长趋势与亲本株相似,只是细菌的浓度存在一定差异;突变株在外界应激条件下生存能力低于亲本株;侵染4h后缺失株胞内细菌数量明显下降;RT-qPCR检测到突变株的ULKI、Beclin1表达量均显著降低(P0.01),结果表明,布鲁菌Ⅳ型分泌系统效应蛋白与16M介导的细胞自噬密切相关,为16M胞内寄生机制的研究奠定了基础。 相似文献
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介绍泰丰优656基本特征特性及近2 a在建宁县客坊乡多点试种、示范表现,总结泰丰优656作中稻实施机械化种植取得大面积高产的栽培技术。 相似文献
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泰丰优656是用泰丰A×福恢656配制而成的杂交水稻新组合,连续2年在福建省屏南县甘棠乡种植3333 m2,表现群体整齐、植株较高、穗大粒多、后期转色好、丰产性好,总结其种子处理、壮秧培育和大田高产栽培技术. 相似文献
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Peanut fields are monitored for pod rot, which is typically caused by Pythium spp. and Rhizoctonia solani, in order to determine need, and the type and timing of fungicide applications. Pod rot can lead to damaged peanut kernels and when damage exceeds 2.49%, substantial price reductions occur. Nine fields or tests were sampled weekly for pod rot during the 2009 through 2012 growing seasons. The sampling was conducted on fields treated uniformly with fungicides for pod rot or within large research plots with various fungicide treatments. Pythium myriotylum was the most frequently identified pathogen species, although Rhizoctonia spp. were also recovered from diseased pods at all sites. Pod rot incidence was related to percent damaged kernels at harvest in 3 of 5 sites. Collection of 304 samples (sample unit = 46 cm of row) in a field was required to estimate 1% pod rot accurately (CV = 20%). There was a linear relationship between average % pod rot in a field, and the percentage of sampling units (absence/presence) with pod rot at low disease incidences. Scouting for pod rot of peanuts to make in-season fungicide applications will be hampered by high sample number, destructive sampling of plants, frequent sampling (due to rapid increase of disease), and the poor relationship between disease during the season and kernel damage at harvest. Making one preventative application at 60–70 days after planting may be a better practice than timing the initial fungicide application based on sampling for disease. 相似文献
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