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Screening sorghum genotypes for salinity tolerant biomass production

机译:筛选耐盐生物量生产的高粱基因型

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Genetic improvement of salt tolerance is of high importance due to the extent and the constant increase in salt affected areas. Sorghum [Sorghum bicolor (L.) Moench] has been considered relatively more salt tolerant than maize and has the potential as a grain and fodder crop for salt affected areas. One hundred sorghum genotypes were screened for salinity tolerance in pots containing Alfisol and initially irrigated with a 250-mM NaCl solution in a randomized block design with three replications. Subsequently 46 selected genotypes were assessed in a second trial to confirm their responses to salinity. Substantial variation in shoot biomass ratio was identified among the genotypes. The performance of genotypes was consistent across experiments. Seven salinity tolerant and ten salinity sensitive genotypes are reported. Relative shoot lengths of seedlings were genetically correlated to the shoot biomass ratios at all stages of sampling though the relationships were not close enough to use the trait as a selection criterion. In general, the whole-plant tolerance to salinity resulted in reduced shoot Na+ concentration. The K+/Na+ and Ca2+/Na+ ratios were also positively related to tolerance but with a lesser r 2. Therefore, it is concluded that genotypic diversity exists for salt tolerance biomass production and that Na+ exclusion from the shoot may be a major mechanism involved in that tolerance.
机译:由于盐影响区域的范围和不断增加,提高耐盐性的遗传学至关重要。高粱[高粱双色(Moorg)]被认为比玉米具有更高的耐盐性,并且有可能成为盐灾地区的谷物和饲料作物。在装有Alfisol的花盆中筛选了100个高粱基因型的耐盐性,并以随机重复的块状设计(一式三份)最初用250 mM NaCl溶液灌溉。随后在第二项试验中评估了46种选择的基因型,以确认其对盐度的反应。在基因型之间鉴定出枝生物量比率的显着变化。基因型的表现在整个实验中是一致的。据报道有七种耐盐性基因型和十种耐盐性基因型。尽管采样之间的关系还不够紧密,不足以使用该性状作为选择标准,但在采样的所有阶段,幼苗的相对苗长与遗传上都与苗生物量比相关。通常,整株植物对盐分的耐受性会导致芽Na + 浓度降低。 K + / Na + 和Ca2 + / Na + 的比例也与耐受性呈正相关,但r 2 较小。因此,可以得出结论,存在耐盐生物量生产的基因型多样性,并且芽中Na + 的排除可能是参与该耐性的主要机制。

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