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QTLs Associated with Crown Root Angle, Stomatal Conductance, and Maturity in Sorghum

机译:与高粱冠根角,气孔导度和成熟度相关的QTL

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Three factors that directly affect the water inputs in cropping systems are root architecture, length of the growing season, and stomatal conductance to water vapor (gs). Deeper-rooted cultivars will perform better under water-limited conditions because they can access water stored deeper in the soil profile. Reduced?gs?limits transpiration rate (E) and thus throughout the vegetative phase conserves water that may be used during grain filling in water-limited environments. Additionally, growing early-maturing varieties in regions that rely on soil-stored water is a key water management strategy. To further our understanding of the genetic basis underlying root depth, growing season length, and?gs?we conducted a quantitative trait locus (QTL) study. A QTL for crown root angle (a proxy for root depth) new to sorghum was identified in chromosome 3. For?gs, a QTL in chromosome seven was identified. In a follow-up field study it was determined that the QTL for?gs?was associated with reduced?E?but not with net carbon assimilation rate (A) or shoot biomass. No differences in guard-cell length or stomatal density were observed among the lines, leading to the conclusion that the observed differences in?gs?must be explained by partial stomatal closure. The well-studied maturity gene?Ma1?was identified in the QTL for maturity. The transgressive segregation of the population was explained by the possible interaction of?Ma1?with other loci. Finally, the most probable position of the genes underlying the QTLs and candidate genes were proposed.
机译:直接影响种植系统中水输入的三个因素是根系结构,生长期的长短以及气孔对水蒸气的电导(gs)。根深蒂固的品种在水分有限的条件下会表现更好,因为它们可以获取土壤剖面中更深处储存的水。减少的ggs限制了蒸腾速率(E),因此在整个营养阶段都节约了水,可以在水有限的环境中充实谷物。此外,在依赖土壤存储水的地区种植早熟品种是一项重要的水管理策略。为了进一步了解根深,生长季节长度和ggs的遗传基础,我们进行了数量性状基因座(QTL)研究。在3号染色体上鉴定了高粱新的冠根角QTL(代表根深)。对于Qgs,在7号染色体上鉴定了QTL。在后续的田间研究中,确定gsg的QTL与降低的EE有关,但与净碳同化率(A)或枝条生物量无关。在品系之间没有观察到保卫细胞长度或气孔密度的差异,从而得出结论,观察到的微克数差异必须用部分气孔闭合来解释。在QTL中鉴定出成熟的成熟基因Ma1。人口的过分隔离是由“ Ma1”与其他基因座的可能相互作用解释的。最后,提出了潜在的QTLs基因和候选基因的最可能位置。

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