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Leaf shape x sowing density interaction affects chickpea grain yield.

机译:叶片形状x播种密度的相互作用会影响鹰嘴豆的产量。

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Modifying plant architecture is considered a promising breeding option to enhance crop productivity. Modern chickpea (Cicer arietinum L.) cultivars with either compound (wild-type) or simple leaf shapes are commercially grown but the relationships between leaf shape and yield are not well understood. In this study, a random sample of 'Kabuli' type progeny lines of both leaf types, derived from two crosses between modern American simple leaf cultivars and early-flowering wild-type breeding lines, were planted at different sowing densities. Leaf area development and final grain yield in genotypes of the two leaf types responded differently to changes in sowing densities. Compound leaf lines attained higher leaf area indices and higher grain yields at both low and high sowing densities. Yield responses of the simple leaf lines to increasing sowing density were significantly higher compared to compound leaf genotypes in two of three field experiments. The prospects for utilizing the simple leaf trait as a breeding target for short-season growing areas are discussed.Digital Object Identifier http://dx.doi.org/10.1111/pbr.12042
机译:修改植物结构被认为是提高作物生产力的有前途的育种选择。具有化合物(野生型)或简单叶片形状的现代鹰嘴豆(Cicer arietinum L.)栽培品种已商业化种植,但叶片形状与产量之间的关系尚未得到很好的了解。在这项研究中,以不同的播种密度种植了随机样本的两种叶型的“ Kabuli”型子代系,这些代系来自现代美国简单叶栽培种和早花野生型育种系之间的两个杂交。两种叶型基因型的叶面积发育和最终籽粒产量对播种密度变化的反应不同。在低和高播种密度下,复合叶系均获得较高的叶面积指数和较高的籽粒产量。在三个田间试验中的两个中,与复合叶基因型相比,单叶系对增加播种密度的产量响应明显更高。讨论了利用简单叶片性状作为短期种植区育种目标的前景。数字对象标识符http://dx.doi.org/10.1111/pbr.12042

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