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Development and utilization of an efficient cytoplasmic male sterile system for Cai-xin (Brassica rapa L.)

机译:菜心高效细胞质雄性不育系统的开发与利用

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Six cytoplasmic male sterile (CMS) lines of Brassica vegetable Cai-xin (Brassica rapa L. ssp. chinensis var. utilis Tsen et Lee) were newly developed by backcrossing of six local inbred lines with a new eru CMS line of the vegetable purple cai-tai (B. rapa L. var. purpurea Bailey) from South China. The sterility of these Cai-xin eru CMS lines was stable and complete. The line 4A represented typical sterility and produced six off-white and shriveled stamens without pollen grains in the anthers. Paraffin sectioning comparison of the anthers between the CMS line 4A and its maintainer line 4B showed that their developmental differentiations started at the early to middle mononucleate microspore stage. The tapetum in the CMS line 4A was vacuolized highly and expanded radically, which extruded the developing microspores and caused their adhesion with each other and failure to develope mature pollen. With six CMS lines as female parents and 6 fertile lines as pollen parents, 36 hybrids were produced and their potentials of heterosis were analyzed. In general, mid-parent heterosis was detected for most of the 14 agronomic, yield and quality traits, such as petiole length (19.01%), weight of main flower stalk (35.96%), and soluble protein content (1.20%). These results indicated that the six newly derived ens CMS lines of Cai-xin provided a novel CMS system for its breeding and heterosis utilization. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过将六个本地自交系与蔬菜紫菜的新eru CMS系回交新近开发了六个甘蓝型菜菜心(Brassica rapa L.ssp.chinensis var.utilis Tsen et Lee)的细胞质雄性不育(CMS)系-tai(B. rapa L. var。purpurea Bailey)来自中国南方。这些彩新eru CMS系的无菌性是稳定而完整的。品系4A代表典型的无菌性,并产生了6个灰白色和干riv的雄蕊,花药中没有花粉粒。 CMS系4A和其维持系4B之间的花药石蜡切片比较显示,它们的发育分化始于早期至中层单核小孢子阶段。 CMS系4A中的绒毡层被高度真空化并急剧膨胀,从而挤压出正在发育的小孢子并导致它们彼此粘附并无法发育成熟的花粉。以6个雄性不育系作为花粉亲本,6个可育系作为花粉亲本,产生了36个杂种,并对其杂种优势进行了分析。通常,在14个农艺,产量和品质性状中,大多数检测到中亲杂种优势,例如叶柄长度(19.01%),主要花梗的重量(35.96%)和可溶性蛋白质含量(1.20%)。这些结果表明,菜新的6个新的ENS CMS系为它的育种和杂种优势利用提供了一个新的CMS系统。 (C)2015 Elsevier B.V.保留所有权利。

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