首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Polyploidization of Plumbago auriculata Lam. in vitro and its characterization including cold tolerance
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Polyploidization of Plumbago auriculata Lam. in vitro and its characterization including cold tolerance

机译:Plumbago Auriculata LAM的多倍化。 体外及其表征,包括耐冷耐力

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Plumbago auriculata Lam. (Plumbaginaceae) is an ornamental/medicinal flowering shrub. However, it could be stop growing under 5 degrees C resulting in its poor germplasm resources. Increasing the tolerance of polyploids to environmental stress will enrich its germplasm resources. In this study, we thus employed the stem segments and buds exposed to pendimethalin and trifluralin in vitro to conduct an effective polyploid protocol, in which buds were cultured for 7 days in MS medium with 800 mu M. In this study, we have developed a novel polyploid identification method based on accuracy and efficiency. Early screening was performed based on the morphological characteristics of this plants, and then polyploidy was determined by flow cytometry. The number of chromosomes was determined by the chromosomal accounting. At the anatomical level, in comparison with diploids, the root parenchyma, stem collenchyma and tetraploid spongy tissues were thickened, the guard cell size and vascular bundles number were increased, and the stomata were widened; but the stomatal density was decreased. After 24 h of cold stress, the maximal quantum yield of photosystem II (Fv/Fm) and maximum primary yield of photochemistry of PSII (Fv/Fo) of diploids decreased significantly. Conversely, the minimal value of chlorophyll a fluorescence (Fo), relative electrical conductivity and malondialdehyde increased markedly. Accordingly, the cold tolerance of the tetraploids presented better than these of the diploids. Taken together, our study has first developed an effective protocol to obtain and identify the tetraploid of P. auriculate plants. Furthermore, it was proved that this polyploid has presented improving cold tolerance and enriching phenotypic properties. These findings could be useful for improving cold-tolerance breeding and enriching genetic diversity of P. auriculate plants. Key messageWe used stem segments and buds exposed to pendimethalin and trifluralin in vitro to conduct polyploids of Plumbago auriculata and compared characterizations including cold tolerance between diploids and polyploids.
机译:Plumbago auroculata林。 (Plumbaginaceae)是一种装饰/药花灌木。然而,它可能停止在5摄氏度下生长,导致其种质资源差。增加多倍体对环境压力的耐受性将丰富其种质资源。在这项研究中,我们使用暴露于PENDIMETHALIN和TRIFLURALIN的茎段和芽进行有效的多倍体方案,其中芽在MS培养基中培养7天,在本研究中,我们开发了一个基于精度和效率的新型多倍体识别方法。基于该植物的形态学特性进行早期筛选,然后通过流式细胞术测定多倍体。染色体的数量由染色体核算确定。在解剖学水平上,与二倍体,根部实质,干泌体和四倍体海绵状组织加厚,保护电池尺寸和血管束数量增加,气孔被加长;但气孔密度降低。冷凝压力24小时后,光学系统II(FV / FM)的最大量子产率和二倍体PSII(FV / FO)的最大初级产量显着下降。相反,叶绿素A荧光(FO),相对导电性和丙二醛的最小值显着增加。因此,呈现的四倍体的耐寒性优于这些二倍体。我们的研究携带,首先制定了一种有效的方案,以获得和鉴定P.矿床的四倍体。此外,证明该多倍体呈现出改善耐寒性和富集表型特性。这些发现可用于改善P. auriculate植物的耐寒性育种和富集遗传多样性。关键令人留言我们使用暴露于PENDIMETHALIN和TRIFLURALIN的茎段和芽,在体外进行脾脏的多倍体,并比较包括二倍体和多倍体之间的耐寒性的特征性。

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