Anatomy of Rootstocks and Scions in Four Pine Species

Q4 Agricultural and Biological Sciences
Garibay Slc, Monter Av, Upton Jl
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引用次数: 2

Abstract

When performing grafts, it is thought that by using plants of the same species the engraftment rate will be high; when the above is not fulfilled, the grafter, type of graft or the origin of the scions is blamed, but the anatomy of the parts forming the graft is not considered. The aim of this study was to evaluate the anatomy of four pine species used as rootstock and scion to define which species to use as rootstock based on cambium shape and bark thickness. Before grafting, 2-cm stem fractions were cut from plants that were used as rootstocks and scions. The evaluated species were Pinus patula, P. greggii, P. leiophylla and P. teocote. Cuts of 10 μm in thickness were made to determine bark and xylem thickness. Photographs were also taken with a photomicroscope to observe the "shape" of the vascular cambium. The experimental design was completely randomized with a 4x2 factorial arrangement, using 12 measurements as the sample size with four replicates. P. patula had greater bark thickness, while P. leiophylla obtained the greatest xylem thickness. In the images of the anatomical cuts, it was determined that the vascular cambium is continuous for all the species both in rootstock and in scions, but it is only circular in the P. teocote and P. leiophylla rootstocks, and the P. leiophylla scions did not present this feature. Based on the anatomy of the cambium, P. greggii, P. patula and P. teocote scions have greater possibilities of engraftment if they are grafted onto P. teocote andP. leiophylla because the cambium is circular. Tissue anatomy is one of the areas that must be known before making grafts in order to make appropriate decisions regarding the materials to be used.
四种松树的砧木和接穗解剖
在进行嫁接时,认为采用同种植物嫁接,接种率高;如果不能满足上述条件,则归咎于嫁接者、嫁接类型或接穗的来源,但不考虑形成嫁接的部位的解剖结构。本研究的目的是评估四种用作砧木和接穗的松树的解剖结构,根据形成层形状和树皮厚度来确定哪些物种可以用作砧木。在嫁接之前,从用作砧木和接穗的植物上切下2厘米的茎部分。被评价树种为松、松、松、松。取厚度为10 μm的切口测定树皮和木质部厚度。还用显微镜拍摄了照片,观察维管形成层的“形状”。试验设计完全随机化,采用4x2因子排列,采用12个测量值作为样本量,4个重复。宽叶松的树皮厚度较大,厚叶松的木质部厚度最大。在解剖切面图像中,所有种属的维管形成层在砧木和接穗中都是连续的,但在大山杨和薄叶松砧木中维管形成层只是圆形的,薄叶松接穗没有这种特征。从形成层的解剖结构来看,阳春、苍生和山毛榉接穗嫁接在山毛榉和山毛榉上有更大的嫁接可能性。因为形成层是圆形的。组织解剖学是在移植物之前必须了解的领域之一,以便对使用的材料做出适当的决定。
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来源期刊
林业科学研究
林业科学研究 Environmental Science-Ecology
CiteScore
0.90
自引率
0.00%
发文量
4834
期刊介绍: Forestry Research is a comprehensive academic journal of forestry science organized by the Chinese Academy of Forestry. The main task is to reflect the latest research results, academic papers and research reports, scientific and technological developments and information on forestry science mainly organized by the Chinese Academy of Forestry, to promote academic exchanges at home and abroad, to carry out academic discussions, to flourish forestry science, and to better serve China's forestry construction. The main contents are: forest seeds, seedling afforestation, forest plants, forest genetic breeding, tree physiology and biochemistry, forest insects, resource insects, forest pathology, forest microorganisms, forest birds and animals, forest soil, forest ecology, forest management, forest manager, forestry remote sensing, forestry biotechnology and other new technologies, new methods, and to increase the development strategy of forestry, the trend of development of disciplines, technology policies and strategies, etc., and to increase the forestry development strategy, the trend of development of disciplines, technology policies and strategies. It is suitable for scientists and technicians of forestry and related disciplines, teachers and students of colleges and universities, leaders and managers, and grassroots forestry workers.
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