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盐度对马齿苋(Portulaca oleracea L.)种质生物量产量及生理和茎根解剖特征的影响。

Effect of salinity on biomass yield and physiological and stem-root anatomical characteristics of purslane (Portulaca oleracea L.) accessions.

作者信息

Alam Md Amirul, Juraimi Abdul Shukor, Rafii M Y, Abdul Hamid Azizah

机构信息

Department of Crop Science, Faculty of Agriculture, Universiti Putra Malaysia (UPM), 43400 Serdang, Selangor, Malaysia.

Department of Crop Science, Faculty of Agriculture, Universiti Putra Malaysia (UPM), 43400 Serdang, Selangor, Malaysia ; Institute of Tropical Agriculture, Universiti Putra Malaysia (UPM), 43400 Serdang, Selangor, Malaysia.

出版信息

Biomed Res Int. 2015;2015:105695. doi: 10.1155/2015/105695. Epub 2015 Feb 23.

Abstract

13 selected purslane accessions were subjected to five salinity levels 0, 8, 16, 24, and 32 dS m(-1). Salinity effect was evaluated on the basis of biomass yield reduction, physiological attributes, and stem-root anatomical changes. Aggravated salinity stress caused significant (P < 0.05) reduction in all measured parameters and the highest salinity showed more detrimental effect compared to control as well as lower salinity levels. The fresh and dry matter production was found to increase in Ac1, Ac9, and Ac13 from lower to higher salinity levels but others were badly affected. Considering salinity effect on purslane physiology, increase in chlorophyll content was seen in Ac2, Ac4, Ac6, and Ac8 at 16 dS m(-1) salinity, whereas Ac4, Ac9, and Ac12 showed increased photosynthesis at the same salinity levels compared to control. Anatomically, stem cortical tissues of Ac5, Ac9, and Ac12 were unaffected at control and 8 dS m(-1) salinity but root cortical tissues did not show any significant damage except a bit enlargement in Ac12 and Ac13. A dendrogram was constructed by UPGMA based on biomass yield and physiological traits where all 13 accessions were grouped into 5 clusters proving greater diversity among them. The 3-dimensional principal component analysis (PCA) has also confirmed the output of grouping from cluster analysis. Overall, salinity stressed among all 13 purslane accessions considering biomass production, physiological growth, and anatomical development Ac9 was the best salt-tolerant purslane accession and Ac13 was the most affected accession.

摘要

选取了13个马齿苋种质,使其经受0、8、16、24和32 dS m(-1)这五个盐度水平的处理。基于生物量产量降低、生理特性以及茎 - 根解剖结构变化对盐度效应进行评估。盐度胁迫加剧导致所有测量参数显著(P < 0.05)降低,与对照以及较低盐度水平相比,最高盐度显示出更有害的影响。发现Ac1、Ac9和Ac13的鲜物质和干物质产量随盐度从低到高增加,而其他种质受到严重影响。考虑到盐度对马齿苋生理的影响,在16 dS m(-1)盐度下,Ac2、Ac4、Ac6和Ac8的叶绿素含量增加,而在相同盐度水平下,与对照相比,Ac4、Ac9和Ac12的光合作用增强。在解剖学上,Ac5、Ac9和Ac12的茎皮层组织在对照和8 dS m(-1)盐度下未受影响,但根皮层组织除了Ac12和Ac13有一点增粗外,未显示任何显著损伤。基于生物量产量和生理特性,通过非加权组平均法(UPGMA)构建了一个树状图,其中所有13个种质被分为5个聚类,证明它们之间具有更大的多样性。三维主成分分析(PCA)也证实了聚类分析的分组结果。总体而言,考虑生物量生产、生理生长和解剖发育,在所有13个马齿苋种质中,Ac9是耐盐性最好的马齿苋种质,而Ac13是受影响最大的种质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/812b/4352753/685aafa55192/BMRI2015-105695.001.jpg

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