Literature DB >> 34914960

Application of titanium regulates the functional components of photosynthetic apparatus in grafted seedlings of Carya cathayensis Sarg. under shade.

Daoliang Yan1, Feng Song1, Zhen Li1, Anket Sharma2, Xiaoting Xie1, Tingting Wu1, Xiaofei Wang1, Yi He1, Jiabao Chen1, Qiaoyu Huang1, Lu Zhao1, Rongling Wu3, Shihui Niu4, Huwei Yuan5, Bingsong Zheng6.   

Abstract

Light acts as a key environmental factor for normal growth and development of plants. Carya cathayensis Sarg. (hickory) faces low light conditions, especially those caused by cloudy or rainy days during the rapid growth period, which has caused adverse effects on its growth. In the current investigation, to alleviate the adverse effects of insufficient light on the cultivation of hickory, anti-hydrolyze stabilized ionic titanium (ASIT) was sprayed on the leaves of the three kinds of grafted seedlings and the non-grafted seedlings of hickory grown under different shade conditions. Results showed that the leaf mass per area and chlorophyll content of grafted hickory seedlings were increased after ASIT application. Rubisco content and photosynthetic rate (Pn) of seedlings grown under shading conditions were positively affected by ASIT treatment, especially on the 45th day of treatment, while the interaction effects of the two parameters between ASIT application and different shade treatments were significant. Titanium accumulation was the highest in roots, followed by leaves, and then in stems, while ASIT had the most significant effects on roots and leaves under 50 ± 5% shade. Severe shading inhibited growth and lead to serious destruction of chloroplast ultrastructure. In addition, the role of ASIT was rootstock-dependent, since ASIT had the weakest mitigation effect on the C/H grafted seedlings. To sum up, the application of ASIT to the grafted seedlings of hickory could improve its ability to resist shade stress.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Carya cathayensis Sarg.; Chloroplast ultrastructure; Grafted seedlings; Photosynthesis; Shade; Titanium

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Year:  2021        PMID: 34914960     DOI: 10.1016/j.chemosphere.2021.133301

Source DB:  PubMed          Journal:  Chemosphere        ISSN: 0045-6535            Impact factor:   7.086


  1 in total

1.  Paclobutrazol Ameliorates Low-Light-Induced Damage by Improving Photosynthesis, Antioxidant Defense System, and Regulating Hormone Levels in Tall Fescue.

Authors:  Bowen Liu; Si Long; Kening Liu; Tianqi Zhu; Jiongjiong Gong; Shuanghong Gao; Ruijia Wang; Liyun Zhang; Tieyuan Liu; Yuefei Xu
Journal:  Int J Mol Sci       Date:  2022-09-01       Impact factor: 6.208

  1 in total

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