Insights into the changes in leaf functional traits of Aralia elata grown under different shading treatments

Author:

Liu Boda,Zhang Jing,Zhang Zhenying,Sui Yong,Zhu Hengxin,Shi Yaru,Sui Xiuyu,Li Yuwu,Jiang XinqiangORCID

Funder

Science & Technology Specific Projects inAgricultural High-tech Industrial Demonstration Area of the Yellow River Delta

Publisher

Springer Science and Business Media LLC

Subject

Plant Science,Agronomy and Crop Science,Physiology

Reference41 articles.

1. AL-Huqail AA, Saleem MH, Ali B, Azeem M, Mumtaz S, Yasin G, Marc RA, Ali S (2023) Efficacy of priming wheat (Triticum aestivum) seeds with a benzothiazine derivative to improve drought stress tolerance. Funct Plant Biol. https://doi.org/10.1071/FP22140

2. Ali B, Hafeez A, Ahmad S, Javed MA, Sumaira, Afridi MS, Dawoud TM, Almaary KS, Muresan CC, Marc RA, Alkhalifah DHM, Selim S (2022a) Bacillus thuringiensis PM25 ameliorates oxidative damage of salinity stress in maize via regulating growth, leaf pigments, antioxidant defense system, and stress responsive gene expression. Front Plant Sci 13:921668. https://doi.org/10.3389/fpls.2022.921668

3. Ali B, Hafeez A, Javed MA, Afridi MS, Abbasi HA, Qayyum A, Batool T, Ullah A, Marc RA, Jaouni SKA, M.Alkhalifah DH, Samy S (2022b) Role of endophytic bacteria in salinity stress amelioration by physiological and molecular mechanisms of defense: a comprehensive review. S Afr J Bot 151:33–46. https://doi.org/10.1016/j.sajb.2022.09.036

4. Ali B, Wang X, Saleem MH, Azeem MA, Afridi MS, Nadeem M, Ghazal M, Batool T, Qayyum A, Alatawi A, Ali S (2022c) Bacillus mycoides PM35 reinforces photosynthetic efficiency, antioxidant defense, expression of stress-responsive genes, and ameliorates the effects of salinity stress in maize. Life 12(2):219. https://doi.org/10.3390/life12020219

5. Ali B, Wang X, Saleem MH, Sumaira, Hafeez A, Afridi MS, Khan S, Zaib-Un-Nisa, Ullah I, Júnior ATDA, Alatawi A, Ali S (2022d) PGPR-Mediated salt tolerance in maize by modulating plant physiology, antioxidant defense, compatible solutes accumulation and bio-surfactant producing genes. Plants 11(3):345. https://doi.org/10.3390/plants11030345

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