The Role of Halophytic Plant Invasions for the Conservation and Restoration of Degraded Agricultural Lands
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-5910-5_14
Reference72 articles.
1. Afifudin AFM, Irawanto R, Purwitasari N (2022) Selection of potential plants as phytoremediation for heavy metals in estuarine ecosystem: a systematic review. In: 4th international conference on life sciences and biotechnology (ICOLIB 2021). Atlantis Press, pp. 420–434
2. Agarwal P, Mishra K, Singh PC (2022) Integrated application of Trichoderma mixture and NPK enhances the rice productivity in sodic soil. Int J Plant Environ 8:128–132
3. Al Hassan M, Boscaiu M, Mayoral O (2021) Competition between halophytes and invasive species: Dittrichia viscosa and Limbarda crithmoides: a study case from the Valencian salt marshes. Handbook of halophytes: from molecules to ecosystems towards biosaline agriculture, pp. 599–621
4. Ali M, Mustafa A, Abideen Z, Gul B (2021) Bioenergy production from halophytes crops for sustainable development. In: Energy and environmental security in developing countries. Springer, Cham, pp 571–586
5. Anderson R, Bayer PE, Edwards D (2020) Climate change and the need for agricultural adaptation. Curr Opin Plant Biol 56:197–202
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