Influence of an Organic Fertilizer on Agronomic Characteristics and Herbaceous Plant Diversity in a Greek Ecosystem: The Case of Cretan Dittany (Origanum dictamnus L.)

Author:

Molla Aikaterini1ORCID,Solomou Alexandra D.2ORCID,Fountouli Anastasia3,Chatzikirou Evaggelia4,Stamatakis Emmanouil5,Stamatakis Petros1,Skoufogianni Elpiniki6

Affiliation:

1. Hellenic Republic, Ministry of Rural Development and Food, Acharnon 2 Street, 101 76 Athens, Greece

2. Hellenic Agricultural Organization “Demeter”, Institute of Mediterranean & Forest Ecosystems, Terma Alkmanos, 115 28 Athens, Greece

3. Department of Agricultural Development, Democritus University of Thrace, 691 00 Orestiada, Greece

4. Hellenic Agricultural Organization “Demeter”, Institute of Industrial and Forage Crops, 413 35 Larissa, Greece

5. School of Agriculture, Aristotle University of Thessaloniki, 541 24 Thessaloniki, Greece

6. Laboratory of Agronomy and Applied Crop Physiology, Department of Agriculture, Crop Production and Rural Environment, University of Thessaly, 384 46 Volos, Greece

Abstract

In recent years, there has been a growing tendency towards using organic fertilizers instead of chemical ones. This study aimed to evaluate the influence of the organic fertilizer, Prima Humica, on agronomic characteristics and herbaceous plant diversity on Origanum dictamnus (Dittany) cultivation. A field experiment was carried out in Kalo Xorio (Lasithi, Crete) and included three different nitrogen organic fertilization schemes: 0 g/plant (T0—unfertilized), 300 g/plot (T1), and 600 g/plot (T2). Plant height, fresh and dry weight, Leaf Area Index (LAI), and plant diversity during the growing season were measured. The results showed that when the T2 treatment was compared with the unfertilized and the T1 fertilizer, the increase in plant height ranged between 9.18% and 40.61%. Moreover, the total fresh and dry weight were positively affected by the T2 treatment. The total fresh and dry weight varied from 111.6 to 239.8 g per plant and from 36.7 to 77.6 g per plant, respectively. Furthermore, LAI was ameliorated using the T2 fertilizer scheme. Concerning plant diversity, a key finding in this study is that the O. dictamnus ecosystem favors herbaceous plant species richness and Shannon’s diversity index. In total, 18 plant species in the O. dictamnus ecosystem were recorded in the study area. The most frequently occurring plants were Anthemis arvensis L. and Piptatherum miliaceum (L.) Coss. Finally, the highest Shannon’s diversity index of herbaceous plants was detected using the T2 fertilizer scheme.

Publisher

MDPI AG

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