Germination asynchrony is increased by dual seed bank presence in two desert perennial halophytes

Author:

Bhatt Arvind1,Bhat Narayana R.1,Lozano-Isla Flavio2,Gallacher David3,Santo Andrea4,Batista-Silva Willian5,Fernandes Denise6,Pompelli Marcelo F.7

Affiliation:

1. Kuwait Institute for Scientific Research, P.O. Box 24885, Safat, Kuwait.

2. Investigador de Plantas Grupo KWS, P.O. Box 15000, Lima, Peru.

3. The University of Sydney, Plant Breeding Institute, 12656 Newell Highway, Narrabri, NSW 2390, Australia.

4. P.O. Box. 09047, 16/C Via dei gladioli St., Selargius, Cagliari, Italy.

5. Departamentode Biologia Vegetal, Universidade Federal de Viçosa, P.O. Box 36570-900, Viçosa, Minas Gerais, Brazil.

6. Instituto Federal Catarinense, P.O. Box 89160-000, Rio do Sul, Santa Catarina, Brazil.

7. Laboratório de Ecofisiologia Vegetal, Departamento de Botânica, Universidade Federal de Pernambuco, P.O. Box 50670-901, Recife, Pernambuco, Brazil.

Abstract

Maintaining a viable seed bank throughout the germination season is considered very important for plant recruitment in desert environments, where environmental conditions are unpredictable. Seeds from fully matured Seidlitzia rosmarinus Bunge ex Boiss and Halothamnus iraqensis Botsch. were collected in December 2016, then April, June, and September 2017 from both soil-surface and aerial seed banks. Both of the species were selected mainly by their capacity to rehabilitate saline coastal sites. Germination was analyzed under two photoperiods (0 or 12 h light per day), with winged or dewinged perianths. Seidlitzia rosmarinus had a shorter seasonal range in comparison with H. iraqensis (6 and 9 months, respectively), and the presence of a winged perianth reduced the germination rate of both species. A permanent winged perianth significantly inhibited the germination rate in both species. In the absence of perianth, the germination registered in December 2016 was mostly 100%, but declined to around 20% in September 2017. Seeds are thus more likely to germinate after scarification from wind mobilization, and do not require burial. Our results show that seeds of both the aerial and soil banks are transitory, and viable only during the winter months. Taken together, the combination of aerial and soil seed banks has greatly facilitated germination asynchrony in their environmentally unpredictable desert habitat.

Publisher

Canadian Science Publishing

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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