Biology, epidemiology
- Conservation, sources d'inoculum
- Penetration and invasion
Once the germ tube is formed, it penetrates the tissues and gives rise to mycelium which destroys the walls of the cells and their contents. Penetration takes place either directly through the cuticle or from various wounds . B. cinerea can also invade all senescent, necrotic and / or dead tissues such as petals, necrotic sepals, old leaflets. It sometimes colonizes tissues already damaged by other pathogens or pests. It quickly spreads to tissues, which it rots in a few days thanks to the hydrolysis of peptic substances.
- Sporulation and dissemination
On all its hosts as well as on plant debris, it produces a gray mold consisting of mycelium and numerous long and branched conidiophores (Figures 1 and 2). At their ends emerge ovoid to spherical conidia which ensure the dissemination of B. cinerea (figures 2 and 3). The sporulation can start 3 days after the initial contamination. The release is carried out mainly through the wind and drafts , to a lesser degree of rain and water splash. It is also ensured by the workers during cultivation operations. The mycelium is at the origin of contamination by contact of diseased tissues with healthy tissues. B. cinerea can eventually produce small, flat sclerotia on damaged tissue which also allows its preservation (Figure 4). Under favorable conditions, the duration of a cycle is quite short; of the order of 4 days.
- Conditions favorable to its development
Like many aerial fungi, it is particularly fond of humid environments. A relative humidity of around 95% and temperatures ranging between 17 and 23 ° C are conditions very conducive to his attacks. These parameters are found especially under shelters, but also in the open field during rainy periods or following sprinkler irrigation. Plants that are etiolate or overgrowth are particularly vulnerable. The quality of the "cover" of the shelters would influence the development of certain diseases, and of B. cinerea in particular. In fact, less damage was observed with EVA, compared to PVC and polyethylene. Under EVA, it seems that we have better light transmission, lower humidity and less formation of water drops on the walls. Finally, the agrotextiles sometimes used to protect plants from insects lead to an increase in humidity, aggravating the damage.