Other succulent plants, like the agave (above), store water in their fleshy leaves, stems, or roots.
Desert plants may have a completely different appearance from regional native plants. They frequently have inflated, spiky, and small, rarely bright green, leaves. Their impressive adjustments to the difficulties of the desert climate are the cause of their peculiar look. The only characteristic that distinguishes a desert and the main constraint to which desert species must adapt is aridity.
Succulence, drought tolerance, and drought avoidance are the three main adaptive mechanisms that desert plants have developed. These are all distinct but useful sets of adaptations for thriving in environments where plants from other places would perish.
Succulence
In their soft leaves, stems, or roots, succulent plants store water. All cacti, as well as non-cactus desert residents including agave, aloe, elephant trees, and numerous euphorbias, are succulents. The water storing habit cannot function without a number of additional adjustments.
After focusing all of their energy on developing seeds, drought-resistant plants such as California poppies and owl’s clover eventually perish.
A succulent needs to have the capacity to absorb a lot of water quickly.
Desert rainfall are frequently modest and fleeting, and the hot sun causes the soil to dry out quickly. Nearly all succulents have vast, shallow root systems to adapt to these environments. Saguaro plants have roots that reach horizontally nearly as far as their height, but they are rarely deeper than four inches (10 cm). The majority of the water-absorbing roots are in the top half inch (1.3 cm).
Succulents need to be able to use their water reserves as well as possible in a drying climate. Most species’ stems and leaves have waxy cuticles that, when the stomates are closed, make them practically impermeable. Reduced surface areas further conserve water; most succulents have few leaves (agaves), none (most cacti), or deciduous leaves during dry seasons (elephant trees, ocotillos, boojums).
A water-efficient form of photosynthesis known as CAM, or Crassulacean Acid Metabolism, is found in many succulents as well as semisucculent plants like most yuccas, epiphytic orchids, and xerophytic bromeliads. CAM plants store carbon dioxide and open their stomates for gas exchange at night. The stored carbon dioxide is used for photosynthesis during the day, when the stomates are closed. In comparison to conventional C3 plants, CAM plants lose one-tenth as much water per unit of carbohydrate produced at night because of the lower temperatures and higher humidity.
The ability of CAM plants to maintain an idle metabolism during droughts is another advantageous quality. Stomates in CAM plants remain closed day and night when they are under water stress, which virtually stops gas exchange and water loss. However, the plant keeps its metabolism at a low level in the moist tissues. An idle CAM plant can restart full growth 24 to 48 hours after a rain, just like an engine can accelerate to full speed more quickly than one that is cold. Succulents can so quickly benefit from transient surface wetness.
In a dry area, stored water needs to be protected against creatures who are thirsty. Most succulent plants are poisonous or prickly, and frequently both. Some species defend themselves by only growing in remote areas. Others utilize concealment. For instance, the dry stems of the plants it grows in closely resemble the Arizona night blooming cereus.
Drought Tolerance
A plant’s capacity to survive desiccation without perishing is referred to as drought tolerance (or drought dormancy). During dry spells, plants in this group frequently lose their leaves and go into a profound slumber. Dropping leaves conserves water in the stems since transpiration through leaf surfaces accounts for the majority of water loss. Some plants with resinous coatings that prevent water loss do not typically lose their leaves (e.g., creosote bush).
Compared to plants in wetter regions, drought tolerant shrubs and trees have broad roots that can extend up to twice as wide as the canopy. They penetrate the soil more deeply than the roots of succulents, and occasionally they reach extremely deep levels (e.g., mesquite). However, the majority of a mesquite’s roots are found three feet (0.9 m) or less below the ground.
Growth cycle opportunities are controlled by rooting depth. Contrary to succulents’ shallow-rooted technique, shrubs and trees need a significant amount of rain to saturate their deeper root zones. It takes a few weeks for plants like brittlebush and creosote to emerge from deep slumber after a heavy rain. The disadvantage of this method compared to that of succulents is that, after receiving multiple showers, the deeper soil retains moisture for a considerably longer period of time than the upper layer, allowing for several weeks of growth.
Only when the earth is almost completely saturated can succulents absorb water. Conversely, drought-tolerant plants may take up water from considerably drier soil. The low leaf moisture contents that these plants can photosynthesize with would be lethal to most plants.
Plants that can withstand drought, like this brittlebush, frequently lose their leaves and go into deep dormancy when the weather is dry.
Drought Avoidance
By not existing, annual plants avoid harsh circumstances. They grow to maturity in a single season and then perish after using all of their life force to produce seeds rather than saving any for future survival.
The majority of Sonoran Desert annuals only have a brief window in the fall, after summer heat has subsided and before the onset of winter cold. For the majority of species, there must be a drenching rain of at least one inch during this window of opportunity. An inch of rain in the mild fall weather will give enough soil moisture to ensure that seeds will likely grow and produce seeds even if nearly no further rain falls during that season. This combination of conditions is survival insurance. There is still further protection because not all seeds will germinate, even in ideal circumstances; some will remain dormant. A portion of the desert lupine seeds produced each year do not germinate until they are 10 years old, yet the mechanisms underlying this phenomenon are unknown.
During the pleasant fall season, seedlings quickly create rosettes of leaves, rest flat against the ground over the winter as they grow more slowly, then bloom in the spring. Many people believe that spring rains are the cause of our wildflower displays because plants are barely noticeable until they start the spring bolt.
Only in communities with dry seasons are annuals prevalent because perennial plants need a certain amount of root space to acquire enough moisture to survive the driest years. A population of quickly developing annuals can take advantage of both open space and moisture in the rarer rainy years. The fraction of annual species increases with habitat aridity. The Sonoran Desert’s vegetation is made up of annual species to a certain extent. Up to 90% of the plants in the driest ecosystems are annuals.
Although the desert may appear hostile, this is only the perspective of an outsider. Native plants and animals are able to thrive here most of the time thanks to adaptations.
Why do succulents retain their water?
In desert environments that are far too hot and dry for most plants to survive, many succulents flourish. In some areas, rain may only fall a few times a year, and during a drought, a plant may go up to two years without receiving any precipitation and yet thrive! To make the most of even light rain, many succulents have shallow roots that stretch out like a wide net surrounding the plant.
A succulent also makes other adjustments to preserve water. The soft, water-storing tissue inside is shielded by a thick, waxy coating known as the cuticle. Additionally, some plants have hairs or spines that shield their leaves or stems from the sun and protect them from some of the impacts of drying winds.
Succulent plants: do they retain water?
Any plant that has fleshy, thick tissues that can store water is considered succulent. Some succulents, like cacti, only store water in the stem and have no or few leaves, but other succulents, like agaves, primarily store water in the leaves. The majority of succulents are endemic to deserts or areas with a semiarid season and have deep or wide root systems. More than 60 plant families have succulent species, with the Aizoaceae, Cactaceae, and Crassulaceae having the highest proportions. Aloe, Echeveria, Kalanchoe, and other plants are among those that are grown as ornamentals and indoor plants.
The timing of the opening of stomata, which are tiny mouthlike structures on the surface of plant leaves and stems, is one adaptation shared by many succulents. Stomata enable the exchange of water and oxygen with the environment as well as the uptake of carbon dioxide from the environment. The stomata of many succulent plants are closed during the day and open at night, in contrast to those of most plants. As a result, less water loss (transpiration) happens during the hot, dry daylight hours, while carbon dioxide (CO2) uptake takes place at night. As a result, these succulent plants display crassulacean acid metabolism, a modified form of CO2 fixation and photosynthesis.
